Changes for page Connect Devices to ThingsEye
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... ... @@ -7,7 +7,6 @@ 7 7 8 8 = 1. Overview = 9 9 10 -This instructions will show you how to connect a device that has been registered to the server to the Thingseye platform. 11 11 12 12 13 13 = 2. UDP Procotol ~-~- Directly Connection = ... ... @@ -15,83 +15,86 @@ 15 15 == 2.1 UDP Interface == 16 16 17 17 * Server Address: server1.thingseye.io 18 -* Port: 1156 017 +* Port: 11562 19 19 20 20 The data sent to above UDP interface will not go directly to client's database. 21 21 22 22 Please contact ThingsEye team for detail how to forward data to client. 23 23 24 -**Note:Currently udp connections require port forwarding, please contact the ThingsEye team to inform them of your device's IMEI before connecting.** 25 25 24 +== 2.2 Test UDP Interface via Socket Tool == 26 26 27 - ----26 +Download the UDP Test Tool from: [[https:~~/~~/sourceforge.net/projects/sockettest/ >>https://sourceforge.net/projects/sockettest/]]. Run this tool, and input the server address and UDP port as below and click send. 28 28 29 - == 2.2 Test with Dragino NB device ==28 +[[image:1728566363151-470.png]] 30 30 31 - ===2.2.1ConfigureNB-IoTEndNode===30 +In server side, Tenant Administrator can check this in Tenant UDP Server location. 32 32 32 +[[image:1728362834430-749.png||height="510" width="1667"]] 33 + 34 +Click and see the debug info as below: 35 + 36 +[[image:1728363020699-203.png]] 37 + 38 +We can see the message arrives, but it shows ERROR because the message doesn't follow with the UDP Server format. 39 + 40 + 41 +== 2.3 Test with Dragino NB device == 42 + 43 +=== 2.3.1 Configure NB-IoT End Node === 44 + 33 33 Device here is **[[S31-NB>>https://www.dragino.com/products/temperature-humidity-sensor/item/288-s31-nb-s31b-nb.html]]** : and have been configure below 34 34 35 -* Set to use ThingsEye UDP server: **AT+SERVADDR=server1.thingseye.io,1156 0**47 +* Set to use ThingsEye UDP server: **AT+SERVADDR=server1.thingseye.io,11562** 36 36 * Use UDP Uplink & Json protocol:** AT+PRO=2,5** 37 37 * Equip with a NB-IoT SIM Card to access to NB-IoT Network. 38 38 39 39 The S31-NB's cellular module has the IMEI: **863663062789483** 40 40 41 -=== 2.2.2 Check Uplink Data === 42 42 43 - Turnondebugmod54 +=== 2.3.2 Check Uplink Data === 44 44 45 -[[image:1758762334133-608.png||height="494" width="1003"]] 46 - 47 ----- 48 - 49 49 Re-activate the S31-NB, and we can see it in the debug window: 50 50 51 -[[image:17 58762371290-726.png||height="528" width="1005"]]58 +[[image:1728378218744-800.png||height="431" width="1003"]] 52 52 53 -[[image:1728378218744-800.png||_mstalt="295269" height="431" width="1003"]] 54 54 55 - 56 ----- 57 - 58 58 === 2.3.3 Auto-Create Device === 59 59 60 60 The default **Tenant UDP Server** has already been configured to decode the Dragino -NB / -CB NB-IoT node. So once each end node sends a data to server. Tenant will auto create the device in the server. 61 61 62 -[[image:1728378968101-683.png|| _mstalt="297154"height="210" width="1005"]]65 +[[image:1728378968101-683.png||height="273" width="1307"]] 63 63 64 -[[image:1728379050044-764.png|| _mstalt="295282"height="326" width="1009"]]67 +[[image:1728379050044-764.png||height="424" width="1312"]] 65 65 66 66 67 67 **So we have this device in the Tenant Device List. The next step will be how to use these value to make a nice dashboard for user's application.** 68 68 72 + 73 + 69 69 = 3. Connect to The Things Stack = 70 70 71 71 == 3.1 Network Structure == 72 72 73 -The network diagram below illustrates the connection between the devices and The Things Stack, as well as how the data can be integrated with the ThingsEye IoT platform. 74 74 75 -[[image:1732679444539-853.jpg||_mstalt="296933" height="388" width="1452"]] 76 - 77 77 == 3.2 Creat Integration for The Things Stack. == 78 78 79 79 (% class="lead" %) 80 80 Add Integration 81 81 82 -[[image:1728535775119-971.png|| _mstalt="297661"height="456" width="1087"]]84 +[[image:1728535775119-971.png||height="456" width="1087"]] 83 83 84 84 85 85 (% class="lead" %) 86 86 Choose Connection Type 87 87 88 -[[image:1728535857345-950.png ||_mstalt="297154"]]90 +[[image:1728535857345-950.png]] 89 89 90 90 91 91 (% class="lead" %) 92 92 Input Uplink Data Converter Code 93 93 94 -[[image:1728535941851-388.png|| _mstalt="297856"height="466" width="398"]]96 +[[image:1728535941851-388.png||height="466" width="398"]] 95 95 96 96 Demo JavaScript Code: [[https:~~/~~/raw.githubusercontent.com/ThingsEye-io/te-platform/refs/heads/main/Data%20Converters/The_Things_Network_MQTT_Uplink_Converter.js >>https://raw.githubusercontent.com/ThingsEye-io/te-platform/refs/heads/main/Data%20Converters/The_Things_Network_MQTT_Uplink_Converter.js]] 97 97 ... ... @@ -99,7 +99,7 @@ 99 99 (% class="lead" %) 100 100 Input Downlink Converter 101 101 102 -[[image:1728536142721-488.png|| _mstalt="296127"height="470" width="407"]]104 +[[image:1728536142721-488.png||height="470" width="407"]] 103 103 104 104 Example Javascript Code as below: [[https:~~/~~/raw.githubusercontent.com/ThingsEye-io/te-platform/refs/heads/main/Data%20Converters/The_Things_Network_MQTT_Downlink_Converter.js>>https://raw.githubusercontent.com/ThingsEye-io/te-platform/refs/heads/main/Data%20Converters/The_Things_Network_MQTT_Downlink_Converter.js]] 105 105 ... ... @@ -107,7 +107,7 @@ 107 107 (% class="lead" %) 108 108 Set up Connection to The Things Network application 109 109 110 -[[image:1728536305503-380.png|| _mstalt="293254"height="510" width="1206"]]112 +[[image:1728536305503-380.png||height="510" width="1206"]] 111 111 112 112 113 113 ... ... @@ -114,11 +114,11 @@ 114 114 (% class="lead" %) 115 115 Test Connection & Add iIntegration 116 116 117 -[[image:1728536374214-962.png ||_mstalt="295893"]]119 +[[image:1728536374214-962.png]] 118 118 119 119 After add , we can see the integration here: 120 120 121 -[[image:1728536420275-153.png|| _mstalt="293748"height="208" width="1404"]]123 +[[image:1728536420275-153.png||height="208" width="1404"]] 122 122 123 123 124 124 == 3.3 Test Uplink == ... ... @@ -125,211 +125,7 @@ 125 125 126 126 We can use Simulate Uplink to simulate an uplink in the things stack. Then we should be able to see the message in ThingsEye 127 127 128 -[[image:1728536524638-768.png|| _mstalt="298870"height="493" width="1071"]]130 +[[image:1728536524638-768.png||height="493" width="1071"]] 129 129 130 130 131 -[[image:1728536541040-814.png||_mstalt="293215"]] 132 - 133 -= 4.Connect chirpstack to Thingseye by way of MQTT = 134 - 135 -* **How to connect chirpstack to Thingseye by way of MQTT? The following tutorial will show you** 136 - 137 -== 4.1 Network Structure == 138 - 139 -The network diagram below illustrates the connection between the devices andchirpstack, as well as how the data can be integrated with the ThingsEye IoT platform. 140 - 141 -[[image:1732679647697-982.jpg||_mstalt="299884" height="399" width="1492"]] 142 - 143 -== 4.2 Thingseye adds MQTT integration == 144 - 145 -Go to the Integrations page in the Integrations center section. Click the plus button to start adding a new integration. Select the type "MQTT" integration and click "Next"; 146 - 147 -[[image:1758762634175-353.png]] 148 - 149 -== 4.3 Add an uplink and downlink data converter == 150 - 151 -In the function decoder field, specify the script to parse and transform the data. 152 - 153 -[[image:图片2.png||_mstalt="5131503"]] 154 - 155 -* **Uplink——JavaScript:** 156 - 157 -var data = decodeToJson(payload); 158 - 159 -var deviceName = data.deviceInfo.deviceName; 160 - 161 -var deviceType = data.applicationName; 162 - 163 -var devEui = data.deviceInfo.devEui 164 - 165 -var label = data.deviceInfo.devEui 166 - 167 -var model = {}; 168 - 169 -var data2 = data.object; 170 - 171 -var flg = data.fPort 172 - 173 -for (var key in data2) { 174 - 175 - ~/~/ 将属性名存入新对象中 176 - 177 - model[key] = data2[key]; 178 - 179 -} 180 - 181 -~/~/var obj = {"devid":deviceName} 182 - 183 -var result = { 184 - 185 - deviceName: deviceName, 186 - 187 - deviceType: deviceType, 188 - 189 - telemetry: model, 190 - 191 - groupName: "Case Study", 192 - 193 - ~/~/label:label, 194 - 195 - attributes:{"devEui":devEui, 196 - 197 - ~/~/"timevalue":"test", 198 - 199 - "inactivityTimeout":1260000 200 - 201 - ~/~/ "High_humidity_alarm":"not set", 202 - 203 - ~/~/ "High_temperature_alarm":"not set", 204 - 205 - ~/~/ "Low_humidity_alarm":"not set", 206 - 207 - ~/~/ "Low_temperature_alarm":"not set", 208 - 209 - ~/~/ "Low_voltage_alarm":"not set" 210 - 211 - ~/~/"customerName": "Civionic Engineering & Consulting (2014) Inc." 212 - 213 - } 214 - 215 -}; 216 - 217 -function decodeToString(payload) { 218 - 219 - return String.fromCharCode.apply(String, payload); 220 - 221 -} 222 - 223 -function decodeToJson(payload) { 224 - 225 - var str = decodeToString(payload); 226 - 227 - var data = JSON.parse(str); 228 - 229 - return data; 230 - 231 -} 232 - 233 -return result; 234 - 235 -[[image:图片3.png||_mstalt="5131620"]] 236 - 237 -* **Dowblink——JavaScript:** 238 - 239 -~/~/ Encode downlink data from incoming Rule Engine message 240 - 241 -~/~/ msg - JSON message payload downlink message json 242 - 243 -~/~/ msgType - type of message, for ex. 'ATTRIBUTES_UPDATED', 'POST_TELEMETRY_REQUEST', etc. 244 - 245 -~/~/ metadata - list of key-value pairs with additional data about the message 246 - 247 -~/~/ integrationMetadata - list of key-value pairs with additional data defined in Integration executing this converter 248 - 249 -~/~/ /~*~* Encoder ~*~*/ 250 - 251 -~/~/var data = {"value":99}; 252 - 253 -~/~/ ~/~/ Process data from incoming message and metadata 254 - 255 -~/~/ data.tempFreq = msg.temperatureUploadFrequency; 256 - 257 -~/~/ data.humFreq = msg.humidityUploadFrequency; 258 - 259 -~/~/ data.devSerialNumber = metadata['ss_serialNumber']; 260 - 261 -~/~/ ~/~/ Result object with encoded downlink payload 262 - 263 -var result = { 264 - 265 - ~/~/ downlink data content type: JSON, TEXT or BINARY (base64 format) 266 - 267 - contentType: "TEXT", 268 - 269 - ~/~/ downlink data 270 - 271 - data: msg.shared_value ,~/~/JSON.stringify(data), 272 - 273 - ~/~/ Optional metadata object presented in key/value format 274 - 275 - metadata: { 276 - 277 - topic: '/test/down/'+metadata.deviceName 278 - 279 - } 280 - 281 -}; 282 - 283 -return result; 284 - 285 -== 4.4 Configure the connection == 286 - 287 -Generate MQTT certificate integrated on chirpstack 288 - 289 -Chirpstack generates CA certificate, TLS certificate, and TLS key respectively 290 - 291 -They correspond to the CA certificate file, Certificate file, and Private key file on thingseye 292 - 293 -[[image:图片4.png||_mstalt="5131737"]] 294 - 295 -[[image:图片5.png||_mstalt="5131854" height="630" width="1269"]] 296 - 297 -* Copy the contents of the certificates and paste them into the linked file below, a total of three certificates are required 298 - 299 -**Integrated Certificate File demo Download Address:** 300 - 301 -[[https:~~/~~/github.com/ThingsEye-io/te-platform/tree/main/chirpstack>>https://github.com/ThingsEye-io/te-platform/tree/main/chirpstack]] 302 - 303 -Enter the server address Host: lns1.thingseye.io on the Connection configuration 304 - 305 -Port: 8883 306 - 307 -Credentials type: PEM 308 - 309 -Upload the certificate and key file 310 - 311 -[[image:图片6.png||_mstalt="5131971"]] 312 - 313 -[[image:图片7.png||_mstalt="5132088"]] 314 - 315 -The default for Topic is: 316 - 317 -application/**chirpstack application id**/device/+/event/up 318 - 319 -[[image:图片8.png||_mstalt="5132205"]] 320 - 321 - 322 -(% class="wikigeneratedid" %) 323 -[[image:屏幕截图 2024-11-25 095805.png||_mstalt="10831028" height="374" width="1272"]] 324 - 325 -== 4.5 Check the connection == 326 - 327 -[[image:图片9.png||_mstalt="5132322"]] 328 - 329 -[[image:图片10.png||_mstalt="5142449"]] 330 - 331 -= 5. Check Data Uplink Log = 332 - 333 -User can check the devices log in Intergration. 334 - 335 -[[image:1729562069134-315.png||_mstalt="294190" height="587" width="723"]] 133 +[[image:1728536541040-814.png]]
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