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  3. Slim Node Si7021 sensor example

Slim Node Si7021 sensor example

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  • badmannenB Offline
    badmannenB Offline
    badmannen
    wrote on last edited by
    #94
    This post is deleted!
    1 Reply Last reply
    0
    • siodS Offline
      siodS Offline
      siod
      wrote on last edited by
      #95

      so with the correct library there is no need to solder those 3 spots together!?

      still learning...

      GertSandersG 1 Reply Last reply
      0
      • siodS siod

        so with the correct library there is no need to solder those 3 spots together!?

        GertSandersG Offline
        GertSandersG Offline
        GertSanders
        Hardware Contributor
        wrote on last edited by
        #96

        @siod
        The "spots" are there to connect the pullup resistors to the SDA and SCL lines. This is always needed, regardless of the library of the board onto which you connect the sensor board does not provide pullup resistors itself. On a minimal board like the one in this thread, this is not the case, so the pull up resistors are needed.

        1 Reply Last reply
        0
        • siodS Offline
          siodS Offline
          siod
          wrote on last edited by siod
          #97

          ok, thanks for making it clear for me Gert!!

          update:

          finally found time to build my sensor and it seems to work fine, will do more testing but for now my results are:

          7.5 uA when sleeping, 15,3 mA when working (every 15 minutes for about 2seconds, but I think my cheap multimeter gives bad readings on those spikes, I guess it´s only around 1 mA)

          seems to be okay, isn´t it?

          edit:

          I have 2 reed switches attached. I recognized that I have +0,10 mA for each reed switch when activated. So when reed switches are both touching their counterpart I have a sleeping consumption of 0,20 mA. Why is that??

          still learning...

          1 Reply Last reply
          0
          • J Offline
            J Offline
            jacikaas
            wrote on last edited by jacikaas
            #98

            Hello,

            I'm trying to convert existing Si7021 sensor code from 1.5 to 2.0.0 library. I change the code and then I was getting an error which said:

            Si7021_sensor_MySensors_2.0.0:158: error: 'si7021_env' has no member named 'humidityPercent'
               int humidity = data.humidityPercent;
                                   ^
            exit status 1
            'si7021_env' has no member named 'humidityPercent'
            

            Then I chech the Si7021 library, and how I saw there wasn't member 'humidityPercent', but there was a member 'humidityBasisPoints'.

            So I change line from:

              int humidity = data.humidityPercent;
            

            ...to:

              int humidity = data.humidityBasisPoints;
            

            Then code compiles and I upload it to Slim Node Si7021. I leave sensor and today I checked it log on Domoticz. I have this:
            0_1471539568477_chart.jpeg

            Temperature looks ok, but Humidity value jumping a lot, thats why I don't want to believe it is true.

            Could someone, who has a 2.0.0 library and Si7021 sensor chech is it same situation? Becose I have only one Si7021 sensor.
            Maybe someone could look also on the code and say if I convert it right?

            Converted code:

            /* Sketch with Si7021 and battery monitoring.
            by m26872, 20151109 
            */
            
            #define MY_DEBUG
            #define MY_RADIO_NRF24
            #define MY_NODE_ID 5             // <<<<<<<<<<<<<<<<<<<<<<<<<<<   Enter Node_ID
            #define MY_BAUD_RATE 115200
            
            #include <MySensors.h>  
            #include <Wire.h>
            #include <SI7021.h>
            #include <SPI.h>
            #include <RunningAverage.h>
            
            //#define DEBUG
            
            #ifdef DEBUG
            #define DEBUG_SERIAL(x) Serial.begin(x)
            #define DEBUG_PRINT(x) Serial.print(x)
            #define DEBUG_PRINTLN(x) Serial.println(x)
            #else
            #define DEBUG_SERIAL(x)
            #define DEBUG_PRINT(x) 
            #define DEBUG_PRINTLN(x) 
            #endif
            
            #define CHILD_ID_TEMP 0
            #define CHILD_ID_HUM 1
            // #define SLEEP_TIME 15000 // 15s for DEBUG
            #define SLEEP_TIME 300000   // 5 min
            #define FORCE_TRANSMIT_CYCLE 36  // 5min*12=1/hour, 5min*36=1/3hour 
            #define BATTERY_REPORT_CYCLE 2880   // Once per 5min   =>   12*24*7 = 2016 (one report/week)
            #define VMIN 1900
            #define VMAX 3300
            #define HUMI_TRANSMIT_THRESHOLD 3.0  // THRESHOLD tells how much the value should have changed since last time it was transmitted.
            #define TEMP_TRANSMIT_THRESHOLD 0.5
            #define AVERAGES 2
            
            int batteryReportCounter = BATTERY_REPORT_CYCLE - 1;  // to make it report the first time.
            int measureCount = 0;
            float lastTemperature = -100;
            int lastHumidity = -100;
            
            RunningAverage raHum(AVERAGES);
            SI7021 humiditySensor;
            
            MyMessage msgTemp(CHILD_ID_TEMP,V_TEMP); // Initialize temperature message
            MyMessage msgHum(CHILD_ID_HUM,V_HUM);
            
            
            void presentation()  
            { 
              sendSketchInfo("EgTmpHumBat5min", "1.0 151106");
              present(CHILD_ID_TEMP, S_TEMP);   // Present sensor to controller
              present(CHILD_ID_HUM, S_HUM);
            }
            
            
            void setup() {
              DEBUG_SERIAL(115200);    // <<<<<<<<<<<<<<<<<<<<<<<<<< Note BAUD_RATE in MySensors.h
              DEBUG_PRINTLN("Serial started");
              
              DEBUG_PRINT("Voltage: ");
              DEBUG_PRINT(readVcc()); 
              DEBUG_PRINTLN(" mV");
            /*
              delay(500);
              DEBUG_PRINT("Internal temp: ");
              DEBUG_PRINT(GetInternalTemp()); // Probably not calibrated. Just to print something.
              DEBUG_PRINTLN(" *C");
            */  
              delay(500); // Allow time for radio if power useed as reset
              DEBUG_PRINT("Node and "); DEBUG_PRINTLN("2 children presented.");
              
              raHum.clear();
              
            }
            
            void loop() { 
            
              measureCount ++;
              batteryReportCounter ++;
              bool forceTransmit = false;
              
              if (measureCount > FORCE_TRANSMIT_CYCLE) {
                forceTransmit = true; 
              }
              sendTempHumidityMeasurements(forceTransmit);
            /*
              // Read and print internal temp
              float temperature0 = static_cast<float>(static_cast<int>((GetInternalTemp()+0.5) * 10.)) / 10.;
              DEBUG_PRINT("Internal Temp: "); DEBUG_PRINT(temperature0); DEBUG_PRINTLN(" *C");        
            */
              // Check battery
              if (batteryReportCounter >= BATTERY_REPORT_CYCLE) {
                long batteryVolt = readVcc();
                DEBUG_PRINT("Battery voltage: "); DEBUG_PRINT(batteryVolt); DEBUG_PRINTLN(" mV");
                uint8_t batteryPcnt = constrain(map(batteryVolt,VMIN,VMAX,0,100),0,255);   
                DEBUG_PRINT("Battery percent: "); DEBUG_PRINT(batteryPcnt); DEBUG_PRINTLN(" %");
                sendBatteryLevel(batteryPcnt);
                batteryReportCounter = 0;
              }
              
              sleep(SLEEP_TIME);
            }
            
            // function for reading Vcc by reading 1.1V reference against AVcc. Based from http://provideyourown.com/2012/secret-arduino-voltmeter-measure-battery-voltage/
            // To calibrate reading replace 1125300L with scale_constant = internal1.1Ref * 1023 * 1000, where internal1.1Ref = 1.1 * Vcc1 (per voltmeter) / Vcc2 (per readVcc() function) 
            long readVcc() {
              // set the reference to Vcc and the measurement to the internal 1.1V reference
              ADMUX = _BV(REFS0) | _BV(MUX3) | _BV(MUX2) | _BV(MUX1);
              delay(2); // Wait for Vref to settle
              ADCSRA |= _BV(ADSC); // Start conversion
              while (bit_is_set(ADCSRA,ADSC)); // measuring
              uint8_t low  = ADCL; // must read ADCL first - it then locks ADCH  
              uint8_t high = ADCH; // unlocks both
              long result = (high<<8) | low;
              result = 1125300L / result; // Calculate Vcc (in mV); 1125300 = 1.1*1023*1000
              return result; // Vcc in millivolts
            }
            // function for reading internal temp. From http://playground.arduino.cc/Main/InternalTemperatureSensor 
            double GetInternalTemp(void) {  // (Both double and float are 4 byte in most arduino implementation)
              unsigned int wADC;
              double t;
              // The internal temperature has to be used with the internal reference of 1.1V. Channel 8 can not be selected with the analogRead function yet.
              ADMUX = (_BV(REFS1) | _BV(REFS0) | _BV(MUX3));   // Set the internal reference and mux.
              ADCSRA |= _BV(ADEN);  // enable the ADC
              delay(20);            // wait for voltages to become stable.
              ADCSRA |= _BV(ADSC);  // Start the ADC
              while (bit_is_set(ADCSRA,ADSC));   // Detect end-of-conversion
              wADC = ADCW;   // Reading register "ADCW" takes care of how to read ADCL and ADCH.
              t = (wADC - 88.0 ) / 1.0;   // The default offset is 324.31.
              return (t);   // The returned temperature in degrees Celcius.
            }
            
            /*********************************************
             * * Sends temperature and humidity from Si7021 sensor
             * Parameters
             * - force : Forces transmission of a value (even if it's the same as previous measurement)
             *********************************************/
            void sendTempHumidityMeasurements(bool force) {
              bool tx = force;
            
              si7021_env data = humiditySensor.getHumidityAndTemperature();
              
              float temperature = data.celsiusHundredths / 100.0;
              DEBUG_PRINT("T: ");DEBUG_PRINTLN(temperature);
              float diffTemp = abs(lastTemperature - temperature);
              DEBUG_PRINT(F("TempDiff :"));DEBUG_PRINTLN(diffTemp);
              if (diffTemp > TEMP_TRANSMIT_THRESHOLD || tx) {
                send(msgTemp.set(temperature,1));
                lastTemperature = temperature;
                measureCount = 0;
                DEBUG_PRINTLN("T sent!");
              }
              
              int humidity = data.humidityPercent;
              DEBUG_PRINT("H: ");DEBUG_PRINTLN(humidity);
              raHum.addValue(humidity);
              humidity = raHum.getAverage();  // MA sample imply reasonable fast sample frequency
              float diffHum = abs(lastHumidity - humidity);  
              DEBUG_PRINT(F("HumDiff  :"));DEBUG_PRINTLN(diffHum); 
              if (diffHum > HUMI_TRANSMIT_THRESHOLD || tx) {
                send(msgHum.set(humidity));
                lastHumidity = humidity;
                measureCount = 0;
                DEBUG_PRINTLN("H sent!");
              }
            
            }
            

            Thank You!

            AWIA 1 Reply Last reply
            0
            • J jacikaas

              Hello,

              I'm trying to convert existing Si7021 sensor code from 1.5 to 2.0.0 library. I change the code and then I was getting an error which said:

              Si7021_sensor_MySensors_2.0.0:158: error: 'si7021_env' has no member named 'humidityPercent'
                 int humidity = data.humidityPercent;
                                     ^
              exit status 1
              'si7021_env' has no member named 'humidityPercent'
              

              Then I chech the Si7021 library, and how I saw there wasn't member 'humidityPercent', but there was a member 'humidityBasisPoints'.

              So I change line from:

                int humidity = data.humidityPercent;
              

              ...to:

                int humidity = data.humidityBasisPoints;
              

              Then code compiles and I upload it to Slim Node Si7021. I leave sensor and today I checked it log on Domoticz. I have this:
              0_1471539568477_chart.jpeg

              Temperature looks ok, but Humidity value jumping a lot, thats why I don't want to believe it is true.

              Could someone, who has a 2.0.0 library and Si7021 sensor chech is it same situation? Becose I have only one Si7021 sensor.
              Maybe someone could look also on the code and say if I convert it right?

              Converted code:

              /* Sketch with Si7021 and battery monitoring.
              by m26872, 20151109 
              */
              
              #define MY_DEBUG
              #define MY_RADIO_NRF24
              #define MY_NODE_ID 5             // <<<<<<<<<<<<<<<<<<<<<<<<<<<   Enter Node_ID
              #define MY_BAUD_RATE 115200
              
              #include <MySensors.h>  
              #include <Wire.h>
              #include <SI7021.h>
              #include <SPI.h>
              #include <RunningAverage.h>
              
              //#define DEBUG
              
              #ifdef DEBUG
              #define DEBUG_SERIAL(x) Serial.begin(x)
              #define DEBUG_PRINT(x) Serial.print(x)
              #define DEBUG_PRINTLN(x) Serial.println(x)
              #else
              #define DEBUG_SERIAL(x)
              #define DEBUG_PRINT(x) 
              #define DEBUG_PRINTLN(x) 
              #endif
              
              #define CHILD_ID_TEMP 0
              #define CHILD_ID_HUM 1
              // #define SLEEP_TIME 15000 // 15s for DEBUG
              #define SLEEP_TIME 300000   // 5 min
              #define FORCE_TRANSMIT_CYCLE 36  // 5min*12=1/hour, 5min*36=1/3hour 
              #define BATTERY_REPORT_CYCLE 2880   // Once per 5min   =>   12*24*7 = 2016 (one report/week)
              #define VMIN 1900
              #define VMAX 3300
              #define HUMI_TRANSMIT_THRESHOLD 3.0  // THRESHOLD tells how much the value should have changed since last time it was transmitted.
              #define TEMP_TRANSMIT_THRESHOLD 0.5
              #define AVERAGES 2
              
              int batteryReportCounter = BATTERY_REPORT_CYCLE - 1;  // to make it report the first time.
              int measureCount = 0;
              float lastTemperature = -100;
              int lastHumidity = -100;
              
              RunningAverage raHum(AVERAGES);
              SI7021 humiditySensor;
              
              MyMessage msgTemp(CHILD_ID_TEMP,V_TEMP); // Initialize temperature message
              MyMessage msgHum(CHILD_ID_HUM,V_HUM);
              
              
              void presentation()  
              { 
                sendSketchInfo("EgTmpHumBat5min", "1.0 151106");
                present(CHILD_ID_TEMP, S_TEMP);   // Present sensor to controller
                present(CHILD_ID_HUM, S_HUM);
              }
              
              
              void setup() {
                DEBUG_SERIAL(115200);    // <<<<<<<<<<<<<<<<<<<<<<<<<< Note BAUD_RATE in MySensors.h
                DEBUG_PRINTLN("Serial started");
                
                DEBUG_PRINT("Voltage: ");
                DEBUG_PRINT(readVcc()); 
                DEBUG_PRINTLN(" mV");
              /*
                delay(500);
                DEBUG_PRINT("Internal temp: ");
                DEBUG_PRINT(GetInternalTemp()); // Probably not calibrated. Just to print something.
                DEBUG_PRINTLN(" *C");
              */  
                delay(500); // Allow time for radio if power useed as reset
                DEBUG_PRINT("Node and "); DEBUG_PRINTLN("2 children presented.");
                
                raHum.clear();
                
              }
              
              void loop() { 
              
                measureCount ++;
                batteryReportCounter ++;
                bool forceTransmit = false;
                
                if (measureCount > FORCE_TRANSMIT_CYCLE) {
                  forceTransmit = true; 
                }
                sendTempHumidityMeasurements(forceTransmit);
              /*
                // Read and print internal temp
                float temperature0 = static_cast<float>(static_cast<int>((GetInternalTemp()+0.5) * 10.)) / 10.;
                DEBUG_PRINT("Internal Temp: "); DEBUG_PRINT(temperature0); DEBUG_PRINTLN(" *C");        
              */
                // Check battery
                if (batteryReportCounter >= BATTERY_REPORT_CYCLE) {
                  long batteryVolt = readVcc();
                  DEBUG_PRINT("Battery voltage: "); DEBUG_PRINT(batteryVolt); DEBUG_PRINTLN(" mV");
                  uint8_t batteryPcnt = constrain(map(batteryVolt,VMIN,VMAX,0,100),0,255);   
                  DEBUG_PRINT("Battery percent: "); DEBUG_PRINT(batteryPcnt); DEBUG_PRINTLN(" %");
                  sendBatteryLevel(batteryPcnt);
                  batteryReportCounter = 0;
                }
                
                sleep(SLEEP_TIME);
              }
              
              // function for reading Vcc by reading 1.1V reference against AVcc. Based from http://provideyourown.com/2012/secret-arduino-voltmeter-measure-battery-voltage/
              // To calibrate reading replace 1125300L with scale_constant = internal1.1Ref * 1023 * 1000, where internal1.1Ref = 1.1 * Vcc1 (per voltmeter) / Vcc2 (per readVcc() function) 
              long readVcc() {
                // set the reference to Vcc and the measurement to the internal 1.1V reference
                ADMUX = _BV(REFS0) | _BV(MUX3) | _BV(MUX2) | _BV(MUX1);
                delay(2); // Wait for Vref to settle
                ADCSRA |= _BV(ADSC); // Start conversion
                while (bit_is_set(ADCSRA,ADSC)); // measuring
                uint8_t low  = ADCL; // must read ADCL first - it then locks ADCH  
                uint8_t high = ADCH; // unlocks both
                long result = (high<<8) | low;
                result = 1125300L / result; // Calculate Vcc (in mV); 1125300 = 1.1*1023*1000
                return result; // Vcc in millivolts
              }
              // function for reading internal temp. From http://playground.arduino.cc/Main/InternalTemperatureSensor 
              double GetInternalTemp(void) {  // (Both double and float are 4 byte in most arduino implementation)
                unsigned int wADC;
                double t;
                // The internal temperature has to be used with the internal reference of 1.1V. Channel 8 can not be selected with the analogRead function yet.
                ADMUX = (_BV(REFS1) | _BV(REFS0) | _BV(MUX3));   // Set the internal reference and mux.
                ADCSRA |= _BV(ADEN);  // enable the ADC
                delay(20);            // wait for voltages to become stable.
                ADCSRA |= _BV(ADSC);  // Start the ADC
                while (bit_is_set(ADCSRA,ADSC));   // Detect end-of-conversion
                wADC = ADCW;   // Reading register "ADCW" takes care of how to read ADCL and ADCH.
                t = (wADC - 88.0 ) / 1.0;   // The default offset is 324.31.
                return (t);   // The returned temperature in degrees Celcius.
              }
              
              /*********************************************
               * * Sends temperature and humidity from Si7021 sensor
               * Parameters
               * - force : Forces transmission of a value (even if it's the same as previous measurement)
               *********************************************/
              void sendTempHumidityMeasurements(bool force) {
                bool tx = force;
              
                si7021_env data = humiditySensor.getHumidityAndTemperature();
                
                float temperature = data.celsiusHundredths / 100.0;
                DEBUG_PRINT("T: ");DEBUG_PRINTLN(temperature);
                float diffTemp = abs(lastTemperature - temperature);
                DEBUG_PRINT(F("TempDiff :"));DEBUG_PRINTLN(diffTemp);
                if (diffTemp > TEMP_TRANSMIT_THRESHOLD || tx) {
                  send(msgTemp.set(temperature,1));
                  lastTemperature = temperature;
                  measureCount = 0;
                  DEBUG_PRINTLN("T sent!");
                }
                
                int humidity = data.humidityPercent;
                DEBUG_PRINT("H: ");DEBUG_PRINTLN(humidity);
                raHum.addValue(humidity);
                humidity = raHum.getAverage();  // MA sample imply reasonable fast sample frequency
                float diffHum = abs(lastHumidity - humidity);  
                DEBUG_PRINT(F("HumDiff  :"));DEBUG_PRINTLN(diffHum); 
                if (diffHum > HUMI_TRANSMIT_THRESHOLD || tx) {
                  send(msgHum.set(humidity));
                  lastHumidity = humidity;
                  measureCount = 0;
                  DEBUG_PRINTLN("H sent!");
                }
              
              }
              

              Thank You!

              AWIA Offline
              AWIA Offline
              AWI
              Hero Member
              wrote on last edited by
              #99

              @jacikaas where did you get the si7021 library? Take a look at the sensebender sketch for a good reference.

              J 1 Reply Last reply
              0
              • AWIA AWI

                @jacikaas where did you get the si7021 library? Take a look at the sensebender sketch for a good reference.

                J Offline
                J Offline
                jacikaas
                wrote on last edited by
                #100

                @AWI
                I download Si7021 library from here: https://github.com/LowPowerLab/SI7021

                I was heard about Sensbender node, but never look deeper what is in it. I will look at it and try to understand whats in there. I just learning about all that stuff, so it will be good practice :blush:

                AWIA 1 Reply Last reply
                0
                • J jacikaas

                  @AWI
                  I download Si7021 library from here: https://github.com/LowPowerLab/SI7021

                  I was heard about Sensbender node, but never look deeper what is in it. I will look at it and try to understand whats in there. I just learning about all that stuff, so it will be good practice :blush:

                  AWIA Offline
                  AWIA Offline
                  AWI
                  Hero Member
                  wrote on last edited by
                  #101

                  @jacikaas that's the way to go. The sensebender sketch contains some rather nice best practices for low power. You best replace the si library with the one in the MySensors examples on github.

                  J 1 Reply Last reply
                  1
                  • AWIA AWI

                    @jacikaas that's the way to go. The sensebender sketch contains some rather nice best practices for low power. You best replace the si library with the one in the MySensors examples on github.

                    J Offline
                    J Offline
                    jacikaas
                    wrote on last edited by jacikaas
                    #102

                    @AWI I try to replace library from this one https://github.com/LowPowerLab/SI7021 to this one https://github.com/mysensors/MySensorsArduinoExamples

                    to work it I need to return variable name from:

                      int humidity = data.humidityBasisPoints;
                    

                    to:

                      int humidity = data.humidityPercent;
                    

                    I think this library https://github.com/LowPowerLab/SI7021 was updated, so it is not suitable for this one code. Now I test it again and everything looks fine:
                    0_1471719934242_chart (1).jpeg

                    Temperature and humidity node unregister or stop working repeatedly for about 2 hours (2h25min, 2.20, 1.50...). But after that it start to send data again, for some time and then goes around again. :) I will try to understand why it happening too.

                    1 Reply Last reply
                    0
                    • W Offline
                      W Offline
                      wergeld
                      wrote on last edited by
                      #103

                      I am trying to build the code using the HTU21D sensors. This built fine under 1.4 and 1.5 but now under v2 of MySensors I am getting this error:

                      C:\Users\wergeld\Documents\Arduino\SlimNodeSi7021\SlimNodeSi7021.ino:4:24: fatal error: MySensor.h: No such file or directory
                      
                       #include <MySensor.h>  
                      
                                              ^
                      
                      compilation terminated.
                      
                      exit status 1
                      Error compiling for board APM Optiboot internal 1MHz noBOD 9600baud.
                      

                      Okay, so I change my reference to:

                      #include <MySensors.h>
                      

                      And I get this lovely error:

                      In file included from C:\Users\wergeld\Documents\Arduino\SlimNodeSi7021\SlimNodeSi7021.ino:4:0:
                      
                      C:\Users\wergeld\Documents\Arduino\libraries\MySensors-master/MySensors.h:287:4: error: #error No forward link or gateway feature activated. This means nowhere to send messages! Pretty pointless.
                      
                         #error No forward link or gateway feature activated. This means nowhere to send messages! Pretty pointless.
                      
                          ^
                      
                      exit status 1
                      Error compiling for board APM Optiboot internal 1MHz noBOD 9600baud.
                      

                      So, other than slamming my head against my desk how can I solve this?

                      1 Reply Last reply
                      0
                      • W Offline
                        W Offline
                        wergeld
                        wrote on last edited by
                        #104

                        Well, I solved it by modifying the code to 2.0 spec. Good lord I need sleep. :anguished:
                        Working on debugging temp outputs now to Ethernet Gateway running on my Uno. Or I will sleep...

                        1 Reply Last reply
                        0
                        • W Offline
                          W Offline
                          wergeld
                          wrote on last edited by
                          #105

                          Okay, I now have a soldered node and serial gateway setup to my laptop for testing. It presents the sensor node! The name and available sensors is correct. Howevr, it never sends any message payload with temp/hum or battery values. I am using the HTU21D without soldering those 3 pads on it together. I need to get myself a 3.3v FTDI cable so I can serially debug I guess. But, still! Progress.

                          1 Reply Last reply
                          0
                          • W Offline
                            W Offline
                            wergeld
                            wrote on last edited by
                            #106

                            After soldering the 3 pads on the HTU21D I am now reading data and it is being sent to my test serial gateway. Need to measure current usage but at least it is functional.

                            1 Reply Last reply
                            0
                            • W Offline
                              W Offline
                              wergeld
                              wrote on last edited by
                              #107

                              Okay, seeing something odd. The force transmit does not appear to be working.
                              Here is my current sketch:

                              #define MY_RADIO_NRF24
                              
                              #include <MyConfig.h>
                              #include <MySensors.h>
                              
                              /* Sketch with Si7021 and battery monitoring.
                              by m26872, 20151109 
                              */
                              //#include <MySensors.h>  
                              #include <Wire.h>
                              #include <SparkFunHTU21D.h>
                              #include <SPI.h>
                              #include <RunningAverage.h>
                              
                              //#define DEBUG
                              
                              #ifdef DEBUG
                              #define DEBUG_SERIAL(x) Serial.begin(x)
                              #define DEBUG_PRINT(x) Serial.print(x)
                              #define DEBUG_PRINTLN(x) Serial.println(x)
                              #else
                              #define DEBUG_SERIAL(x)
                              #define DEBUG_PRINT(x) 
                              #define DEBUG_PRINTLN(x) 
                              #endif
                              
                              #define NODE_ID 132             // <<<<<<<<<<<<<<<<<<<<<<<<<<<   Enter Node_ID
                              #define CHILD_ID_TEMP 0
                              #define CHILD_ID_HUM 1
                              // #define SLEEP_TIME 15000 // 15s for DEBUG
                              #define SLEEP_TIME 300000   // 5 min
                              #define FORCE_TRANSMIT_CYCLE 36  // 5min*12=1/hour, 5min*36=1/3hour 
                              #define BATTERY_REPORT_CYCLE 2880   // Once per 5min   =>   12*24*7 = 2016 (one report/week)
                              #define VMIN 1900
                              #define VMAX 3300
                              #define HUMI_TRANSMIT_THRESHOLD 3.0  // THRESHOLD tells how much the value should have changed since last time it was transmitted.
                              #define TEMP_TRANSMIT_THRESHOLD 0.5
                              #define AVERAGES 2
                              
                              int batteryReportCounter = BATTERY_REPORT_CYCLE - 1;  // to make it report the first time.
                              int measureCount = 0;
                              float lastTemperature = -100;
                              int lastHumidity = -100;
                              
                              RunningAverage raHum(AVERAGES);
                              HTU21D humiditySensor;
                              
                              //MySensor gw;
                              MyMessage msgTemp(CHILD_ID_TEMP,V_TEMP); // Initialize temperature message
                              MyMessage msgHum(CHILD_ID_HUM,V_HUM);
                              
                              void presentation()  
                              { 
                                sendSketchInfo("HTU21D", "1.0"); 
                                present(CHILD_ID_TEMP, S_TEMP);   // Present sensor to controller
                                present(CHILD_ID_HUM, S_HUM);
                              }
                              
                              void setup() {
                                DEBUG_SERIAL(9600);    // <<<<<<<<<<<<<<<<<<<<<<<<<< Note BAUD_RATE in MySensors.h
                                DEBUG_PRINTLN("Serial started");
                                
                                DEBUG_PRINT("Voltage: ");
                                DEBUG_PRINT(readVcc()); 
                                DEBUG_PRINTLN(" mV");
                              /*
                                delay(500);
                                DEBUG_PRINT("Internal temp: ");
                                DEBUG_PRINT(GetInternalTemp()); // Probably not calibrated. Just to print something.
                                DEBUG_PRINTLN(" *C");
                              */  
                                delay(500); // Allow time for radio if power useed as reset
                                //gw.begin(NULL,NODE_ID);
                                //sendSketchInfo("HTU21D", "1.0"); 
                                //present(CHILD_ID_TEMP, S_TEMP);   // Present sensor to controller
                                //present(CHILD_ID_HUM, S_HUM);
                                DEBUG_PRINT("Node and "); DEBUG_PRINTLN("2 children presented.");
                                
                                raHum.clear();
                                
                              }
                              
                              void loop() { 
                              
                                measureCount ++;
                                batteryReportCounter ++;
                                bool forceTransmit = false;
                                
                                if (measureCount > FORCE_TRANSMIT_CYCLE) {
                                  forceTransmit = true; 
                                }
                                sendTempHumidityMeasurements(forceTransmit);
                              /*
                                // Read and print internal temp
                                float temperature0 = static_cast<float>(static_cast<int>((GetInternalTemp()+0.5) * 10.)) / 10.;
                                DEBUG_PRINT("Internal Temp: "); DEBUG_PRINT(temperature0); DEBUG_PRINTLN(" *C");        
                              */
                                // Check battery
                                if (batteryReportCounter >= BATTERY_REPORT_CYCLE) {
                                  long batteryVolt = readVcc();
                                  DEBUG_PRINT("Battery voltage: "); DEBUG_PRINT(batteryVolt); DEBUG_PRINTLN(" mV");
                                  uint8_t batteryPcnt = constrain(map(batteryVolt,VMIN,VMAX,0,100),0,255);   
                                  DEBUG_PRINT("Battery percent: "); DEBUG_PRINT(batteryPcnt); DEBUG_PRINTLN(" %");
                                  sendBatteryLevel(batteryPcnt);
                                  batteryReportCounter = 0;
                                }
                                
                                sleep(SLEEP_TIME);
                              }
                              
                              // function for reading Vcc by reading 1.1V reference against AVcc. Based from http://provideyourown.com/2012/secret-arduino-voltmeter-measure-battery-voltage/
                              // To calibrate reading replace 1125300L with scale_constant = internal1.1Ref * 1023 * 1000, where internal1.1Ref = 1.1 * Vcc1 (per voltmeter) / Vcc2 (per readVcc() function) 
                              long readVcc() {
                                // set the reference to Vcc and the measurement to the internal 1.1V reference
                                ADMUX = _BV(REFS0) | _BV(MUX3) | _BV(MUX2) | _BV(MUX1);
                                delay(2); // Wait for Vref to settle
                                ADCSRA |= _BV(ADSC); // Start conversion
                                while (bit_is_set(ADCSRA,ADSC)); // measuring
                                uint8_t low  = ADCL; // must read ADCL first - it then locks ADCH  
                                uint8_t high = ADCH; // unlocks both
                                long result = (high<<8) | low;
                                result = 1125300L / result; // Calculate Vcc (in mV); 1125300 = 1.1*1023*1000
                                return result; // Vcc in millivolts
                              }
                              // function for reading internal temp. From http://playground.arduino.cc/Main/InternalTemperatureSensor 
                              double GetInternalTemp(void) {  // (Both double and float are 4 byte in most arduino implementation)
                                unsigned int wADC;
                                double t;
                                // The internal temperature has to be used with the internal reference of 1.1V. Channel 8 can not be selected with the analogRead function yet.
                                ADMUX = (_BV(REFS1) | _BV(REFS0) | _BV(MUX3));   // Set the internal reference and mux.
                                ADCSRA |= _BV(ADEN);  // enable the ADC
                                delay(20);            // wait for voltages to become stable.
                                ADCSRA |= _BV(ADSC);  // Start the ADC
                                while (bit_is_set(ADCSRA,ADSC));   // Detect end-of-conversion
                                wADC = ADCW;   // Reading register "ADCW" takes care of how to read ADCL and ADCH.
                                t = (wADC - 88.0 ) / 1.0;   // The default offset is 324.31.
                                return (t);   // The returned temperature in degrees Celcius.
                              }
                              
                              /*********************************************
                               * * Sends temperature and humidity from Si7021 sensor
                               * Parameters
                               * - force : Forces transmission of a value (even if it's the same as previous measurement)
                               *********************************************/
                              void sendTempHumidityMeasurements(bool force) {
                                bool tx = force;
                                
                                float temperature = humiditySensor.readTemperature();
                                DEBUG_PRINT("T: ");DEBUG_PRINTLN(temperature);
                              
                                float diffTemp = abs(lastTemperature - temperature);
                                DEBUG_PRINT(F("TempDiff :"));DEBUG_PRINTLN(diffTemp);
                              
                                if (diffTemp > TEMP_TRANSMIT_THRESHOLD || tx) {
                                  send(msgTemp.set(temperature,1));
                                  lastTemperature = temperature;
                                  measureCount = 0;
                                  DEBUG_PRINTLN("T sent!");
                                }
                                
                                int humidity = humiditySensor.readHumidity();
                                DEBUG_PRINT("H: ");DEBUG_PRINTLN(humidity);
                              
                                raHum.addValue(humidity);
                                humidity = raHum.getAverage();  // MA sample imply reasonable fast sample frequency
                                float diffHum = abs(lastHumidity - humidity);
                                DEBUG_PRINT(F("HumDiff  :"));DEBUG_PRINTLN(diffHum); 
                              
                                if (diffHum > HUMI_TRANSMIT_THRESHOLD || tx) {
                                  send(msgHum.set(humidity));
                                  lastHumidity = humidity;
                                  measureCount = 0;
                                  DEBUG_PRINTLN("H sent!");
                                }
                              }
                              

                              I am at 1+ hours since last transmission.

                              m26872M 1 Reply Last reply
                              0
                              • W wergeld

                                Okay, seeing something odd. The force transmit does not appear to be working.
                                Here is my current sketch:

                                #define MY_RADIO_NRF24
                                
                                #include <MyConfig.h>
                                #include <MySensors.h>
                                
                                /* Sketch with Si7021 and battery monitoring.
                                by m26872, 20151109 
                                */
                                //#include <MySensors.h>  
                                #include <Wire.h>
                                #include <SparkFunHTU21D.h>
                                #include <SPI.h>
                                #include <RunningAverage.h>
                                
                                //#define DEBUG
                                
                                #ifdef DEBUG
                                #define DEBUG_SERIAL(x) Serial.begin(x)
                                #define DEBUG_PRINT(x) Serial.print(x)
                                #define DEBUG_PRINTLN(x) Serial.println(x)
                                #else
                                #define DEBUG_SERIAL(x)
                                #define DEBUG_PRINT(x) 
                                #define DEBUG_PRINTLN(x) 
                                #endif
                                
                                #define NODE_ID 132             // <<<<<<<<<<<<<<<<<<<<<<<<<<<   Enter Node_ID
                                #define CHILD_ID_TEMP 0
                                #define CHILD_ID_HUM 1
                                // #define SLEEP_TIME 15000 // 15s for DEBUG
                                #define SLEEP_TIME 300000   // 5 min
                                #define FORCE_TRANSMIT_CYCLE 36  // 5min*12=1/hour, 5min*36=1/3hour 
                                #define BATTERY_REPORT_CYCLE 2880   // Once per 5min   =>   12*24*7 = 2016 (one report/week)
                                #define VMIN 1900
                                #define VMAX 3300
                                #define HUMI_TRANSMIT_THRESHOLD 3.0  // THRESHOLD tells how much the value should have changed since last time it was transmitted.
                                #define TEMP_TRANSMIT_THRESHOLD 0.5
                                #define AVERAGES 2
                                
                                int batteryReportCounter = BATTERY_REPORT_CYCLE - 1;  // to make it report the first time.
                                int measureCount = 0;
                                float lastTemperature = -100;
                                int lastHumidity = -100;
                                
                                RunningAverage raHum(AVERAGES);
                                HTU21D humiditySensor;
                                
                                //MySensor gw;
                                MyMessage msgTemp(CHILD_ID_TEMP,V_TEMP); // Initialize temperature message
                                MyMessage msgHum(CHILD_ID_HUM,V_HUM);
                                
                                void presentation()  
                                { 
                                  sendSketchInfo("HTU21D", "1.0"); 
                                  present(CHILD_ID_TEMP, S_TEMP);   // Present sensor to controller
                                  present(CHILD_ID_HUM, S_HUM);
                                }
                                
                                void setup() {
                                  DEBUG_SERIAL(9600);    // <<<<<<<<<<<<<<<<<<<<<<<<<< Note BAUD_RATE in MySensors.h
                                  DEBUG_PRINTLN("Serial started");
                                  
                                  DEBUG_PRINT("Voltage: ");
                                  DEBUG_PRINT(readVcc()); 
                                  DEBUG_PRINTLN(" mV");
                                /*
                                  delay(500);
                                  DEBUG_PRINT("Internal temp: ");
                                  DEBUG_PRINT(GetInternalTemp()); // Probably not calibrated. Just to print something.
                                  DEBUG_PRINTLN(" *C");
                                */  
                                  delay(500); // Allow time for radio if power useed as reset
                                  //gw.begin(NULL,NODE_ID);
                                  //sendSketchInfo("HTU21D", "1.0"); 
                                  //present(CHILD_ID_TEMP, S_TEMP);   // Present sensor to controller
                                  //present(CHILD_ID_HUM, S_HUM);
                                  DEBUG_PRINT("Node and "); DEBUG_PRINTLN("2 children presented.");
                                  
                                  raHum.clear();
                                  
                                }
                                
                                void loop() { 
                                
                                  measureCount ++;
                                  batteryReportCounter ++;
                                  bool forceTransmit = false;
                                  
                                  if (measureCount > FORCE_TRANSMIT_CYCLE) {
                                    forceTransmit = true; 
                                  }
                                  sendTempHumidityMeasurements(forceTransmit);
                                /*
                                  // Read and print internal temp
                                  float temperature0 = static_cast<float>(static_cast<int>((GetInternalTemp()+0.5) * 10.)) / 10.;
                                  DEBUG_PRINT("Internal Temp: "); DEBUG_PRINT(temperature0); DEBUG_PRINTLN(" *C");        
                                */
                                  // Check battery
                                  if (batteryReportCounter >= BATTERY_REPORT_CYCLE) {
                                    long batteryVolt = readVcc();
                                    DEBUG_PRINT("Battery voltage: "); DEBUG_PRINT(batteryVolt); DEBUG_PRINTLN(" mV");
                                    uint8_t batteryPcnt = constrain(map(batteryVolt,VMIN,VMAX,0,100),0,255);   
                                    DEBUG_PRINT("Battery percent: "); DEBUG_PRINT(batteryPcnt); DEBUG_PRINTLN(" %");
                                    sendBatteryLevel(batteryPcnt);
                                    batteryReportCounter = 0;
                                  }
                                  
                                  sleep(SLEEP_TIME);
                                }
                                
                                // function for reading Vcc by reading 1.1V reference against AVcc. Based from http://provideyourown.com/2012/secret-arduino-voltmeter-measure-battery-voltage/
                                // To calibrate reading replace 1125300L with scale_constant = internal1.1Ref * 1023 * 1000, where internal1.1Ref = 1.1 * Vcc1 (per voltmeter) / Vcc2 (per readVcc() function) 
                                long readVcc() {
                                  // set the reference to Vcc and the measurement to the internal 1.1V reference
                                  ADMUX = _BV(REFS0) | _BV(MUX3) | _BV(MUX2) | _BV(MUX1);
                                  delay(2); // Wait for Vref to settle
                                  ADCSRA |= _BV(ADSC); // Start conversion
                                  while (bit_is_set(ADCSRA,ADSC)); // measuring
                                  uint8_t low  = ADCL; // must read ADCL first - it then locks ADCH  
                                  uint8_t high = ADCH; // unlocks both
                                  long result = (high<<8) | low;
                                  result = 1125300L / result; // Calculate Vcc (in mV); 1125300 = 1.1*1023*1000
                                  return result; // Vcc in millivolts
                                }
                                // function for reading internal temp. From http://playground.arduino.cc/Main/InternalTemperatureSensor 
                                double GetInternalTemp(void) {  // (Both double and float are 4 byte in most arduino implementation)
                                  unsigned int wADC;
                                  double t;
                                  // The internal temperature has to be used with the internal reference of 1.1V. Channel 8 can not be selected with the analogRead function yet.
                                  ADMUX = (_BV(REFS1) | _BV(REFS0) | _BV(MUX3));   // Set the internal reference and mux.
                                  ADCSRA |= _BV(ADEN);  // enable the ADC
                                  delay(20);            // wait for voltages to become stable.
                                  ADCSRA |= _BV(ADSC);  // Start the ADC
                                  while (bit_is_set(ADCSRA,ADSC));   // Detect end-of-conversion
                                  wADC = ADCW;   // Reading register "ADCW" takes care of how to read ADCL and ADCH.
                                  t = (wADC - 88.0 ) / 1.0;   // The default offset is 324.31.
                                  return (t);   // The returned temperature in degrees Celcius.
                                }
                                
                                /*********************************************
                                 * * Sends temperature and humidity from Si7021 sensor
                                 * Parameters
                                 * - force : Forces transmission of a value (even if it's the same as previous measurement)
                                 *********************************************/
                                void sendTempHumidityMeasurements(bool force) {
                                  bool tx = force;
                                  
                                  float temperature = humiditySensor.readTemperature();
                                  DEBUG_PRINT("T: ");DEBUG_PRINTLN(temperature);
                                
                                  float diffTemp = abs(lastTemperature - temperature);
                                  DEBUG_PRINT(F("TempDiff :"));DEBUG_PRINTLN(diffTemp);
                                
                                  if (diffTemp > TEMP_TRANSMIT_THRESHOLD || tx) {
                                    send(msgTemp.set(temperature,1));
                                    lastTemperature = temperature;
                                    measureCount = 0;
                                    DEBUG_PRINTLN("T sent!");
                                  }
                                  
                                  int humidity = humiditySensor.readHumidity();
                                  DEBUG_PRINT("H: ");DEBUG_PRINTLN(humidity);
                                
                                  raHum.addValue(humidity);
                                  humidity = raHum.getAverage();  // MA sample imply reasonable fast sample frequency
                                  float diffHum = abs(lastHumidity - humidity);
                                  DEBUG_PRINT(F("HumDiff  :"));DEBUG_PRINTLN(diffHum); 
                                
                                  if (diffHum > HUMI_TRANSMIT_THRESHOLD || tx) {
                                    send(msgHum.set(humidity));
                                    lastHumidity = humidity;
                                    measureCount = 0;
                                    DEBUG_PRINTLN("H sent!");
                                  }
                                }
                                

                                I am at 1+ hours since last transmission.

                                m26872M Offline
                                m26872M Offline
                                m26872
                                Hardware Contributor
                                wrote on last edited by
                                #108

                                @wergeld It looks like it's set to 3 hrs.

                                W 1 Reply Last reply
                                0
                                • m26872M m26872

                                  @wergeld It looks like it's set to 3 hrs.

                                  W Offline
                                  W Offline
                                  wergeld
                                  wrote on last edited by
                                  #109

                                  @m26872
                                  Indeed it does. Just was throwing me off with the wording. I read it as "1/2 hour" or "1/3 hour". So far I am prepping up more nodes. Have 4 more 328s to programs and build out. I am thinking at the end I will have:

                                  1. Gateway (serial or the direct connect nrf+ once it supports v2)
                                  2. Temp/Hum node using HTU21D for back porch sending every 5 minutes and force send every 30 minutes.
                                  3. Temp/Hum node using HTU21D inside using same send times.
                                  4. Parking sensor in garage hardwired to mains.
                                    5 & 6 I am not sure yet.

                                  Lots of fun so far.

                                  1 Reply Last reply
                                  0
                                  • W Offline
                                    W Offline
                                    wergeld
                                    wrote on last edited by
                                    #110

                                    I am seeing 5.0 μA at sleep and 12.4 mA when transmitting. Seems kind of high. I did the poor man's test as well - put an LED across the HTU21D power pins and it lit up. Same when I did it across the nrf's power pins. Shouldn't the MySensors code turn off the power rails during sleep?

                                    GertSandersG 1 Reply Last reply
                                    0
                                    • W wergeld

                                      I am seeing 5.0 μA at sleep and 12.4 mA when transmitting. Seems kind of high. I did the poor man's test as well - put an LED across the HTU21D power pins and it lit up. Same when I did it across the nrf's power pins. Shouldn't the MySensors code turn off the power rails during sleep?

                                      GertSandersG Offline
                                      GertSandersG Offline
                                      GertSanders
                                      Hardware Contributor
                                      wrote on last edited by
                                      #111

                                      @wergeld

                                      No, the powerrails are not turned off, just the devices themselves.

                                      5uA during sleep is about right. The 12.4mA during transmit is also normal, but the transmit time should be very short, so on average the total consumption of power will be low.

                                      W 1 Reply Last reply
                                      0
                                      • GertSandersG GertSanders

                                        @wergeld

                                        No, the powerrails are not turned off, just the devices themselves.

                                        5uA during sleep is about right. The 12.4mA during transmit is also normal, but the transmit time should be very short, so on average the total consumption of power will be low.

                                        W Offline
                                        W Offline
                                        wergeld
                                        wrote on last edited by
                                        #112

                                        @GertSanders Excellent! I was hoping I hadn't wired it up wrong. So far the 2 nodes have been flawless for the past 3 days. Next step is to await the direct attached NRF serial gateway to be v2 compatible. Been following along with this thread. Looks like we are getting closer! I have 2 RPis (one a first gen B and the other a Pi2 B ) with this adapter by ceech:
                                        https://www.openhardware.io/view/100/Raspberry-PI-NRF24l01-hat

                                        1 Reply Last reply
                                        0
                                        • clempatC Offline
                                          clempatC Offline
                                          clempat
                                          wrote on last edited by clempat
                                          #113

                                          Hi everyone,

                                          First thanks for sharing. I love this slim node. But I am facing some issues I did not success to debug. So I use the code shared here for mysensors 2. I try with the mysensors exemple library (did not work at all). I try with the https://github.com/LowPowerLab/SI7021 which worked (at least for getting separately temperature and humidity and using the example file) on an arduino nano. But when I run this sensor with the slim node (red, boot loader 8mhz) and the code (for 2.0.0) I always get -46.85 for temperature and 118 for humidity. Otherwise the radio work normally.

                                          Winter is coming and I don't know what I could do anymore. Thanks to share you idea on this.

                                          With the example code I use on the nano. I get with the slim node:

                                          T: -46.85
                                          H: 118
                                          device ID: 50
                                          

                                          With Arduino nano:

                                          T: 24.34
                                          H: 43
                                          device ID: 50
                                          
                                          clempatC 1 Reply Last reply
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