<
From version < 16.7 >
edited by Xiaoling
on 2022/07/22 11:46
To version < 16.1 >
edited by Xiaoling
on 2022/07/22 11:33
>
Change comment: There is no comment for this version

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20 20  1. LoRaWAN Gateway model: [[LPS8>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/148-lps8.html]], [[LG308>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/140-lg308.html]], [[DLOS8>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/160-dlos8.html]] ,[[LIG16>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/171-lig16.html]]
21 21  1. Firmware version for below instruction:**[[(% style="color:purple" %)Since LG02_LG08~~-~~-build-v5.4.1593400722-20200629-1120>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/LPS8/Firmware/Release/]](%%)**
22 22  
23 +
24 +
25 +
23 23  = 2. How it works =
24 24  
25 25  
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135 135  === 2.2.2 How to Decode My End Node ===
136 136  
137 137  
138 -**1.** Configure the ABP keys for your end node in the gateway. enable ABP decode in Web UI
141 +1/ Configure the ABP keys for your end node in the gateway. enable ABP decode in Web UI
139 139  
140 -**2. **Don't choose MQTT service, use LoRaWAN.
143 +2/ Don't choose MQTT service, use LoRaWAN.
141 141  
142 -**3.** When your end node send a message to the gateway, there will be a file store in /var/iot/channels. full path should be /var/iot/channels/END_NODE_DEV_ADDR
145 +3/ When your end node send a message to the gateway, there will be a file store in /var/iot/channels. full path should be /var/iot/channels/END_NODE_DEV_ADDR
143 143  
144 -**4.** Use the /etc/lora/decoder/Dragino_LHT65 as template to decode your payload. This script is written in Lua language. User can manually call this script when you see the data file in /var/iot/channels by running:
147 +4/ Use the /etc/lora/decoder/Dragino_LHT65 as template to decode your payload. This script is written in Lua language. User can manually call this script when you see the data file in /var/iot/channels by running:
145 145  
146 146  {{{/etc/lora/decoder/Dragino_LHT65 END_NODE_DEV_ADDR
147 147  }}}
148 148  
149 -**5.** What you see as output is the MQTT data device will upload, user's end node has different payload compare with LHT65, most properly this file will report with error. User need to modify to match the actual payload.
152 +5/ What you see as output is the MQTT data device will upload, user's end node has different payload compare with LHT65, most properly this file will report with error. User need to modify to match the actual payload. Some notice:
150 150  
151 -
152 -(% style="color:red" %)
153 -**Some notice:**
154 -
155 155  * RSSI and SNR are added when gateway receive the packet, so there is always this field.
156 156  * If you rename the file, please make it executable.
157 157  * See this link for lua.bit module: [[http:~~/~~/luaforge.net/projects/bit/>>url:http://luaforge.net/projects/bit/]]
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160 160  * User can use other language ,not limited to Lua, just make sure the return is what you want to send.
161 161  
162 162  
162 +
163 163  == 2.2 Downstream ==
164 164  
165 165  
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199 199  * **New version:** echo 018193F4,imme,hex,0101,20,1,SF12,923300000,2 > /var/iot/push/test
200 200  
201 201  
202 -
203 203  (% style="color:#037691" %)**Downstream Frequency**
204 204  
205 205  The LG308 will use the RX2 window info to send the downstream payload, use the default LoRaWAN settings, as below:
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214 214  * RU864: 869.1Mhz, SF12 BW125
215 215  
216 216  
217 -
218 218  (% style="color:#037691" %)**Examples:**
219 219  
220 220  (% class="box" %)
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221 221  (((
222 222  we can use echo command to create files in LG308 for downstream.
223 223  root@dragino-1d25dc:~~# echo 2602111D,time,hex,12345678 > /var/iot/push/test
222 +)))
224 224  
225 -
224 +(% class="box" %)
225 +(((
226 226  **1)** From logread -f of gateway, we can see it has been added as pedning.
227 227  lora_pkt_fwd[4286]: INFO~~ [DNLK]Looking file : test
228 228  lora_pkt_fwd[4286]: INFO~~ [DNLK]devaddr:2602111D, txmode:time, pdfm:hex, size:4, payload1:4Vx,payload_hex:77C1BB90
229 229  lora_pkt_fwd[4286]: INFO~~ [DNLK] DNLINK PENDING!(1 elems).
230 +)))
230 230  
231 -
232 +(% class="box" %)
233 +(((
232 232  **2)** When there is an upstrea from end node, this downstream will be sent and shows:
233 233  lora_pkt_fwd[4286]: INFO: tx_start_delay=1497 (1497.000000) - (1497, bw_delay=0.000000, notch_delay=0.000000)
234 234  lora_pkt_fwd[4286]: [LGWSEND]lgw_send done: count_us=3537314420, freq=923300000, size=17
237 +)))
235 235  
236 -
239 +(% class="box" %)
240 +(((
237 237  **3)** and the end node will got:
238 238  [5764825]~*~*~*~** UpLinkCounter= 98 ~*~*~*~**
239 239  [5764827]TX on freq 905300000 Hz at DR 0
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246 246  Rssi= -41
247 247  Receive data
248 248  (% style="color:#037691" %)**2:12345678**  (%%) ~-~-> Hex
253 +)))
249 249  
250 -
255 +(% class="box" %)
256 +(((
251 251  **4) **If we use the command "echo 2602111D,time,txt,12345678 > /var/iot/push/test" for downstream, the end node will got:
252 252  [5955877]~*~*~*~** UpLinkCounter= 102 ~*~*~*~**
253 253  [5955879]TX on freq 904100000 Hz at DR 0
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306 306  #  whether the Device 2 has been changed.//
307 307  )))
308 308  
309 -
310 310  **~1. Input keys**
311 311  
312 312  [[image:image-20220527162450-3.png]]
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316 316  
317 317  **2. Make sure the LPS8 and LT use the same frequency bands, choose EU868 in this test.**
318 318  
319 -
320 320  **3. Choose Built-in server**
321 321  
322 322  [[image:image-20220527162518-4.png]]
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