- Design LoRa packet protocol with CRC16 validation - Add protocol header files (lora_protocol.h, lora_packet.h) - Create battery-powered remote node firmware template - Support for DHT22, BME680, DS18B20 sensors - Deep sleep for battery conservation - Automatic gateway registration - Add LoRa receive to gateway firmware - RadioLib SX1262 integration - Node registry for tracking up to 16 nodes - HTTP forwarding of received readings - ACK responses to remote nodes - Create comprehensive setup guide with wiring diagrams Co-Authored-By: Claude Opus 4.5 <noreply@anthropic.com>
12 KiB
12 KiB
ZNET Temperature Sensor System - Setup Guide
Complete guide for setting up the ZNET temperature monitoring system with gateway and remote sensor nodes.
System Overview
┌──────────────────────────────────────────────────────────────────────────┐
│ ZNET Temperature System │
├──────────────────────────────────────────────────────────────────────────┤
│ │
│ ┌────────────┐ LoRa 915MHz ┌────────────┐ │
│ │ Remote #1 │◄──────────────────────────►│ │ │
│ │ DHT22 │ │ Gateway │ WiFi │
│ │ ambient │ LoRa 915MHz │ ESP32 │◄──────┐ │
│ └────────────┘◄──────────────────────────►│ LoRa V3 │ │ │
│ ┌────────────┐ │ │ │ │
│ │ Remote #2 │ LoRa 915MHz │ DS18B20 x2 │ │ │
│ │ BME680 │◄──────────────────────────►│ (in tank) │ │ │
│ │ VOC/air │ └─────┬──────┘ │ │
│ └────────────┘ │ │ │
│ │ OLED │ │
│ │ Display │ │
│ ▼ ▼ │
│ ┌──────────────────────────┐ │
│ │ ZNET Web Backend │ │
│ │ (FastAPI + PostgreSQL)│ │
│ └──────────────────────────┘ │
│ │
└──────────────────────────────────────────────────────────────────────────┘
Hardware Required
Gateway (1x per tank)
| Part | Model | Qty | Purpose | Notes |
|---|---|---|---|---|
| MCU | Meshnology ESP32 LoRa V3 | 1 | Main controller | Built-in OLED, LoRa |
| Sensor | DS18B20 waterproof | 2 | Tank temperature | Stainless steel, 1m cable |
| Resistor | 4.7kΩ 1/4W | 1 | 1-Wire pullup | Between DATA and VCC |
| Enclosure | IP65 junction box | 1 | Protection | At least 120x80x50mm |
| Cable gland | PG9 | 2 | Wire entry | For sensor cables |
| Power | 5V 2A USB adapter | 1 | Gateway power | Or 3.7V LiPo with USB charging |
Remote Nodes (optional, 0-16 per gateway)
| Part | Model | Qty | Purpose | Notes |
|---|---|---|---|---|
| MCU | Heltec WiFi LoRa 32 V3 | 1 | Node controller | Or TTGO LoRa32 |
| Sensor | DHT22 or BME680 | 1 | Temp/humidity/VOC | Choose based on need |
| Battery | 3.7V LiPo 1000mAh | 1 | Power | With JST connector |
| Enclosure | Weatherproof box | 1 | Protection | IP54 minimum |
Wiring Diagrams
Gateway Wiring (ESP32 LoRa V3 + DS18B20 x2)
ESP32 LoRa V3
┌─────────────────────┐
│ │
│ GPIO7 ─────┬───────┼──► DS18B20 #1 DATA (yellow)
│ │ │
│ └───────┼──► DS18B20 #2 DATA (yellow)
│ │
│ 3.3V ──────┬───────┼──► DS18B20 #1 VCC (red)
│ │ │
│ └───────┼──► DS18B20 #2 VCC (red)
│ │
│ GND ───────┬───────┼──► DS18B20 #1 GND (black)
│ │ │
│ └───────┼──► DS18B20 #2 GND (black)
│ │
└─────────────────────┘
Add 4.7kΩ resistor between GPIO7 and 3.3V (pullup)
DS18B20 Color Code:
- Red: VCC (3.3V)
- Black: GND
- Yellow: DATA (1-Wire)
Remote Node Wiring (ESP32 LoRa V3 + DHT22)
ESP32 LoRa V3
┌─────────────────────┐
│ │ DHT22 Module
│ GPIO7 ─────────────┼──────► DATA
│ │
│ 3.3V ──────────────┼──────► VCC
│ │
│ GND ───────────────┼──────► GND
│ │
│ │
│ VBAT ◄─────────────┼────── LiPo + (red)
│ │
│ GND ◄──────────────┼────── LiPo - (black)
│ │
└─────────────────────┘
DHT22 Module (4-pin with PCB):
- VCC: 3.3V
- DATA: GPIO7 (10kΩ pullup usually built-in)
- NC: Not connected
- GND: Ground
Remote Node Wiring (ESP32 + BME680 via I2C)
ESP32 LoRa V3
┌─────────────────────┐
│ │ BME680 Module
│ GPIO21 (SDA)───────┼──────► SDA
│ │
│ GPIO22 (SCL)───────┼──────► SCL
│ │
│ 3.3V ──────────────┼──────► VCC
│ │
│ GND ───────────────┼──────► GND
│ │
│ VBAT ◄─────────────┼────── LiPo + (red)
│ │
│ GND ◄──────────────┼────── LiPo - (black)
│ │
└─────────────────────┘
BME680 I2C Address: 0x76 (default) or 0x77
Firmware Installation
Prerequisites
# Install PlatformIO
pip install platformio
# Clone firmware repository
cd ~/Nextcloud/Dev
git clone https://git.ecoat.us/leehughes/znet-temp-sensor.git
cd znet-temp-sensor
Flash Gateway
-
Connect ESP32 via USB
-
Configure settings - Edit
include/config.h:// Set your ZNET Web API endpoint #define ZNET_API_URL "http://192.168.1.100:8000/api/v1/sensors/readings" // Set unique device ID #define DEVICE_ID "tank_gateway_tulsa" #define DEVICE_NAME "Tulsa E-Coat Tank Gateway" -
Build and upload:
pio run --target upload -
Monitor serial output:
pio device monitor -
Configure WiFi:
- On first boot, gateway creates WiFi network:
ZNET-TempSensor - Connect to it with password:
znettemp123 - Browser opens captive portal - enter your WiFi credentials
- Gateway reboots and connects
- On first boot, gateway creates WiFi network:
Flash Remote Node
-
Connect ESP32 via USB
-
Configure node - Edit
remote-node/include/config.h:// Set unique node ID (or 0xFFFF for auto-assign) #define NODE_ID 0x0101 // Human-readable name (max 8 chars) #define NODE_NAME "Ambient1" // Report interval (seconds) #define REPORT_INTERVAL_SEC 60 -
Build and upload (choose variant):
cd remote-node # For DHT22 sensor: pio run -e heltec_v3_dht22 --target upload # For BME680 sensor: pio run -e heltec_v3_bme680 --target upload -
Verify operation:
- Check serial output for successful registration
- Gateway should show increased node count on OLED
Backend Setup
Database Migration
cd ~/Nextcloud/Dev/znet-web/backend
# Run migration to create temperature tables
uv run alembic upgrade head
Verify API Endpoint
# Check sensors endpoint is working
curl http://localhost:8000/api/v1/sensors/
# Test posting a reading
curl -X POST http://localhost:8000/api/v1/sensors/readings \
-H "Content-Type: application/json" \
-d '{
"device_id": "test_gateway",
"device_name": "Test Gateway",
"readings": [
{
"sensor_id": "tank_primary",
"temperature_f": 85.5,
"is_valid": true
}
]
}'
Testing
Test Gateway Locally
- Power on gateway
- Verify OLED shows temperature readings
- Check serial output for API POST success:
Reading temperatures... Sensor 1: 85.50°F (valid) Sensor 2: 85.30°F (valid) Posting to ZNET Web API... API POST success (code 200)
Test Remote Node
- Power on remote node
- Watch gateway serial output:
LoRa RX: 15 bytes, RSSI -45 dBm Packet from 0x0101, type 0, seq 42 DHT22 from 0x0101: 74.3°F, 55.0% RH LoRa reading forwarded (0x0101) ACK sent to 0x0101 seq 42
Test WebSocket Updates
- Open ZNET Web dashboard in browser
- Verify temperature displays update without page refresh
- Check browser console for WebSocket messages
Troubleshooting
Gateway Issues
| Problem | Cause | Solution |
|---|---|---|
| "No sensors found" | Wiring issue | Check DATA line, pullup resistor |
| "WiFi failed" | Wrong credentials | Reset and reconfigure via portal |
| "API POST failed" | Network/server issue | Check URL, firewall, server logs |
| OLED blank | I2C issue | Check SDA/SCL connections |
Remote Node Issues
| Problem | Cause | Solution |
|---|---|---|
| "LoRa init failed" | SPI issue | Check pin definitions match board |
| No ACK received | Out of range | Move closer, increase SF |
| Short battery life | Wake too often | Increase REPORT_INTERVAL_SEC |
| Sensor read fails | Bad wiring | Check connections, I2C address |
LoRa Range Issues
| Symptom | Solution |
|---|---|
| RSSI < -100 dBm | Move nodes closer or add gain antenna |
| Many CRC errors | Reduce spreading factor (SF) |
| ACK timeouts | Increase ACK_TIMEOUT_MS |
Production Deployment Checklist
- Gateway powered via stable 5V supply (not USB from laptop)
- Tank sensors fully submerged in paint bath
- Gateway enclosure sealed against moisture/fumes
- WiFi signal strength verified at gateway location
- API endpoint accessible from gateway network
- Remote nodes battery charged and secured
- Remote node enclosures sealed
- All sensors reading within expected range
- Alert thresholds configured by lab manager
- WebSocket updates verified in browser
- Backup sensors agree within 5°F