Changes for page Notes for TTN

Last modified by Mengting Qiu on 2024/08/20 17:29

From version 73.1
edited by Xiaoling
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To version 243.1
edited by Mengting Qiu
on 2024/08/20 17:29
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Summary

Details

Page properties
Author
... ... @@ -1,1 +1,1 @@
1 -XWiki.Xiaoling
1 +XWiki.ting
Content
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1 -**~ Contents:**
1 +**~ Table of Contents:**
2 2  
3 3  {{toc/}}
4 4  
5 5  
6 +
6 6  = 1. The Things Network-V3 =
7 7  
8 -== 1.1 Introduction ==
9 +== 1.1  Introduction ==
9 9  
10 -=== 1.1.1 What is The Things Network ===
11 +=== 1.1.1  What is The Things Network ===
11 11  
13 +
12 12  (((
13 13  The Things Network is a global collaborative Internet of Things ecosystem that creates networks, devices and solutions using LoRaWAN.
14 14  )))
... ... @@ -19,8 +19,9 @@
19 19  
20 20  )))
21 21  
22 -=== 1.1.2 Login or crate an account ===
24 +=== 1.1.2  Login or crate an account ===
23 23  
26 +
24 24  (((
25 25  [[Login or create an account>>url:https://console.cloud.thethings.network/]] to get started with The Things Network and start using The Things Stack Console.
26 26  )))
... ... @@ -31,102 +31,145 @@
31 31  
32 32  )))
33 33  
34 -=== 1.1.3 List the support products and Requirements ===
37 +=== 1.1.3  List the support products and Requirements ===
35 35  
39 +
36 36  LoRaWAN Gateway model: Existing Gateway
37 37  
38 38  
39 -= 2. Gateway Registration for Semtech UDP =
43 += 2.  Gateway Registration for Semtech UDP =
40 40  
41 -== 2.1 Primary LoRaWAN Server ==
42 42  
43 -[[image:image-20220526134633-2.png||height="616" width="1323"]]
46 +(% style="color:red" %)**Note: Steps 2 and 3 are different connection methods, the user only needs to choose one of them**
44 44  
48 +
49 +== 2.1  Primary LoRaWAN Server ==
50 +
51 +
52 +[[image:image-20220526134633-2.png||_mstalt="430196" height="540" width="1160"]]
53 +
45 45  Register Gateway
46 46  
47 47  
48 -[[image:image-20220526134826-4.png]]
57 +[[image:image-20231121092510-1.png||height="617" width="1157"]]
49 49  
59 +
50 50  Put Gateway ID
51 51  
52 52  
53 -[[image:image-20220526134759-3.png]]
63 +[[image:image-20231121092543-2.png||height="613" width="1159"]]
54 54  
65 +
55 55  Choose Frequency Band
56 56  
57 57  
58 -[[image:image-20220526134919-5.png]]
59 59  
70 +(% style="color:red" %)**Note:**
71 +
72 +DRAGINO - Frequency Plan list  ~-~-~-~-~-~-~-~-~-~-~-~-~-~--  The Thing Network Frequency Plan List
73 +
74 +AS923-1 (920-923)  (% style="display:none" %) (%%) ~-~-~-~-~-~-~-~-~-~-~-~-~-~--  Asia 920-923 Mhz
75 +
76 +AS923-1 (923-925)  ~-~-~-~-~-~-~-~-~-~-~-~-~-~--  Asia 915-928 Mhz (AS923 Group 1)with only default channels
77 +
78 +AS923-2 (921.4-922.8)  ~-~-~-~-~-~-~-~-~-~-~-~-~-~--  Asia 920-923 Mhz (AS923 Group 2)with only default channels
79 +
80 +AS923-3 (916.6-918.2)  ~-~-~-~-~-~-~-~-~-~-~-~-~-~--  Asia 915-921 Mhz (AS923 Group 3)with only default channels
81 +
82 +AS923-4 (917.3-918.7)  ~-~-~-~-~-~-~-~-~-~-~-~-~-~--  Asia 917-920 Mhz (AS923 Group 4)with only default channels
83 +
84 +
85 +[[image:image-20220726134642-1.png||_mstalt="430287" height="344" width="660"]][[image:image-20220726135827-3.png||_mstalt="432978" height="214" width="394"]][[image:image-20220726135759-2.png||_mstalt="433953" height="218" width="554"]]
86 +
87 +[[image:image-20231121092627-3.png||height="617" width="1174"]]
88 +
89 +
90 +[[image:image-20220526134919-5.png||_mstalt="433602"]]
91 +
60 60  Show Status
61 61  
62 62  
63 -== 2.2 Secondary LoRaWAN Server ==
95 +== 2.2  Secondary LoRaWAN Server ==
64 64  
65 -=== 2.2.1 Introduction ===
97 +=== 2.2.1  Introduction ===
66 66  
99 +
67 67  The Dragino gateway has supports the Secondary server settings.
68 68  
69 69  
70 -=== 2.2.2 Below list the support products and Requirements: ===
103 +=== 2.2.2  Below list the support products and Requirements: ===
71 71  
105 +
72 72  (((
73 -~1. LoRaWAN Gateway model: [[LIG16>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/171-lig16.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]] [[LPS8>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/148-lps8.html]]
107 +1.  LoRaWAN Gateway model:  [[LIG16>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/171-lig16.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]] [[LPS8>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/148-lps8.html]]
74 74  )))
75 75  
76 76  (((
77 -2. Firmware version since :[[lgw~~-~~-build-v5.4.1644658774>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/LIG16/Firmware/Release/]]
111 +2.  Firmware version since :  [[lgw~~-~~-build-v5.4.1644658774>>url:http://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/LIG16/Firmware/Release/]]
78 78  )))
79 79  
80 80  
81 -=== 2.2.3 Example ===
115 +=== 2.2.3  Example ===
82 82  
117 +
83 83  The following takes Helium as a Secondary LoRaWAN server as an example
84 84  
85 85  
86 -=== 2.2.4 Step 1: Download and Install the helium gateway-rs ===
121 +=== 2.2.4  Step 1: Download and Install the helium gateway-rs ===
87 87  
88 -The users is needing to download and install the helium gateway-rs then click the button of Save&Apply
89 89  
90 -[[image:image-20220526135049-6.png]]
124 +The users is needing to download and install the helium gateway-rs then click the button of (% style="color:blue" %)**Save&Apply.**
91 91  
126 +
127 +[[image:image-20220526135049-6.png||_mstalt="432432"]]
128 +
92 92  Download and Install gateway-rs
93 93  
94 94  
95 -=== 2.2.5 Step 2: Back to Semtech UDP page ===
132 +=== 2.2.5  Step 2: Back to Semtech UDP page ===
96 96  
97 -Back to the page of Semtech UDP check the secondary server settings and click the button of Save&Apply
98 98  
99 -​​​​[[image:image-20220526135125-7.png]]
135 +Back to the page of Semtech UDP check the secondary server settings and click the button of (% style="color:blue" %)**Save&Apply.**
100 100  
137 +
138 +​​​​[[image:image-20220526135125-7.png||_mstalt="431106"]]
139 +
101 101  Configuration of helium
102 102  
103 103  
104 -= 3. Gateway Registration for Basics Station =
143 += 3.  Gateway Registration for Basics Station =
105 105  
106 -== 3.1 Introduction ==
145 +== 3.1  Introduction ==
107 107  
147 +
108 108  (((
109 109  (((
110 -The LoRa Basics™ Station protocol simplifies management of large scale LoRaWAN networks. LoRa Basics™ Station is the preferred way of connecting Gateways to The Things Stack. [[The LoRa Basics Station doc>>url:https://www.thethingsindustries.com/docs/gateways/lora-basics-station/]]
150 +The LoRa Basics™ Station protocol simplifies the management of large-scale LoRaWAN networks. LoRa Basics™ Station is the preferred way of connecting Gateways to The Things Stack. [[The LoRa Basics Station doc>>url:https://www.thethingsindustries.com/docs/gateways/lora-basics-station/]]
151 +
152 +(% style="color:red" %)**Note: Steps 2 and 3 are different connection methods, the user only needs to choose one of them**
153 +
154 +
111 111  )))
112 112  )))
113 113  
114 114  (((
115 -**Below list the support products and Requirements:**
159 +(% style="color:blue" %)**Below list the support products and Requirements:**
116 116  )))
117 117  
118 118  (((
119 119  (((
120 - ~1. LoRaWAN Gateway model: [[LIG16>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/171-lig16.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]] [[LPS8>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/148-lps8.html]]
164 +1. LoRaWAN Gateway model:  [[LIG16>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/171-lig16.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]] [[LPS8>>url:http://www.dragino.com/products/lora-lorawan-gateway/item/148-lps8.html]]
121 121  )))
122 122  
123 123  (((
124 - 2. Firmware version since :[[lgw~~-~~-build-v5.4.1640315898>>url:https://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/LPS8/Firmware/Release/]]
168 + 2.  Firmware version since :  [[lgw~~-~~-build-v5.4.1640315898>>url:https://www.dragino.com/downloads/index.php?dir=LoRa_Gateway/LPS8/Firmware/Release/]]
169 +
170 +
125 125  )))
126 126  )))
127 127  
128 128  (((
129 -**What do you need to prepare**
175 +(% style="color:blue" %)**What do you need to prepare?**
130 130  )))
131 131  
132 132  (((
... ... @@ -137,113 +137,154 @@
137 137  )))
138 138  )))
139 139  
140 -== 3.2 Step 1. Add Gateway ==
186 +== 3.2  Step 1: Register Gateway ==
141 141  
142 -(((
143 -(((
144 -The example for **EU**
145 -)))
146 -)))
147 147  
148 148  (((
149 149  (((
150 -User can add your gateway into The Things Network V3 according to the previous step
191 +(% style="color:blue" %)**The example for**(%%)** the (% style="color:red" %)EU:(%%)**
151 151  )))
152 152  )))
153 153  
154 154  (((
155 155  (((
156 -Following picture is the successful added.
197 +Click the 'Register Gateway' button will get this page to register the gateway from The Thing Network Console gateway page.
198 +
199 +[[image:image-20230728144218-7.png||_mstalt="433290" height="128" width="836"]]
157 157  )))
158 158  )))
159 159  
160 -[[image:image-20220526135316-8.png]]
203 +[[image:image-20230728143449-2.png||_mstalt="433108"]]
161 161  
162 -Add Gateway
205 +Register Gateway
163 163  
164 164  
165 -== 3.3 Step 2. Create the API key ==
208 +== 3.3  Step 2: Create the API key ==
166 166  
167 -user need to create the CUPS API key and LNS API key.
168 168  
169 -[[image:image-20220526135349-9.png]]
211 +**API Key can be created manually**  ~-~-->  if users forgot to check the check box or switch to basic station mode from the Semtech UDP mode
170 170  
171 -Create CUPS API key
172 172  
173 173  
174 -[[image:image-20220526135428-10.png]]
175 175  
176 -Create LNS API key
216 +**or generate by TTN by checking the check box when registering the gateway** ~-~-->[[image:image-20230728143505-3.png||_mstalt="431132"]]
177 177  
178 -(% style="color:red" %)**Note : Please copy the API key.**
179 179  
180 -(% style="color:red" %)**​​​​​​​**
219 +=== **1.) Generated by TTH** ===
181 181  
182 -== 3.4 Step 3. Update the gateway setting ==
183 183  
222 +Users need to download these two key files and fill them into the gateway's TTN Basics Station configuration,
223 +
224 +[[image:image-20230728150521-2.png||height="664" width="1019"]]
225 +
226 +
227 +(% style="color:red" %)**Note:**(%%) The "**Authorization: Bearer** " field should not be entered in the TTN Basics Station configuration of the gateway
228 +
229 +[[image:image-20230728151807-3.png||height="423" width="1024"]]
230 +
231 +
232 +=== **2.) Manually create API KEY: ** ===
233 +
234 +
235 +==== CUPS API KEY ====
236 +
237 +[[image:image-20220526135349-9.png||_mstalt="434460"]]
238 +
239 +
240 +
241 +==== LNS API KEY ====
242 +
243 +[[image:image-20220526135428-10.png||_mstalt="453791"]]
244 +
245 +
246 +(% style="color:red" %)**Note: If your API is generated by yourself you have to update the key to the gateway setting.**
247 +
248 +
249 +==== Update the gateway setting ====
250 +
251 +
184 184  In the LoRa Basics Station LNS Authentication Key field, paste the API key you generated in the previous step.
185 185  
186 -[[image:image-20220526135528-11.png]]
187 187  
255 +[[image:image-20220526135528-11.png||_mstalt="454480"]]
256 +
188 188  paste the API key
189 189  
190 190  
191 -== 3.5 Step 4. Access the gateway GUI ==
260 +== 3.5  Step 4: Access the gateway GUI ==
192 192  
262 +
193 193  User need to update the API key and install the Certificate
194 194  
195 -[[image:image-20220526135601-12.png]]
196 196  
266 +[[image:image-20220526135601-12.png||_mstalt="452153"]]
267 +
197 197  Access the gateway GUI
198 198  
199 -== 3.6 Step 5. Configure Station ==
200 200  
271 +== 3.6  Step 5: Configure Station ==
272 +
273 +
201 201  User need to input Server URI, Server CUPS Key and LNS Key, as well as install CUPS certificate.
202 202  
203 -**just to clarify.**
204 204  
277 +(% style="color:blue" %)**just to clarify:**
278 +
205 205  (% class="box" %)
206 206  (((
207 - CUPS Server URI  ~-~-> Server Adress
208 - CUPS Authorization Key         ~-~-> Server CUPS API Key
209 - LNS Authorization Key  ~-~-> Server LNS API Key
210 - CUPS certificate  ~-~-> Server CA(user can use the button to install the certificate by default)
281 + CUPS Server URI  ~-~->  Server Address, Example: https:~/~/eu1.cloud.thethings.network:443
282 + CUPS Authorization Key         ~-~->  Server CUPS API Key
283 + LNS Authorization Key  ~-~->  Server LNS API Key
284 + CUPS certificate  ~-~->  Server CA(user can use the button to install the certificate by default)
211 211  )))
212 212  
213 -[[image:image-20220525094329-7.png]]
287 +[[image:image-20220526135654-13.png||_mstalt="455169"]]
214 214  
215 215  Congfigure Station
216 216  
217 -== 3.7 Start Station ==
218 218  
292 +== 3.7  Start Station ==
293 +
294 +
219 219  (((
220 220  When the user has finished the configuration,Please click Sace&Apply to start station to connect The Things Network.
297 +
298 +
221 221  )))
222 222  
223 -== 3.8 Siccessful Connection ==
301 +== 3.8  Successful Connection ==
224 224  
303 +
225 225  If user completes the above steps,which will see live date in the TTN.
226 226  
227 -[[image:image-20220525094409-8.png]]
228 228  
307 +[[image:image-20220526135734-14.png||_mstalt="455208"]]
308 +
229 229  Station live date
230 230  
231 -== 3.9 Trouble Shooting ==
232 232  
233 -User can check the station log in the logread/system log page.
312 +== 3.9  Trouble Shooting ==
234 234  
235 -[[image:image-20220525090622-14.png]]
236 236  
315 +User can check the station log in the** (% style="color:blue" %)LogRead ~-~-> System Log (%%)**page.
316 +
317 +
318 +[[image:image-20220526135845-15.png||_mstalt="456560"]]
319 +
237 237  Station Log
238 238  
239 -and recode the station log in the system/Recode log page.
240 240  
241 -[[image:image-20220525090705-15.png]]
242 242  
324 +and recode the station log in the** (% style="color:blue" %)LogRead  ~-~->  Recode Log(%%)** page.
325 +
326 +[[image:image-20220526135940-16.png||_mstalt="455559"]]
327 +
243 243  Recore Log
244 244  
245 -= 4. Configure node connection to TTNv3 =
246 246  
331 += 4.  Configure node connection to TTNv3 =
332 +
333 +
247 247  (((
248 248  (((
249 249  Following is an example for how to join the TTN v3 LoRaWAN Network.
... ... @@ -258,12 +258,15 @@
258 258  
259 259  (((
260 260  (((
261 -We take LES01 as an example.
348 +(% style="color:#037691" %)**We take LES01 as an example.**
349 +
350 +
262 262  )))
263 263  )))
264 264  
265 -== 4.1 Step1 ==
354 +== 4.1  Step 1 ==
266 266  
356 +
267 267  (((
268 268  (((
269 269  Create a device in TTN with the OTAA keys from LSE01.
... ... @@ -282,44 +282,67 @@
282 282  )))
283 283  )))
284 284  
285 -[[image:image-20220525090739-16.png]]
375 +[[image:image-20230221135445-1.png||_mstalt="428714" height="356" width="777"]]
286 286  
287 -[[image:image-20220525090833-17.png]]
377 +First create an application and fill in the custom information in it
288 288  
289 -== 4.2 Step2 ==
379 +[[image:image-20230221135520-2.png||_mstalt="427050" height="52" width="974"]]
290 290  
381 +[[image:image-20230221135810-3.png||_mstalt="428025" height="400" width="638"]]
382 +
383 +
384 +Add a node device to the application
385 +
386 +
387 +[[image:image-20220526140044-18.png||_mstalt="453648"]]
388 +
389 +
390 +== 4.2  Step 2 ==
391 +
392 +
291 291  (((
292 292  (((
293 293  There are all our nodes in the repository. Users can choose the corresponding brand, model, firmware version and frequency.The decoder and configuration information of the node are pre-configured.Users do not need to configure them.
396 +
397 +[[image:image-20230221164809-2.png||_mstalt="430937" height="525" width="617"]]
294 294  )))
295 295  )))
296 296  
297 -[[image:image-20220525090920-18.png]]
298 298  
299 -== 4.3 Step3 ==
402 +== 4.3  Step 3 ==
300 300  
404 +
301 301  Add APP EUI in the application:
302 302  
303 -[[image:image-20220525091022-19.png]]
304 304  
305 -== 4.4 Step4 ==
408 +[[image:image-20230221140131-4.png||_mstalt="425984" height="569" width="674"]]
306 306  
307 -Add APP KEY and DEV EUI:
308 308  
309 -[[image:image-20220525091128-20.png]]
411 +== 4.4  Step 4 ==
310 310  
311 -= 5. TTN V3 integrated into MQTT server =
312 312  
313 -== 5.1 Introduction ==
414 +**Add APP KEY and DEV EUI:**
314 314  
416 +
417 +[[image:image-20230221140448-6.png||_mstalt="430339" height="535" width="647"]]
418 +
419 +
420 += 5.  TTN V3 integrated into MQTT server =
421 +
422 +== 5.1  Introduction ==
423 +
424 +
315 315  (((
316 316  (((
317 317  The Application Server exposes an MQTT server to work with streaming events. In order to use the MQTT server you need to create a new API key, which will function as connection password. You can also use an existing API key, as long as it has the necessary rights granted.
428 +
429 +
318 318  )))
319 319  )))
320 320  
321 -== 5.2 Create device steps at MQTT ==
433 +== 5.2  Create device steps at MQTT ==
322 322  
435 +
323 323  (((
324 324  (((
325 325  The user creates a new API KEY after creating a device on TTN V3.
... ... @@ -335,16 +335,20 @@
335 335  (((
336 336  (((
337 337  Fill in Broker Address and Broker port.
451 +
452 +
338 338  )))
339 339  )))
340 340  
341 -[[image:image-20220525091251-22.png]]
456 +[[image:image-20220526140347-22.png||_mstalt="453700"]]
342 342  
343 343  Fill in the username and password into MQTT.
344 344  
345 345  
346 -[[image:image-20220525091333-23.png]]
347 347  
462 +[[image:image-20220526140420-23.png||_mstalt="451373"]]
463 +
464 +
348 348  The Application Server publishes uplink traffic on the following topics:
349 349  
350 350  (% class="box" %)
... ... @@ -361,13 +361,18 @@
361 361  )))
362 362  
363 363  (((
481 +
482 +
364 364  (((
365 -**Note**: Remember that the format of these topics for The Things Stack Open Source would contain {application id} instead of {application id}@{tenant id}.
484 +(% style="color:red" %)**Note**: **Remember that the format of these topics for The Things Stack Open Source would contain {application id} instead of {application id}@{tenant id}.**
485 +
486 +
366 366  )))
367 367  )))
368 368  
369 -[[image:image-20220525091430-24.png]]
490 +[[image:image-20220526140452-24.png||_mstalt="453401"]]
370 370  
492 +
371 371  (((
372 372  (((
373 373  While you could subscribe to all of these topics separately, for the simplicity of this tutorial we use # to subscribe to all topics, i.e. to receive all uplink traffic.
... ... @@ -374,7 +374,7 @@
374 374  )))
375 375  )))
376 376  
377 -[[image:image-20220525091458-25.png]]
499 +[[image:image-20220526140708-25.png||_mstalt="455117"]]
378 378  
379 379  (((
380 380  (((
... ... @@ -384,7 +384,11 @@
384 384  
385 385  (((
386 386  (((
387 -**Note**: Remember that the format of this topic for The Things Stack Open Source deployment would be v3/{application id}/devices/{device id}/down/push.
509 +
510 +
511 +(% style="color:red" %)**Note**: **Remember that the format of this topic for The Things Stack Open Source deployment would be v3/{application id}/devices/{device id}/down/push.**
512 +
513 +
388 388  )))
389 389  )))
390 390  
... ... @@ -394,20 +394,23 @@
394 394  )))
395 395  )))
396 396  
397 -[[image:image-20220525091618-27.png]]
523 +[[image:image-20220526140856-26.png||_mstalt="456755"]]
398 398  
399 399  (((
400 -To send an unconfirmed downlink message to the device dev1 in application app1 in tenant tenant1 with the hexadecimal payload BE EF on FPort 15 with normal priority, use the topic v3/app1@tenant1/devices/dev1/down/push with the following contents:
401 -)))
526 +To send an unconfirmed downlink message to the device dev1 in application app1 in tenant tenant1 with the hexadecimal payload BE EF on FPort 15 with normal priority, use the topic v3/app1@tenant1/devices/dev1/down/push with the following contents: **vu8=**, which is the Base64 format for Hex BE EF  . **[[HEX to Base64 online converter tool>>https://base64.guru/converter/encode/hex]]**.
402 402  
403 -(((
404 -**Note**: Use this handy tool to convert hexadecimal to base64.
528 +[[image:image-20240325082631-1.png||height="393" width="815"]]
529 +
530 +
531 +Below is the TTN output for this downlink command.
405 405  )))
406 406  
407 -[[image:image-20220525091702-28.png]]
534 +[[image:image-20220526140936-27.png||_mstalt="456794"]]
408 408  
409 -== 5.3 Send Downlink message ==
410 410  
537 +== 5.3  Send Downlink message ==
538 +
539 +
411 411  (((
412 412  How to configure downlink in TTN V3?
413 413  )))
... ... @@ -417,31 +417,40 @@
417 417  )))
418 418  
419 419  (((
420 -Downlink command:01 00 00 5A
549 +(% style="color:blue" %)**Downlink command: 01 00 00 5A**
550 +
551 +
421 421  )))
422 422  
423 -[[image:image-20220525091752-29.png]]
554 +[[image:image-20220526141021-28.png||_mstalt="452647"]]
424 424  
425 425  downlink
426 426  
558 +
559 +
427 427  After sending, you can view it in live data.
428 428  
429 -[[image:image-20220525091816-30.png]]
562 +[[image:image-20220526141052-29.png||_mstalt="454337"]]
430 430  
431 431  downlink
432 432  
566 +
567 +
433 433  (((
434 434  When downlink is successfully sent, the downlink information can be received on the serial port.
435 435  )))
436 436  
437 437  (((
438 -**Note**: If the downlink byte sent is longer, the number of bytes will be displayed.
573 +(% style="color:red" %)**Note**:** If the downlink byte sent is longer, the number of bytes will be displayed.**
574 +
575 +
439 439  )))
440 440  
441 -[[image:image-20220525091855-31.png]]
578 +[[image:image-20220526141116-30.png||_mstalt="451672"]]
442 442  
443 443  downlink
444 444  
582 +
445 445  (((
446 446  (((
447 447  If you want to get a successful reply to send downlink in TTN v3. You need to set the response level.
... ... @@ -450,13 +450,13 @@
450 450  
451 451  (((
452 452  (((
453 -If the equipment uses CLASS A. You can set **AT+RPL=2** or send the downlink command: **2102**
591 +If the equipment uses (% style="color:blue" %)**CLASS A**(%%). You can set (% style="color:red" %)**AT+RPL=2** (%%)or send the downlink command: (% style="color:red" %)**2102**
454 454  )))
455 455  )))
456 456  
457 457  (((
458 458  (((
459 -If the equipment uses CLASS C. You can set** AT+RPL=4** or send the downlink command: **2104**
597 +If the equipment uses (% style="color:blue" %)**CLASS C**(%%). You can set** (% style="color:red" %)AT+RPL=4(%%)** or send the downlink command: (% style="color:red" %)**2104**
460 460  )))
461 461  )))
462 462  
... ... @@ -463,59 +463,177 @@
463 463  (((
464 464  (((
465 465  When the device successfully receives the downlink, the server will receive a confirmation packet of 00.
604 +
605 +
466 466  )))
467 467  )))
468 468  
469 -[[image:image-20220525091925-32.png]]
609 +[[image:image-20220526141149-31.png||_mstalt="454038"]]
470 470  
471 471  downlink
472 472  
473 -= 6. Request Remote Support =
474 474  
614 += 6.  Route TTN data to Node-Red =
615 +
616 +
617 +Users can create an MQTT integration by following the steps described in "[[5.TTN V3 Integrated into MQTT Server>>http://wiki.dragino.com/xwiki/bin/view/Main/Notes%20for%20TTN/#H5.A0TTNV3integratedintoMQTTserver||_mstmutation="1"]]"
618 +
619 +
620 +== 6.1  Edit mqtt-broker node ==
621 +
622 +
623 +Users need to configure the TTN MQTT server address and port, Such as:
624 +
625 +(% class="box infomessage" %)
475 475  (((
627 +**Server :** eu1.cloud.thethings.network
628 +
629 +**Port  :** 1883
630 +)))
631 +
632 +[[image:image-20220829160224-187.jpeg||_mstalt="526292" height="569" width="1128"]]
633 +
634 +
635 +**Enter Username and Password**
636 +
637 +[[image:image-20220829164358-188.png||_mstalt="486174" height="570" width="1130"]]
638 +
639 +
640 +== 6.2  Debug ==
641 +
642 +
643 +Users can check logs by adding debug.
644 +
645 +[[image:image-20220829164652-189.png||_mstalt="485472" height="572" width="1134"]]
646 +
647 +
648 +== 6.3  Example: Use Local Server TTN and Node-Red in LPS8v2 ==
649 +
650 +
651 +LPS8v2 includes a local TTN Server and Node-Red. This example shows how to configure LHT65N to use with the local Node-Red server. This example assumes users already have:
652 +
653 +* LHT65N register on LPS8v2 Built-In TTN server already
654 +* The user is able to see the data on the built-in TTN server device page.
655 +
656 +Below are the steps to plot the sensor data on LPS8v2 Node-Red.
657 +
658 +
659 +=== 6.3.1 Link Node-Red to Local TTN ===
660 +
661 +
662 +Users can download the Node-Red decoder from this link and import it into the Node-Red platform:  **[[dragino-end-node-decoder/LHT65N.json (github.com)>>url:https://github.com/dragino/dragino-end-node-decoder/blob/main/Node-RED/LHT65N.json]]**
663 +
664 +For more information on importing Input Flow, check out this link: **[[Import Input Flow for Dragino Sensors>>http://wiki.dragino.com/xwiki/bin/view/Main/Node-RED/#H3.A0ImportInputFlowforDraginoSensors||style="background-color: rgb(255, 255, 255);"]]**
665 +
666 +
667 +After importing the Input Flow is complete, the user needs to edit the MQTT in the node
668 +
669 +
670 +(% style="color:blue" %)**1. Change the Topic**
671 +
672 +
673 +Topic modifies it to the following format:
674 +
675 +**v3/(% style="color:red" %)Application ID(%%)/devices/(% style="color:red" %)End device ID(%%)/up**
676 +
677 +[[image:image-20221018100743-1.png||_mstalt="427739" height="573" width="1120"]](% style="display:none" %)
678 +
679 +
680 +
681 +(% style="color:blue" %)**2. Enter the MQTT configuration information**
682 +
683 +
684 +[[image:image-20221018100947-2.png||_mstalt="430079" height="560" width="1123"]](% style="display:none" %)
685 +
686 +
687 +
688 +[[image:image-20221018101102-3.png||_mstalt="425256" height="580" width="1121"]]
689 +
690 +(% class="wikigeneratedid" %)
691 +(% style="color:blue" %)**Finally, click "Update" and Deploy**
692 +
693 +
694 +(% class="wikigeneratedid" %)
695 +"Connected" indicates that the Link Node-red to Local TTN is normal.
696 +
697 +(% class="wikigeneratedid" %)
698 +[[image:image-20220914140918-5.png||_mstalt="432523" height="602" width="1121"]]
699 +
700 +
701 +=== 6.3.2 Check result. ===
702 +
703 +
704 +Users can check logs by adding debug.
705 +
706 +[[image:image-20220914140841-4.png||_mstalt="430456" height="600" width="1119"]]
707 +
708 +
709 +In addition,Users can access the lps8v2 gateway's built-in as server of **Node-Red Chart UI **via the URL((% style="background-color:yellow" %)__**//http:~/~/<hostname>:1880/ui or http:~/~/<local-IPV4-address>:1880/ui//**__(%%)) in your browser.
710 +
711 +
712 +[[image:image-20220914142021-7.png||_mstalt="429000" height="439" width="1143"]](% style="display:none" %)
713 +
714 +
715 += 7.  Request Remote Support =
716 +
717 +
718 +(((
476 476  These pages are useful to check what is wrong on the Join process. Below shows the four steps that we can check the Join Process.
477 477  \\If problem not solve, and you need dragino remote support, please follow to this document: [[TTN Support instruction>>url:https://www.dragino.com/downloads/index.php?dir=&file=TTNv3_Support_Guide.pdf]](% style="color:red" %) **If user has checked below steps and still can't solve the problem, please send us (support @ dragino.com) the screenshots for each step to check. They include:**
478 478  )))
479 479  
480 480  * End node is connected to serial port to show the Join frequency and DR. (If possible)
724 +
481 481  * Gateway (from gateway UI) traffic to show the packet got from end node and receive from Server. (If possible)
726 +
482 482  * Gateway traffic (from server UI) to shows the data exchange between gateway and server. (Normally possible)
728 +
483 483  * End Node traffic (from server UI) to shows end node activity in server. (Normally possible)
730 +
484 484  * End Node Keys screen shot shows in end node and server. so we can check if the keys are correct. (In most case, we found keys doesn't match, especially APP EUI)
485 485  
486 -**~1. End Device Join Screen shot, we can check:**
733 +(% style="color:blue" %)**1. End Device Join Screen shot, we can check:**
487 487  
488 488  * If the device is sending join request to server?
736 +
489 489  * What frequency the device is sending?
490 490  
491 -[[image:image-20220525092012-33.png]]
739 +[[image:image-20220526141308-33.png||_mstalt="453778"]]
492 492  
493 493  Console Output from End device to see the transmit frequency
494 494  
495 -User can run **AT+CFG **command to print configuration information.
496 496  
497 -* Is the device in OTAA mode or ABP mode? **AT+NJM=1** (OTAA mode), **AT+NJM=0** (ABP mode)
744 +User can run (% style="color:blue" %)**AT+CFG **(%%)command to print configuration information.
498 498  
499 -[[image:image-20220525092043-34.png]]
746 +* Is the device in OTAA mode or ABP mode? (% style="color:red" %)**AT+NJM=1** (%%)(OTAA mode), (% style="color:red" %)**AT+NJM=0**(%%) (ABP mode)
500 500  
748 +[[image:image-20220526141612-36.png||_mstalt="454142"]]
749 +
750 +
501 501  Console Output from End device to see the transmit frequency
502 502  
503 -**2. Gateway packet traffic in gateway web or ssh. we can check:**
504 504  
754 +
755 +(% style="color:blue" %)**2. Gateway packet traffic in gateway web or ssh. we can check:**
756 +
505 505  * (((
506 506  If the gateway receive the Join request packet from sensor? (If this fail, check if the gateway and sensor works on the match frequency)
507 507  )))
508 508  * (((
509 509  If the gateway gets the Join Accept message from server and transmit it via LoRa?
762 +
763 +
764 +
510 510  )))
511 511  
512 -[[image:image-20220525092124-35.png]]
767 +[[image:image-20220526141739-37.png||_mstalt="457847"]]
513 513  
514 514  Console Output from Gateway to see packets between end node and server.
515 515  
516 516  
517 -**3. Gateway Traffic Page in LoRaWAN Server**
518 518  
773 +(% style="color:blue" %)**3. Gateway Traffic Page in LoRaWAN Server**
774 +
519 519  * (((
520 520  If the Join Request packet arrive the gateway traffic in server? If not, check the internet connection and gateway LoRaWAN server settings.
521 521  )))
... ... @@ -524,25 +524,32 @@
524 524  )))
525 525  * (((
526 526  If the Join Accept message are in correct frequency? If you set the server to use US915 band, and your end node and gateway is EU868, you will see the Join Accept message are in US915 band so no possible to Join success.
783 +
784 +
785 +
527 527  )))
528 528  
529 -[[image:image-20220525092157-36.png]]
788 +[[image:image-20220526141823-38.png||_mstalt="456183" height="501" width="1144"]]
530 530  
531 531  The Traffic for the End node in the server, use TTNv3 as example
532 532  
533 533  
534 -[[image:image-20220525092231-37.png]]
535 535  
794 +[[image:image-20220526141917-39.png||_mstalt="457899"]]
795 +
536 536  The Traffic for the End node in the server, use TTNv3 as example
537 537  
538 -**4. Data Page in LoRaWAN server**
539 539  
799 +
800 +(% style="color:blue" %)**4. Data Page in LoRaWAN server**
801 +
540 540  (((
541 541  (((
542 542  (((
543 543  If this data page shows the Join Request message from the end node? If not, most properly you have wrong settings in the keys. Keys in the server doesn't match the keys in End Node.
544 544  
545 -[[image:image-20220525092546-1.png]]
807 +
808 +[[image:image-20220526141956-40.png||_mstalt="455832"]]
546 546  )))
547 547  )))
548 548  )))
... ... @@ -549,6 +549,219 @@
549 549  
550 550  The data for the end device set in server
551 551  
552 -[[image:image-20220525092430-40.png]]
553 553  
816 +
817 +[[image:image-20220526142033-41.png||_mstalt="452036"]]
818 +
554 554  Check if OTAA Keys match the keys in device
820 +
821 +
822 += 8.  FAQ =
823 +
824 +== 8.1 How to import devices keys to TTN. ==
825 +
826 +
827 +**For TTS in LPS8v2**
828 +
829 +Open your application and click the button **Import end devices**
830 +
831 +[[image:image-20230423154012-1.png||_mstalt="426738" height="472" width="755"]]
832 +
833 +
834 +Select the **File format** and upload the file (e.g. or ).devices/jsondevices.csv
835 +
836 +You can specify **Fallback values** for Frequency plan and LoRaWAN and Regional Parameters version, in case the import file does not specify these settings for the device.
837 +
838 +You can also expand the **Advanced claiming and component settings** to set targeted components, and set the claim authentication code to be generated.
839 +
840 +Start the import by clicking the **Import end devices** button.
841 +
842 +[[image:image-20230423154040-2.png||_mstalt="427401" height="470" width="749"]]
843 +
844 +
845 +Wait for the end devices to be successfully imported. In case any device fails, you will see a relevant error message in the console.
846 +
847 +[[image:image-20230423154105-3.png||_mstalt="428467" height="478" width="763"]]
848 +
849 +
850 +If the import was successful, your devices are added to the list of end devices in your application.
851 +
852 +[[image:image-20230423154125-4.png||_mstalt="429481" height="480" width="766"]]
853 +
854 +Devices are now registered on The Things Stack.
855 +
856 +
857 +=== **JSON File Reference** ===
858 +
859 +
860 +The Things Stack allows you to import end devices from V2, ChirpStack and other LoRaWAN networks using a JSON file describing those devices.
861 +
862 +Using JSON file with device descriptions, you can migrate end devices with or without their existing sessions.
863 +
864 +Here is an example of an OTAA device description in the file:devices.json
865 +
866 +{{{{
867 + "ids": {
868 + "device_id": "my-device",
869 + "dev_eui": "0102030405060708",
870 + "join_eui": "0102030405060708"
871 + },
872 + "name": "My Device",
873 + "description": "Living room temperature sensor",
874 + "lorawan_version": "MAC_V1_0_2",
875 + "lorawan_phy_version": "PHY_V1_0_2_REV_B",
876 + "frequency_plan_id": "EU_863_870_TTN",
877 + "supports_join": true,
878 + "root_keys": {
879 + "app_key": {
880 + "key": "01020304050607080102030405060708"
881 + }
882 + }
883 +}
884 +}}}
885 +
886 +Multiple end devices can also be contained in a single file like so:devices.json
887 +
888 +{{{{
889 + /* device 1 */
890 +}
891 +{
892 + /* device 2 */
893 +}
894 +}}}
895 +
896 +The format above is considered by the Console and CLI as a JSON stream, processing one object at a time. For more details in how to use the file
897 +
898 +
899 +=== **CSV File Reference** ===
900 +
901 +
902 +The Things Stack has support for importing end devices from CSV (comma-separated values) files. This is useful when batches of end devices are managed in Microsoft Excel or any other spreadsheet or database that can export to CSV file.
903 +
904 +The CSV import in The Things Stack uses the following settings:
905 +
906 +* Semicolon () as field delimiter. This makes working with Microsoft Excel and other spreadsheets convenient;
907 +
908 +* Header row is required
909 +
910 +* On each row, the same number of fields as on the header line
911 +
912 +* Use quotes to use in a field value;
913 +
914 +* Use double quotes to escape quotes
915 +
916 +* Unknown header columns are permitted and ignored
917 +
918 +* Name and id cannot have capital letters and special characters
919 +
920 +* Example column lorawan_phy_version is not needed
921 +
922 +(% style="display:none" %)
923 +
924 +
925 +
926 +=== **Example** ===
927 +
928 +
929 +Minimal example:
930 +
931 +{{{dev_eui;join_eui;frequency_plan_id;lorawan_version;lorawan_phy_version;app_key
932 +1111111111111111;1111111111111111;EU_863_870_TTN;MAC_V1_0_4;RP002_V1_0_3;11111111111111111111111111111111
933 +2222222222222222;2222222222222222;EU_863_870_TTN;MAC_V1_0_4;RP002_V1_0_3;22222222222222222222222222222222
934 +3333333333333333;3333333333333333;EU_863_870_TTN;MAC_V1_0_4;RP002_V1_0_3;33333333333333333333333333333333
935 +}}}
936 +
937 +All columns for a LoRaWAN 1.0.4 device:
938 +
939 +{{{id;dev_eui;join_eui;name;frequency_plan_id;lorawan_version;lorawan_phy_version;brand_id;model_id;hardware_version;firmware_version;band_id;app_key
940 +test-one;1111111111111111;1111111111111111;Device 1;EU_863_870_TTN;MAC_V1_0_4;RP002_V1_0_3;the-things-industries;generic-node-sensor-edition;1.0.4;1.0;EU_863_870;11111111111111111111111111111111
941 +test-two;2222222222222222;2222222222222222;Device 2;EU_863_870_TTN;MAC_V1_0_4;RP002_V1_0_3;the-things-industries;generic-node-sensor-edition;1.0.4;1.0;EU_863_870;22222222222222222222222222222222
942 +test-three;3333333333333333;3333333333333333;Device 3;EU_863_870_TTN;MAC_V1_0_4;RP002_V1_0_3;the-things-industries;generic-node-sensor-edition;1.0.4;1.0;EU_863_870;33333333333333333333333333333333
943 +}}}
944 +
945 +
946 +(% style="display:none" %) (%%)
947 +
948 +=== **Excel Template** ===
949 +
950 +
951 +[[Download the Excel template>>url:https://www.thethingsindustries.com/docs/getting-started/migrating/tts-end-devices-csv-template.xlsx]]. You can remove all columns that are not required (see above).
952 +
953 +
954 +== 8.2 How to download and analyze End Device's log?(% style="display:none" %) (%%) ==
955 +
956 +
957 +~1. Get information about a single node
958 +
959 +Download this file in the node's live data interface
960 +
961 +[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20of%20Dragino%20LoRaWAN%20Packet%20Analyze%20Tool/WebHome/image-20230928163751-2.png?width=1278&height=506&rev=1.1||alt="image-20230928163751-2.png" height="506" width="1278"]]
962 +
963 +
964 +2. Get information about the entire Application
965 +
966 +Click the "See all activity" button on the main interface of the application
967 +
968 +[[image:image-20231019113039-1.png||height="678" width="1312"]]
969 +
970 +
971 +Download this file in application  live data interface
972 +
973 +[[image:image-20231019113212-4.png||height="567" width="1277"]]
974 +
975 +
976 +After the data collection is completed, you can send this file directly to our technical support personnel for analysis.
977 +
978 +
979 +You can also use the packet analysis tool developed by our company to check it yourself. Please refer to the following [[link>>http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20of%20Dragino%20LoRaWAN%20Packet%20Analyze%20Tool/#H3.ThethingsNetwork]] to use this tool.
980 +
981 +[[image:image-20240117170517-1.png]]
982 +
983 +
984 +
985 += 9. Trouble Shooting. =
986 +
987 +== 9.1 How to solve the problem of MIC Mismatch? ==
988 +
989 +
990 +Please refer to the link below:
991 +
992 +[[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/LoRaWAN%20Communication%20Debug/#H9.WhydoIseea22MICMismatch22errormessagefromtheserver3F>>url:http://wiki.dragino.com/xwiki/bin/view/Main/LoRaWAN%20Communication%20Debug/#H9.WhydoIseea22MICMismatch22errormessagefromtheserver3F]]
993 +
994 +
995 +== 9.2 Why node join succeeds but detailed data cannot be observed in the live data interface? ==
996 +
997 +
998 +The live data interface on the TTN platform is more orientated towards real-time observations, so if you don't click on the observations in time, you will not be able to see the previous details if you click on the interface again after a period of time.
999 +
1000 +TTN has no fixed official explanation for how long this data refreshes, but actual tests show it to be around 10 minutes.
1001 +
1002 +
1003 +Users can see the time of the last activity of a node inside one of the Applications:
1004 +
1005 +[[image:image-20240820171935-1.png||height="714" width="1358"]]
1006 +
1007 +For example:
1008 +
1009 +* After 6 minutes of the last activity, click on the **live data** interface to observe the data.
1010 +
1011 +[[image:image-20240820172327-2.png||height="439" width="1365"]]
1012 +
1013 +* The last activity of a node that has not been clicked for a long time was more than ten minutes ago, and you cannot observe the previous detailed data by clicking on the live data interface at this time.
1014 +
1015 +[[image:image-20240820172513-3.png]]
1016 +
1017 +In addition, if one stays in the LIVE DATA screen for a node, several previous details have been observed. If the node is inactive for a long time to come, and the interface is refreshed at this point, the details of the previously active data may be refreshed and no longer displayed.
1018 +
1019 +
1020 +If the user needs to view the data uplinked from a previous node, the data can be retrieved through the endpoint given by **Storage Integration**. The data can then be distinguished between different nodes based on **device_id**.
1021 +
1022 +[[image:image-20240820172909-4.png||height="524" width="954"]]
1023 +
1024 +
1025 +[[image:image-20240820172925-5.png||height="533" width="1318"]]
1026 +
1027 +
1028 +
1029 +
1030 +
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