Changes for page PG1302 -- LoRaWAN Concentrator User Manual
Last modified by Kilight Cao on 2024/06/22 10:43
Change comment:
There is no comment for this version
Summary
-
Page properties (3 modified, 0 added, 0 removed)
-
Attachments (0 modified, 3 added, 0 removed)
Details
- Page properties
-
- Title
-
... ... @@ -1,1 +1,1 @@ 1 -PG1302 1 +PG1302 - LoRaWAN Concentrator User Manual - Author
-
... ... @@ -1,1 +1,1 @@ 1 -XWiki. Xiaoling1 +XWiki.Edwin - Content
-
... ... @@ -1,70 +3,40 @@ 1 - 2 - 3 3 (% style="text-align:center" %) 4 -[[image: Main.User Manual for All Gatewaymodels.WebHome@pg1302.jpg]]2 +[[image:image-20220616085956-1.jpeg||height="609" width="609"]] 5 5 6 6 7 7 8 8 7 +**Table of Contents:** 9 9 10 - 11 - 12 -**PG1302 LoRaWAN Concentrator User Manual** 13 - 14 - 15 - 16 - 17 - 18 18 {{toc/}} 19 19 20 20 21 ----- 22 - 23 23 (% class="wikigeneratedid" id="H" %) 24 24 ((( 25 25 26 26 ))) 27 27 28 -= ==1. Introduction ===17 += 1. Introduction = 29 29 30 -== ==1.1 What is PG1302 LoRaWAN Concentrator? ====19 +== 1.1 What is PG1302 LoRaWAN Concentrator? == 31 31 32 -((( 33 -((( 34 -((( 35 -((( 36 -The PG1302 is a multi-channel high performance transmitter/receiver designed to simultaneously receive several LoRa packets using random spreading factors on random channels. Its goal is to enable robust connection between a central wireless data concentrator and a massive amount of wireless end-points spread over a very wide range of distances. 37 -))) 38 -))) 39 -))) 40 40 41 41 ((( 42 -((( 43 -((( 44 -The PG1302 is design to use with Raspberry Pi to build smart metering fixed networks and Internet of Things applications with up to 5000 nodes per km2 in moderately interfered environment. 23 +The PG1302 is a (% style="color:green" %)**multi-channel high-performance transmitter/receiver**(%%) designed to simultaneously receive several LoRa packets using random spreading factors on random channels. Its goal is to enable robust connection between a central wireless data concentrator and a massive amount of wireless end-points spread over a very wide range of distances. 45 45 ))) 46 -))) 47 -))) 48 -))) 49 49 50 50 ((( 51 -((( 52 -((( 53 -((( 54 -PG1302 is fully compatible with RPi3/4, users can use the pre-build OS from Dragino to set up and easy to use the module by Web UI. Or install the raw lorawan driver in the exist OS. 27 +The PG1302 is designed to use with Raspberry Pi to build smart metering fixed networks and Internet of Things applications with up to 5000 nodes per km2 in a moderately interfered environment. 55 55 ))) 56 -))) 57 -))) 58 -))) 59 59 60 60 ((( 61 -((( 62 - 31 +PG1302 is fully compatible with (% style="color:green" %)**RPi3/4 or Tinker Board**(%%), users can use the pre-build OS from Dragino to set up and easy to use the module by Web UI. Or install the raw LoRaWAN driver in the existing OS. 63 63 ))) 64 -))) 65 65 66 -==== 1.2 Features ==== 67 67 35 +== 1.2 Features == 36 + 37 + 68 68 * Base on Semtech SX1302 solution 69 69 * Support Raspberry Pi 3B/3B+/4 70 70 * Up to -140dBm sensitivity ... ... @@ -72,40 +72,44 @@ 72 72 * Mini-PCIe Interface 73 73 * Converter board to support Raspberry Pi 74 74 75 -==== 1.3 General Interfaces ==== 76 76 46 +== 1.3 General Interfaces for PG1302 == 47 + 48 + 77 77 * SPI interface for LoRa 78 78 * Power Input: 5v, 1A 79 79 * 1 x I-PEX for LoRa 52 +* Working Temperature: -40 ℃ ~~ 80℃ 80 80 81 -==== 1.4 Pin Mapping ==== 82 82 55 +== 1.4 Pin Mapping == 56 + 57 + 83 83 [[image:1651743282627-547.png||height="402" width="425"]] 84 84 85 85 86 86 87 -== ==1.5 LEDs ====62 +== 1.5 LEDs == 88 88 89 -((( 90 - TX: Blink when transmit a packet 91 -))) 92 92 93 93 ((( 94 - RX: Blink when receive a packet 66 +TX: Blink when transmit a packet 67 +RX: Blink when receive a packet 68 +Config: Always ON 95 95 ))) 96 96 97 -((( 98 - Config: Always ON 99 -))) 100 100 72 +== 1.6 Power Consumption == 101 101 102 -==== 1.6 Power Consumption ==== 103 103 104 - TBD75 +<300mA @ 3.3v. 105 105 77 +Detail Test Report see [[this link>>https://www.dropbox.com/sh/89virm4y0b02c7i/AAA-cgQEsSc8gNGFYAB0qZ_Za?dl=0]] 106 106 107 -==== 1.7 Applications ==== 108 108 80 +== 1.7 Applications == 81 + 82 + 109 109 * Smart Buildings & Home Automation 110 110 * Logistics and Supply Chain Management 111 111 * Smart Metering ... ... @@ -113,12 +113,16 @@ 113 113 * Smart Cities 114 114 * Smart Factory 115 115 116 -=== 2. Example: Set up as LoRaWAN gateway. === 117 117 118 -= ===2.1Systemstructure ====91 += 2. Example: Set up as LoRaWAN gateway = 119 119 93 +== 2.1 System structure == 94 + 95 + 120 120 ((( 121 121 This example is an example to show how to set up the PG1302 + RPi as a LoRaWAN gateway to use with [[TheThingsNetwork>>url:http://www.thethingsnetwork.org/]](TTN) LoRaWAN server. Set up method for other server are similar. 98 + 99 + 122 122 ))) 123 123 124 124 [[image:1651743698677-436.png||height="457" width="686"]] ... ... @@ -125,293 +125,332 @@ 125 125 126 126 127 127 128 -== ==2.2 Hardware Installation ====106 +== 2.2 Hardware Installation == 129 129 130 -**Important Notice: **Please power the RPI with 5V,3A cable. 131 131 132 - [[image:1651743803032-803.png]]109 +(% style="color:red" %)**Important Notice: Please power the RPI with 5V,3A cable.** 133 133 111 +[[image:image-20220621104746-1.png||height="381" width="451"]] 134 134 135 135 136 -=== 3. Install the software? === 137 137 138 - Therearetwo ways to install softwarein RPi4 to use PG1302.115 += 3. Install the software? = 139 139 140 -* Flash SD card with Dragino pre-build image which support Web UI. 141 -* Install lora packet forwarder in existing RPi OS. 142 142 143 - ===4.Flashwithpre-buildimage===118 +There are two ways to install the software in RPi4 to use PG1302. 144 144 145 -==== 4.1 Download the dragino image for RPI ==== 120 +* Flash SD card with Dragino pre-build image which supports Web UI. 121 +* Install Lora packet forwarder in existing RPi OS. 146 146 147 -((( 148 -Download PG1302_for_Rpi4_64_with_webui from 149 -))) 150 150 124 += 4. Flash with pre-build image = 125 + 126 +== 4.1 Download the dragino image for RPI == 127 + 128 + 151 151 ((( 152 -[[https:~~/~~/www.dropbox.com/sh/f6nbldh1qbspya5/AACgL6pDkwdBQO1BQqq_Nubwa?dl=0>>https://www.dropbox.com/sh/f6nbldh1qbspya5/AACgL6pDkwdBQO1BQqq_Nubwa?dl=0]] 130 +Download PG1302_for_Rpi4_64_with_webui from: [[https:~~/~~/www.dropbox.com/sh/f6nbldh1qbspya5/AACgL6pDkwdBQO1BQqq_Nubwa?dl=0>>https://www.dropbox.com/sh/f6nbldh1qbspya5/AACgL6pDkwdBQO1BQqq_Nubwa?dl=0]] 153 153 ))) 154 154 155 155 156 -== ==4.2 Flash the image to SD card ====134 +== 4.2 Flash the image to an SD card == 157 157 158 -Flash the image to SD card: 159 159 137 +Flash the image to the SD card: 138 + 160 160 [[image:1651744119133-233.png||height="373" width="621"]] 161 161 162 - Note: Download the flash tool following this link 163 163 164 - [[https:~~/~~/www.balena.io/etcher/>>https://www.balena.io/etcher/]] 142 +(% style="color:red" %)**Note: Download the flash tool following this link:**[[https:~~/~~/www.balena.io/etcher/>>https://www.balena.io/etcher/]] 165 165 166 166 167 -== ==4.3 Access the Linux console ====145 +== 4.3 Access the Linux console == 168 168 169 -Connect the RPI Ethernet port to your router, RPi will obtain an IP address from your router. In the router’s management portal, you should be able to find what IP address the router has assigned to the RPI. You can use this IP to connect the WEB UI or SSH access of RPI. Make sure your PC and the RPI is in the same network, then use a SSH tool (such as [[putty>>url:http://www.chiark.greenend.org.uk/~~sgtatham/putty/download.html]]) to access it. Below are screenshots 170 170 148 +((( 149 +Connect the RPI Ethernet port to your router, RPi will obtain an IP address from your router. In the router's management portal, you should be able to find what IP address the router has assigned to the RPI. You can use this IP to connect the WEB UI or SSH access of RPI. Make sure your PC and the RPI is in the same network, then use a SSH tool (such as [[putty>>url:http://www.chiark.greenend.org.uk/~~sgtatham/putty/download.html]]) to access it. Below are screenshots 150 +))) 151 + 152 + 171 171 [[image:1651744193675-591.png||height="450" width="466"]] 172 172 173 173 The account details for Web Login are: 174 174 175 -**~ User Name: root** 157 +((( 158 +**~ (% style="color:#0000ff" %)User Name: root(%%)** 159 +))) 176 176 177 -**~ Password: dragino** 161 +((( 162 +**~ (% style="color:#0000ff" %)Password: dragino(%%)** 163 +))) 178 178 165 +((( 166 + 167 +))) 179 179 180 -**~ Backup account** 169 +((( 170 +**~ (% style="color:#0000ff" %)Backup account(%%)** 171 +))) 181 181 182 -**~ Pi/dragino** 173 +((( 174 +**~ (% style="color:#0000ff" %)Pi/dragino(%%)** 183 183 184 -After log in, you will be in the Linux console and type command here. 176 + 177 +))) 185 185 179 +After logging in, you will be in the Linux console and type the command here. 180 + 186 186 [[image:1651744358515-107.png||height="366" width="581"]] 187 187 188 188 189 -== ==4.4 Access the WebUI of RPi4.====184 +== 4.4 Access the WebUI of RPi4 == 190 190 191 -=== ==4.4.1 Home page =====186 +=== 4.4.1 Home page === 192 192 193 -((( 194 -Open a browser on the PC and type the RPI ip address 195 -))) 196 196 197 197 ((( 198 - [[http:~~/~~/IP_ADDRESS** **>>url:http://192.168.1.xx/]] (If the IP is assigned by uplink router) 199 -))) 200 - 201 -((( 190 +Open a browser on the PC and type the RPI ip address **http:~/~/IP_ADDRESS ** (If the IP is assigned by the uplink router) 202 202 You will see the login interface of RPI as shown below. 203 -))) 204 - 205 -((( 206 206 The account details for Web Login are: 207 207 ))) 208 208 209 209 ((( 210 -**~ User Name: root** 211 -) ))196 +**~ (% style="color:#0000ff" %)User Name: root(%%)** 197 +(% style="color:#0000ff" %)** Password: dragino** 212 212 213 -((( 214 -**~ Password: dragino** 199 + 215 215 ))) 216 216 217 217 [[image:1651744457761-993.png||height="352" width="621"]] 218 218 219 219 220 -=== ==4.4.2 LoRa Page =====205 +=== 4.4.2 LoRa Page === 221 221 222 - (((207 + 223 223 This page shows the LoRa Radio Settings. There are a set of default frequency band according to LoRaWAN protocol, and user can customize the band* as well. 224 -))) 225 225 210 + 226 226 [[image:1651744554845-970.png||height="328" width="621"]] 227 227 213 + 228 228 Different PG1302 hardware version can support different frequency range: 229 229 230 -➢ 868: valid frequency: 863Mhz ~~ 870Mhz. for bands EU868, RU864, IN865 or KZ865. 216 +* (% style="color:red" %)**868: valid frequency: 863Mhz ~~ 870Mhz. for bands EU868, RU864, IN865 or KZ865.** 217 +* (% style="color:red" %)**915: valid frequency: 902Mhz ~~ 928Mhz. for bands US915, AU915, AS923 or KR920** 231 231 232 - ➢915:validfrequency:902Mhz~~928Mhz.forbandsUS915,AU915,AS923orKR920219 +After user choose the frequency plan, he can see the actually frequency in used by checking the (% style="color:#037691" %)**page LogRead ~-~-> LoRa Log** 233 233 234 - Afteruserchoosethe frequencyplan, hecanseethe actuallyfrequencyinusedy checking the221 +(% style="color:red" %)**Note *: [[See this instruction for how to customize frequency band>>doc:Main.How to customized LoRaWAN frequency band.WebHome]]** 235 235 236 -page LogRead ~-~-> LoRa Log 237 237 238 - Note*:See this instructionfor how to customizefrequency band224 +=== 4.4.3 LoRaWAN Page === 239 239 240 - [[http:~~/~~/wiki.dragino.com/index.php?title=Customized_Frequency_Band_for_Gateway>>url:http://wiki.dragino.com/index.php?title=Customized_Frequency_Band_for_Gateway]]226 +==== 4.4.3.1 Semtech UDP ==== 241 241 242 242 243 -===== 4.4.3 LoRaWAN Page ===== 244 - 245 -====== 4.4.3.1 Semtech UDP ====== 246 - 247 247 [[image:1651744767914-283.png||height="352" width="621"]] 248 248 249 -Note *: See this instruction for how to configure TTN. 250 250 251 -[[ https:~~/~~/wiki.dragino.com/index.php?title=Notes_for_TTN>>url:https://wiki.dragino.com/index.php?title=Notes_for_TTN||style="background-color: rgb(255, 255, 255);"]]232 +(% style="color:red" %)**Note *: [[See this instruction for how to configure TTN>>doc:Main.Notes for TTN.WebHome]].** 252 252 253 253 254 -==== ==4.4.3.2 Basic Station ======235 +==== 4.4.3.2 Basic Station ==== 255 255 237 + 256 256 [[image:1651744890629-683.png||height="380" width="621"]] 257 257 258 -Note *: See this instruction for how to configure TTN. 259 259 260 -[[ https:~~/~~/wiki.dragino.com/index.php?title=Notes_for_AWS-IoT-Core>>url:https://wiki.dragino.com/index.php?title=Notes_for_AWS-IoT-Core]]241 +(% style="color:red" %)**Note *: [[See this instruction for how to configure AWS-loT-Core>>doc:Main.AWS IoT Core for LoRaWAN.WebHome]].** 261 261 262 262 263 -=== ==4.4.4 LogRead =====244 +=== 4.4.4 LogRead === 264 264 265 -==== ==4.4.4.1 LoRa Log ======246 +==== 4.4.4.1 LoRa Log ==== 266 266 248 + 267 267 [[image:1651744955955-452.png||height="571" width="621"]] 268 268 251 + 269 269 Show the frequency for LoRa Radio and traffics. 270 270 271 271 272 -==== ==4.4.4.2 System Log ======255 +==== 4.4.4.2 System Log ==== 273 273 257 + 274 274 Show system log. 275 275 260 + 276 276 [[image:1651745003470-264.png||height="477" width="621"]] 277 277 278 278 279 -==== ==4.4.4.3 Record Log ======264 +==== 4.4.4.3 Record Log ==== 280 280 266 + 281 281 **Record the system log.** 282 282 269 + 283 283 [[image:1651745069814-662.png||height="144" width="621"]] 284 284 285 285 286 -= ==5. Install stand.===273 += 5. Install stand-alone LoRa Packet Forwarder = 287 287 288 -== ==5.1 OS requirement ====275 +== 5.1 OS requirement == 289 289 277 + 290 290 RPI in this example is RPI model 4B with fresh Raspbian OS install. 291 291 280 +(% class="box" %) 281 +((( 292 292 pi@raspberrypi:~~$ cat /etc/os-release 293 - 294 294 PRETTY_NAME="Raspbian GNU/Linux 8 (jessie)" 295 - 296 296 NAME="Raspbian GNU/Linux" 297 - 298 298 VERSION_ID="8" 299 - 300 300 VERSION="8 (jessie)" 301 - 302 302 ID=raspbian 303 - 304 304 ID_LIKE=debian 305 - 306 306 HOME_URL="http:~/~/www.raspbian.org/" 307 - 308 308 SUPPORT_URL="http:~/~/www.raspbian.org/RaspbianForums" 309 - 310 310 BUG_REPORT_URL="http:~/~/www.raspbian.org/RaspbianBugs" 311 311 293 + 294 +))) 312 312 313 -==== 5.2 Get Gateway ID in Raspberry and input this in TTN v3. ==== 314 314 315 - InRPI,run belowcommand togetaGatewayID297 +== 5.2 Get Gateway ID in Raspberry and input this in TTN v3 == 316 316 299 + 300 +In RPI, run the below command to get a Gateway ID 301 + 317 317 (% class="box infomessage" %) 318 318 ((( 319 - ifconfig eth0 304 +**~ ifconfig eth0** 320 320 ))) 321 321 322 322 [[image:1651745210205-512.png||height="130" width="621"]] 323 323 309 + 324 324 ((( 311 +((( 325 325 We got the ether (eth0 MAC) address is b8:27:eb:49:62:bc). Add ffff at the end and remove “:” to get the gateway ID: b827ebxxxxbcffff. Input this to TTN v3. Make sure to select legacy packet forwarder. 313 + 314 + 326 326 ))) 316 +))) 327 327 328 328 [[image:1651745267862-321.png||height="526" width="621"]] 329 329 330 330 [[image:1651745306744-481.png||height="478" width="621"]] 331 331 322 + 332 332 After set up, the status should show not connected as below: 333 333 334 334 [[image:1651745366987-458.png||height="363" width="621"]] 335 335 336 336 337 -=== ==5.2.1 Download and install LoRaWAN packet forwarder =====328 +=== 5.2.1 Download and install LoRaWAN packet forwarder === 338 338 330 + 339 339 Enable SPI and I2C first: 340 340 341 -a)SPI needs to be enabled on the Raspberry Pi 333 +a) SPI needs to be enabled on the Raspberry Pi 342 342 343 -Run sudo raspi-config to open the config window 335 +Run (% style="background-color:yellow" %) **sudo raspi-config**(%%) to open the config window 344 344 345 -[[image:1651745476754-240.png||height="23 5" width="631"]]337 +[[image:1651745476754-240.png||height="234" width="629"]] 346 346 339 + 347 347 [[image:image-20220505181135-1.png]] 348 348 349 -[[image:image-20220505181135-2.png]] 350 350 351 - In RPI , Fist:Enter rootaccount:343 +[[image:image-20220505181135-2.png||height="229" width="622"]] 352 352 353 -[[image:1651745583363-614.png]] 354 354 355 355 356 - andthenrun:347 +In RPI, Fist: Enter the root account: 357 357 358 -wget [[https:~~/~~/www.dragino.com/downloads/downloads/LoRa_Gateway/PG1302/software/auto_install.sh>>url:https://www.dragino.com/downloads/downloads/LoRa_Gateway/PG1302/software/auto_install.sh]] 349 +((( 350 +[[image:1651745583363-614.png||height="151" width="732"]] 359 359 360 -chmod +x ./auto_install.sh 352 + 353 +))) 361 361 362 -./auto_install.sh 363 363 364 - [[image:1651745611629-818.png]]356 +**Select the appropriate device version to download:** 365 365 366 -This will download the packet forwarder package from Dragino Server to RPI, and start install the package. 367 367 368 -You can get these output: 359 +((( 360 +**draginofwd-32bit** 369 369 370 - [[image:1651745657252-173.png||height="426"width="621"]]362 +wget https:~/~/www.dragino.com/downloads/downloads/LoRa_Gateway/PG1302/software/draginofwd-32bit.deb && dpkg -i draginofwd-32bit.deb 371 371 372 372 373 -===== 5.2.2 Config Gateway ID, Frequency Band and Server address ===== 365 +**dragino-64bit** 366 +))) 374 374 368 +wget https:~/~/www.dragino.com/downloads/downloads/LoRa_Gateway/PG1302/software/draginofwd-64bit.deb && dpkg -i draginofwd-64bit.deb 369 + 370 + 371 +**dragino-tiker-32bit** 372 + 373 +wget https:~/~/www.dragino.com/downloads/downloads/LoRa_Gateway/PG1302/software/draginofwd-tinker-32bit.deb && dpkg -i draginofwd-tinker-32bit.deb 374 + 375 + 375 375 ((( 376 -After installation, user can find the configuration file in** /etc/lora/ **Replace the gateway ID we got above to the **gateway_ID** in file **local_conf.json.** 377 + 378 + 379 +[[image:image-20220928181226-1.png||height="218" width="1100"]] 380 + 381 + 377 377 ))) 378 378 384 +=== 5.2.2 Config Gateway ID, Frequency Band and Server address === 385 + 386 + 379 379 ((( 380 - The defaultLoRaWAN serverpointso localhost, user need toput the correctserveraddressto the server_addressfield in file **local_conf.json**, like below.388 +After installation, user can find the configuration file in** (% style="color:#0000ff" %)/etc/lora/ (%%)**Replace the gateway ID we got above to the (% style="color:#0000ff" %)**gateway_ID** (%%)in file (% style="color:#0000ff" %)**local_conf.json.** 381 381 ))) 382 382 383 -[[image:1651745709709-887.png||height="820" width="621"]] 391 +((( 392 +The default LoRaWAN server points to localhost, user need to put the correct server address to the server_address field in file (% style="color:#0000ff" %)**local_conf.json**(%%), like below. 384 384 385 -User can find the TTN v3 server address from: 394 + 395 +))) 386 386 387 -[[ Server Addresses ~| The Things Stack for LoRaWAN (thethingsindustries.com)>>url:https://www.thethingsindustries.com/docs/getting-started/server-addresses/#deployments]]397 +[[image:1651745709709-887.png||height="820" width="621"]] 388 388 389 389 390 - And thedefaultfrequencyband isUS915in**global_conf.json** file.400 +User can find the TTN v3 server address from: [[Server Addresses ~| The Things Stack for LoRaWAN (thethingsindustries.com)>>url:https://www.thethingsindustries.com/docs/getting-started/server-addresses/#deployments]] 391 391 402 +And the default frequency band is US915 in (% style="color:#0000ff" %)**global_conf.json**(%%) file. 403 + 392 392 [[image:1651745838008-820.png||height="650" width="621"]] 393 393 394 -* If user want to change to other frequency bands, User can copy the file from **/etc/lora/cfg-302 **and put it into** /etc/lora/global_conf.json.** 395 395 396 - 1).Choseyourneed thenameof regionfrequency.407 +* If user want to change to other frequency bands, User can copy the file from(% style="color:#0000ff" %)** /etc/lora/cfg-302**(%%) ** **and put it into** (% style="color:#0000ff" %)/etc/lora/global_conf.json(%%).** 397 397 398 - [[image:1651745867516-322.png]]409 +**~ 1). Chose your need the name of region frequency.** 399 399 400 - 2). Use this command to copy it. 401 401 402 - cp /etc/lora/cfg-302/EU-global_conf.json/etc/lora/global_conf.json412 +[[image:1651745867516-322.png||height="83" width="740"]] 403 403 404 -[[image:1651745984006-868.png]] 405 405 406 -* If user wants to change to other LoRaWAN server, modify the **global_conf.json** file. 407 407 408 -(% class="wikigeneratedid" %) 416 +**~ 2). Use this command to copy it.** 417 + 418 +(% class="box infomessage" %) 409 409 ((( 410 - 420 +**cp /etc/lora/cfg-302/EU-global_conf.json /etc/lora/global_conf.json** 411 411 ))) 412 412 413 - =====5.2.3 Check result =====423 +[[image:1651745984006-868.png||height="87" width="745"]] 414 414 425 + 426 +* If user wants to change to other LoRaWAN server, modify the (% style="color:#0000ff" %)**global_conf.json**(%%) file. 427 + 428 + 429 +=== 5.2.3 Check result === 430 + 431 + 415 415 ((( 416 416 Run below command to restart the dragino_fwd: 417 417 ))) ... ... @@ -419,15 +419,16 @@ 419 419 ((( 420 420 (% class="box infomessage" %) 421 421 ((( 422 -sudo systemctl stop draginofwd 439 +**sudo systemctl stop draginofwd** 423 423 ))) 424 424 425 425 (% class="box infomessage" %) 426 426 ((( 427 -sudo systemctl start draginofwd 444 +**sudo systemctl start draginofwd** 428 428 ))) 429 429 ))) 430 430 448 + 431 431 ((( 432 432 debug check the ruing status of fwd: 433 433 ))) ... ... @@ -435,77 +435,107 @@ 435 435 ((( 436 436 (% class="box infomessage" %) 437 437 ((( 438 -sudo systemctl status draginofwd 456 +**sudo systemctl status draginofwd** 439 439 ))) 440 440 ))) 441 441 442 -[[image:1651746045057-414.png]] 460 +[[image:1651746045057-414.png||height="193" width="729"]] 443 443 462 + 463 + 444 444 The dragino_fwd will start with the new gateway ID and TTN v3 should show the connection ok: 445 445 466 + 446 446 [[image:1651746078253-168.png||height="372" width="621"]] 447 447 448 448 470 + 449 449 We can check dragino_fwd running states in RPi by running: 450 450 451 451 (% class="box infomessage" %) 452 452 ((( 453 - //sudo journalctl -u draginofwd -f//**475 +**~ sudo journalctl -u draginofwd -f** 454 454 ))) 455 455 456 -[[image:1651746111963-838.png]] 478 +[[image:1651746111963-838.png||height="184" width="730"]] 457 457 458 - If there are LoRaWAN nodes transmitting nearby, we can see the traffic in TTN v3 –> Gateway ~-~-> Live data 459 459 460 460 482 + If there are LoRaWAN nodes transmitting nearby, we can see the traffic in (% style="color:#037691" %)**TTN v3 –> Gateway ~-~-> Live data** 483 + 461 461 [[image:1651746139304-966.png||height="326" width="621"]] 462 462 463 463 464 -=== ==5.2.4 Commands to handle service =====487 +=== 5.2.4 Commands to handle service === 465 465 466 -* **Stop** dragino_fwd service: sudo systemctl stop draginofwd 467 -* **Disable** dragino_fwd auto run after boot: sudo systemctl disable draginofwd 468 -* **Start** dragino_fwd : sudo systemctl start draginofwd 469 -* **Auto run** dragino_fwd after boot: sudo systemctl enable draginofwd 470 -* **Show status** of dragino_fwd: sudo systemctl status draginofwd 471 471 472 -=== 6. Order Info === 490 +* (% style="color:#0000ff" %)**Stop** (%%)dragino_fwd service: sudo systemctl stop draginofwd 491 +* (% style="color:#0000ff" %)**Disable**(%%) dragino_fwd auto run after boot: sudo systemctl disable draginofwd 492 +* (% style="color:#0000ff" %)**Start** (%%)dragino_fwd : sudo systemctl start draginofwd 493 +* (% style="color:#0000ff" %)**Auto run**(%%) dragino_fwd after boot: sudo systemctl enable draginofwd 494 +* (% style="color:#0000ff" %)**Show status** (%%)of dragino_fwd: sudo systemctl status draginofwd 473 473 474 -Part Number: **PG1302-XX** Or Part Number: **PG1302-PI-XX **(Include RPi converter board for RPI 3/4) 475 475 476 - **~XX:**497 += 6. Order Info = 477 477 478 -* 868 (For Bands: EU868,IN865) 479 -* 915 (For Bands: US915,AU915,AS923,KR920) 480 -* 470 (For Band: CN470) 481 481 482 -= ==7.PackingInfo===500 +Part Number: (% style="color:#0000ff" %)**PG1302-XX** (%%) Or Part Number: (% style="color:#0000ff" %)**PG1302-PI-XX **(%%)(Include RPi converter board for RPI 3/4) 483 483 502 +**~ (% style="color:#0000ff" %)XX:(%%)** 503 + 504 +* (% style="color:red" %)**868** (%%)(For Bands: EU868,IN865) 505 +* (% style="color:red" %)**915** (%%)(For Bands: US915,AU915,AS923,KR920) 506 +* (% style="color:red" %)**470** (%%)(For Band: CN470) 507 + 508 + 509 += 7. Packing Info = 510 + 484 484 ((( 512 + 513 + 485 485 **PG1302 Package Includes**: 486 486 ))) 487 487 488 488 ((( 518 +((( 489 489 * PG1302 x 1 520 +* LoRa Antenna x 1 490 490 ))) 522 +))) 491 491 492 492 ((( 525 + 526 + 527 +**PG1302-PI Package Includes**: 528 +))) 529 + 530 +* PG1302 x 1 493 493 * LoRa Antenna x 1 532 +* RPi3/4 converter PCB 533 +* Screws to hole converter PCB on RPI. 534 + 535 +**PG1302-PI Dimension and weight: ** 536 + 537 +* Device Size: 18 x 8 x 4 cm 538 +* Weight: 150g 539 + 540 + 541 +((( 542 += 8. Support = 543 + 544 + 545 +((( 546 +If you are experiencing issues and can't solve, you can send mail to 494 494 ))) 495 495 496 496 ((( 497 - **PG1302-PI Package Includes**:550 +[[support@dragino.com>>mailto:support@dragino.com]] 498 498 ))) 499 499 500 -* ((( 501 -PG1302 x 1 553 +((( 554 +With your question as detail as possible. We will reply and help you in the shortest. 555 + 556 + 557 + 502 502 ))) 503 -* ((( 504 -LoRa Antenna x 1 505 505 ))) 506 -* ((( 507 -RPi3/4 converter PCB 508 -))) 509 -* ((( 510 -Screws to hole converter PCB on RPI. 511 -)))
- image-20220616085956-1.jpeg
-
- Author
-
... ... @@ -1,0 +1,1 @@ 1 +XWiki.Xiaoling - Size
-
... ... @@ -1,0 +1,1 @@ 1 +717.6 KB - Content
- image-20220621104746-1.png
-
- Author
-
... ... @@ -1,0 +1,1 @@ 1 +XWiki.Edwin - Size
-
... ... @@ -1,0 +1,1 @@ 1 +861.7 KB - Content
- image-20220928181226-1.png
-
- Author
-
... ... @@ -1,0 +1,1 @@ 1 +XWiki.Xiaoye - Size
-
... ... @@ -1,0 +1,1 @@ 1 +29.1 KB - Content