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    Edge Impulse Inference to IoT Dashboard

    General Discussion
    edge impulse
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    • salmanfaris
      salmanfaris @dipu_varghese last edited by

      Hi @dipu_varghese πŸ‘‹ ,

      There is two way you can take the data/output information to the cloud.

      1. You need to use the Arduino library for inferencing the model and then push the data in a particular interval or with the triggers. Since the BLE nano sense doesn't have WiFi, you might need to route the network via Bluetooth to the internet-connected gateway, for example, a raspberry pi as DIY or you can transfer the data from Arduino to a wifi controller via serial, for example, transfer the result via UART or I2C to esp8266 or esp32 and then from esp you can push the data to cloud.

      2. The next method is you can use the prebuilt inferencing binary generated by the edge impulse system, as read the serial output with a Wffi or internet-enabled controller, such as raspberry pi, esp32, or esp8266, and after we need to do some processing and cleaning of the data, then push to the cloud.

      These are the method in my mind, please check them and let me know what you think. Happy making πŸ™Œ.

      D 1 Reply Last reply Reply Quote 1
      • D
        dipu_varghese @salmanfaris last edited by

        Hi @salmanfaris

        Thank you for sharing these two methods to take data/output information to the cloud. It's very helpful, and I appreciate your willingness to share your knowledge and expertise.

        Regarding the second method, could you please clarify what kind of processing and cleaning of data needs to be done before pushing it to the cloud? Thank you!

        Best,
        Dipu

        salmanfaris 1 Reply Last reply Reply Quote 0
        • salmanfaris
          salmanfaris @dipu_varghese last edited by

          @dipu_varghese The serial data from the prebuilt inferencing binary will be a little big with string size as it comes with all inferencing data points and it's confidence level plus the model information, you might only need the inferencing score or the inferencing data, so you can filter that out and send that to the cloud. Hope you get the idea. Let me know if you need an example.

          D 1 Reply Last reply Reply Quote 0
          • D
            dipu_varghese @salmanfaris last edited by

            Thank you for your response! @salmanfaris πŸ™‚

            It makes sense that filtering out the specific data points that are needed and sending them to the cloud would be the way to go.

            If it's not too much trouble, could you please provide me with an example of how to filter out and send only the necessary inferencing data to the cloud?

            Thank you again for your help!

            Best,
            Dipu

            salmanfaris 1 Reply Last reply Reply Quote 0
            • salmanfaris
              salmanfaris @dipu_varghese last edited by

              @dipu_varghese Sure, I'll try to make an example in one coming day and share.

              D 2 Replies Last reply Reply Quote 0
              • D
                dipu_varghese @salmanfaris last edited by

                @salmanfaris I really appreciate your help and look forward to seeing the example.

                Best,
                Dipu

                D 1 Reply Last reply Reply Quote 0
                • D
                  dipu_varghese @dipu_varghese last edited by

                  @salmanfaris Hope you're doing well, did you get sometime to work on this?

                  Best,
                  Dipu

                  1 Reply Last reply Reply Quote 0
                  • D
                    dipu_varghese @salmanfaris last edited by

                    @salmanfaris any updates?

                    Best,
                    Dipu

                    salmanfaris 1 Reply Last reply Reply Quote 0
                    • salmanfaris
                      salmanfaris @dipu_varghese last edited by salmanfaris

                      Hi @dipu_varghese ,

                      Here is the sample input from the binary edge impulse inference,

                      Predictions (DSP: 16 ms., Classification: 1 ms., Anomaly: 2 ms.):
                      idle: 0.91016
                      snake: 0.08203
                      updown: 0.00391
                      wave: 0.00391
                      anomaly score: -0.067”
                      

                      And from here for example we can try to get the updown values only by attaching the device to another controller and read the Serial string directly.

                      void setup() {
                        // Start serial communication at 9600 baud
                        Serial.begin(9600);
                      }
                      
                      void loop() {
                        // Wait until there is data available on the serial port
                        while (!Serial.available()) {
                          // Do nothing
                        }
                      
                        // Read the input string from the serial port
                        String inputString = Serial.readStringUntil('\n');
                      
                        // Find the position of the "updown" value in the input string
                        int updownPos = inputString.indexOf("updown:");
                      
                        // If the "updown" value was found in the input string
                        if (updownPos >= 0) {
                          // Extract the "updown" value from the input string
                          String updownString = inputString.substring(updownPos + 8, inputString.indexOf('\n', updownPos));
                      
                      // Convert the "updown" value to a float
                          float updownValue = updownString.toFloat();
                      
                       // Output the "updown" value
                          Serial.println(updownValue);
                        }
                      }
                      

                      The sketch should then output the "updown" value, which is 0.08203.

                      Hope this will be helpful, let me know if you need more clarification.

                      D 1 Reply Last reply Reply Quote 0
                      • D
                        dipu_varghese @salmanfaris last edited by

                        @salmanfaris thank you so much man, I'll try this and update you shortly. Thank you once again.

                        Best,
                        Dipu

                        salmanfaris 1 Reply Last reply Reply Quote 1
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                        • @zainmuhammed Can try capturing the GPS when the device is starting the loop instead after joining the LoRaWAN and see?

                          You can put the GPS value on top of the loop or setup function.

                          Also, what kind of gateway are you using? Is it configured okay, OTA is done?

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                        • @salmanfaris Today I tried after connecting a 18650 cell,
                          WhatsApp Image 2024-04-12 at 10.40.06_c7d1947e.jpg WhatsApp Image 2024-04-12 at 10.40.05_897b8bb6.jpg
                          Data getting in console after integration of both lora and gps.
                          3f45cfe7-0061-4328-8c55-ef0a73385203-image.png
                          here you can see that GPS value is 0,0. also in my previous post you can see that GPS value is not reading.
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                        • Hi @zainmuhammed ,

                          Can you share the GPS and LoRa output when it’s working?

                          Also can try capturing the GPS when the device is starting the loop instead after joining the LoRaWAN and see?

                          Also make sure the device provides have enough to modules. The GPS need more power when you cold start.

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                        • @zainmuhammed
                          this is the code

                          #include <Arduino.h> #include <U8x8lib.h> #include <TinyGPS++.h> #include <SoftwareSerial.h> static const int RXPin = 1, TXPin = 2; static const uint32_t GPSBaud = 9600; // The TinyGPS++ object TinyGPSPlus gps; // The serial connection to the GPS device SoftwareSerial ss(RXPin, TXPin); U8X8_SSD1306_128X64_NONAME_HW_I2C u8x8(/*reset=*/U8X8_PIN_NONE); // U8X8_SSD1306_128X64_NONAME_SW_I2C u8x8(/*clock=*/ SCL, /*data=*/ SDA, /*reset=*/ U8X8_PIN_NONE); // OLEDs without Reset of the Display static char recv_buf[512]; static bool is_exist = false; static bool is_join = false; static int led = 0; static int at_send_check_response(char *p_ack, int timeout_ms, char *p_cmd, ...) { int ch; int num = 0; int index = 0; int startMillis = 0; va_list args; char cmd_buffer[256]; // Adjust the buffer size as needed memset(recv_buf, 0, sizeof(recv_buf)); va_start(args, p_cmd); vsprintf(cmd_buffer, p_cmd, args); // Format the command string Serial1.print(cmd_buffer); Serial.print(cmd_buffer); va_end(args); delay(200); startMillis = millis(); if (p_ack == NULL) { return 0; } do { while (Serial1.available() > 0) { ch = Serial1.read(); recv_buf[index++] = ch; Serial.print((char)ch); delay(2); } if (strstr(recv_buf, p_ack) != NULL) { return 1; } } while (millis() - startMillis < timeout_ms); return 0; } static void recv_prase(char *p_msg) { if (p_msg == NULL) { return; } char *p_start = NULL; int data = 0; int rssi = 0; int snr = 0; p_start = strstr(p_msg, "RX"); if (p_start && (1 == sscanf(p_start, "RX: \"%d\"\r\n", &data))) { Serial.println(data); u8x8.setCursor(2, 4); u8x8.print("led :"); led = !!data; u8x8.print(led); if (led) { digitalWrite(LED_BUILTIN, LOW); } else { digitalWrite(LED_BUILTIN, HIGH); } } p_start = strstr(p_msg, "RSSI"); if (p_start && (1 == sscanf(p_start, "RSSI %d,", &rssi))) { u8x8.setCursor(0, 6); u8x8.print(" "); u8x8.setCursor(2, 6); u8x8.print("rssi:"); u8x8.print(rssi); } p_start = strstr(p_msg, "SNR"); if (p_start && (1 == sscanf(p_start, "SNR %d", &snr))) { u8x8.setCursor(0, 7); u8x8.print(" "); u8x8.setCursor(2, 7); u8x8.print("snr :"); u8x8.print(snr); } } void setup(void) { u8x8.begin(); u8x8.setFlipMode(1); u8x8.setFont(u8x8_font_chroma48medium8_r); ss.begin(GPSBaud); Serial.begin(GPSBaud); pinMode(LED_BUILTIN, OUTPUT); digitalWrite(LED_BUILTIN, HIGH); Serial1.begin(9600); Serial.print("E5 LORAWAN TEST\r\n"); u8x8.setCursor(0, 0); if (at_send_check_response("+AT: OK", 100, "AT\r\n")) { is_exist = true; at_send_check_response("+ID: DevEui", 1000, "AT+ID=DevEui,\"xxxxx\"\r\n"); // replace 'xxxxxxxxxxxxx' with your DevEui at_send_check_response("+ID: AppEui", 1000, "AT+ID=AppEui,\"xxxxxxx\"\r\n"); // replace 'xxxxxxxxxxxxx' with your AppEui at_send_check_response("+KEY: APPKEY", 1000, "AT+KEY=APPKEY,\"xxxxxxxxx\"\r\n"); // replace 'xxxxxxxxxxxxx' with your AppKey at_send_check_response("+ID: DevAddr", 1000, "AT+ID=DevAddr\r\n"); at_send_check_response("+ID: AppEui", 1000, "AT+ID\r\n"); at_send_check_response("+MODE: LWOTAA", 1000, "AT+MODE=LWOTAA\r\n"); at_send_check_response("+DR: IN865", 1000, "AT+DR=IN865\r\n"); // Change FREQ as per your location at_send_check_response("+CH: NUM", 1000, "AT+CH=NUM,0-2\r\n"); at_send_check_response("+CLASS: C", 1000, "AT+CLASS=A\r\n"); at_send_check_response("+PORT: 8", 1000, "AT+PORT=8\r\n"); delay(200); u8x8.setCursor(5, 0); u8x8.print("LoRaWAN"); is_join = true; } else { is_exist = false; Serial.print("No E5 module found.\r\n"); u8x8.setCursor(0, 1); u8x8.print("unfound E5 !"); } u8x8.setCursor(2, 4); u8x8.print("led :"); u8x8.print(led); } void loop(void) { if (is_exist) { int ret = 0; if (is_join) { ret = at_send_check_response("+JOIN: Network joined", 12000, "AT+JOIN\r\n"); if (ret) { is_join = false; } else { at_send_check_response("+ID: AppEui", 1000, "AT+ID\r\n"); Serial.print("JOIN failed!\r\n\r\n"); delay(5000); } } else { gps.encode(ss.read()); float a=gps.location.lat(); float b=gps.location.lng(); Serial.println(a); Serial.println(b); char cmd[128]; sprintf(cmd, "AT+CMSGHEX=\"%04X%04X\"\r\n", (float)a,(float)b); ret = at_send_check_response("Done", 5000, cmd); if (ret) { recv_prase(recv_buf); } else { Serial.print("Send failed!\r\n\r\n"); } delay(5000); } } else { delay(1000); } }

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