Changes for page LPS8v2 -- LoRaWAN Indoor Gateway User Manual
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- fallback ip.mp4
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Details
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... ... @@ -1,1 +1,1 @@ 1 -LPS8v2 --LoRaWAN Indoor Gateway User Manual1 +LPS8v2 LoRaWAN Indoor Gateway User Manual - Author
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. Xiaoye1 +XWiki.Kilight - Content
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... ... @@ -8,7 +8,7 @@ 8 8 9 9 ))) 10 10 11 -**Table of Contents :**11 +**Table of Contents:** 12 12 13 13 {{toc/}} 14 14 ... ... @@ -16,22 +16,23 @@ 16 16 17 17 18 18 19 -= 1. Introduction = 19 += **1. Introduction** = 20 20 21 -== 1.1 What is LPS8v2 == 22 22 22 +== **1.1 What is LPS8v2** == 23 23 24 + 24 24 ((( 25 25 ((( 26 -The LPS8v2 is an (% style="color: blue" %)**open-source LoRaWAN Gateway**(%%). It lets you bridge LoRa wireless network to an IP network via (% style="color:blue" %)**WiFi , Ethernet or Cellular Network**(%%) (via Optional 4G module). The LoRa wireless allows users to send data and reach extremely long ranges at low data rates.27 +The LPS8v2 is an (% style="color:green" %)**open-source LoRaWAN Gateway**(%%). It lets you bridge LoRa wireless network to an IP network via (% style="color:green" %)**WiFi , Ethernet or Cellular Network**(%%) (via Optional 4G module). The LoRa wireless allows users to send data and reach extremely long ranges at low data rates. 27 27 ))) 28 28 29 29 ((( 30 -The LPS8v2 is fully compatible with LoRaWAN protocol. It supports different kinds of LoRaWAN Network Connections such as: (% style="color: blue" %)**Semtech UDP Packet Forwarder, LoRaWAN Basic Station, ChirpStack MQTT Bridge**(%%), and so on. This makes LPS8V2 work with most LoRaWAN platforms in the market.31 +The LPS8v2 is fully compatible with LoRaWAN protocol. It supports different kinds of LoRaWAN Network Connections such as: (% style="color:green" %)**Semtech UDP Packet Forwarder, LoRaWAN Basic Station, ChirpStack MQTT Bridge**(%%), and so on. This makes LPS8V2 work with most LoRaWAN platforms in the market. 31 31 ))) 32 32 33 33 ((( 34 -LPS8v2 also includes a (% style="color: blue" %)**built-in LoRaWAN Server and IoT server**(%%), which provide the possibility for the system integrator to deploy the IoT service without cloud service or 3rd servers.35 +LPS8v2 also includes a (% style="color:green" %)**built-in LoRaWAN Server and IoT server**(%%), which provide the possibility for the system integrator to deploy the IoT service without cloud service or 3rd servers. 35 35 ))) 36 36 37 37 ((( ... ... @@ -39,13 +39,14 @@ 39 39 ))) 40 40 41 41 ((( 42 -LPS8v2 supports (% style="color: blue" %)**remote management**(%%). System Integrator can easy to remote monitor the gateway and maintain it.43 +LPS8v2 supports (% style="color:green" %)**remote management**(%%). System Integrator can easy to remote monitor the gateway and maintain it. 43 43 ))) 44 44 45 45 46 -== 1.2 Specifications == 47 47 48 +== **1.2 Specifications** == 48 48 50 + 49 49 (% style="color:#037691" %)**Hardware System:** 50 50 51 51 * CPU: Quad-core Cortex-A7 1.2Ghz ... ... @@ -57,16 +57,14 @@ 57 57 * 10M/100M RJ45 Ports x 1 58 58 * Multi-Channel LoRaWAN Wireless 59 59 * WiFi 802.11 b/g/n 60 -* Sensitivity: -140dBm 61 -* Max Output Power: 27dBm 62 62 63 63 (% style="color:#037691" %)**Operating Condition:** 64 64 65 -* Work Temperature: -20 ~~ 70°C66 -* Storage Temperature: -20 ~~ 70°C65 +* Work Temperature: -20 ~~ 65°C 66 +* Storage Temperature: -20 ~~ 65°C 67 67 * Power Input: 5V, 2A, DC 68 68 69 -== 1.3 Features == 69 +== **1.3 Features** == 70 70 71 71 72 72 * Open Source Debian system ... ... @@ -81,90 +81,72 @@ 81 81 ** Semtech UDP Packet Forwarder 82 82 ** LoRaWAN Basic Station 83 83 ** ChirpStack-Gateway-Bridge (MQTT) 84 -* Built-in (% style="color:#037691" %)** ChirpStack**(%%) local LoRaWAN server85 -* Built-in (% style="color:#037691" %)**Node-Red** (%%)local Application server 84 +* Built-in (% style="color:#037691" %)//**The Things Network**//(%%) local LoRaWAN server 85 +* Built-in (% style="color:#037691" %)//**Node-Red**// (%%)local Application server 86 86 87 -== 1.4 LEDIndicators==87 +== **1.4 Block Diagram** == 88 88 89 89 90 -LPS8-V2 has totally four LEDs, They are: 91 91 91 +== **1.5 LED Indicators** == 92 92 93 -(% style="color:blue" %)**➢ Power LED**(%%): This RED LED will be solid if the device is properly powered 94 94 95 - (%style="color:blue"%)**➢ ETHLED**(%%):is RGB LED will blink GREEN whenthe ETH port is connecting94 +LPS8-V2 has totally four LEDs, They are: 96 96 97 -(% style="color:blue" %)**➢ SYS LED**(%%): This RGB LED will show different colors in different states: 98 98 99 - ✓ **SOLID GREEN:** The device isalive with a LoRaWAN serverconnection.97 +(% style="color:blue" %)//**➢ Power LED**//(%%)//: This RED LED will be solid if the device is properly powered// 100 100 101 - ✓ **BLINKING GREEN:** a) Device hasinternetconnectionbut no LoRaWAN Connection.or b) Deviceisin booting stage, in thisstage,itwillBLINKINGGREENfor several secondsandthenwith BLINKING GREENtogether99 +(% style="color:blue" %)//**➢ ETH LED**//(%%)//: This RGB LED will blink GREEN when the ETH port is connecting// 102 102 103 - ✓**SOLIDRED:**Devicedoesn'thaveanInternetconnection.101 +(% style="color:blue" %)//**➢ SYS LED**//(%%)//: This RGB LED will show different colors in different states~:// 104 104 105 - (%style="color:blue"%)**➢ WIFILED**(%%):ThisLEDshowstheWIFIinterface connectionstatus.103 +// ✓ **SOLID GREEN:** The device is alive with a LoRaWAN server connection.// 106 106 105 +// ✓ **BLINKING GREEN:** a) Device has internet connection but no LoRaWAN Connection. or b) Device is in booting stage, in this stage, it will BLINKING GREEN for several seconds and then with BLINKING GREEN together// 107 107 108 - ==1.5Button Intruction==107 +// ✓** SOLID RED:** Device doesn't have an Internet connection.// 109 109 109 +(% style="color:blue" %)//**➢ WIFI LED**//(%%)//: This LED shows the WIFI interface connection status.// 110 110 111 -LPS8-V2 has a black toggle button, which is: 112 112 113 113 114 - (% style="color:blue"%)**//➢//Long press 4-5s : **(%%)the gateway will reload the Network andInitialize wifi configuration113 +== **1.6 Button Intruction** == 115 115 116 - // // **LED status: ** ETH LED will BLINKIND BULE Until the reload is finished. 117 117 116 +LPS8-V2 has a black toggle button, which is: 118 118 119 -(% style="color:blue" %)**➢ Long press more than 10s:**(%%)** **the gateway will restore the factory settings. 120 120 121 - LED status:** ETH LEDwillSOLID BULE Until therestoreisfinished.119 +(% style="color:blue" %)**//➢ //Long press 4-5s : **(%%)the gateway will reload the Network and Initialize wifi configuration 122 122 121 + // **LED status: ** ETH LED will BLINKIND BULE Until the reload is finished.// 123 123 124 -(% style="color:red" %)**Note: Restoring factory Settings does not erase data from the LPS8-V2 built-in server** 125 125 126 - Seethisink forstepsonhow to cleardata fromthebuilt-in server:[[Howto resetthebuilt-inserver>>http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20All%20Gateway%20models/HP0C/#H9.6A0Howtoresetthebuilt-inserver]]**124 +(% style="color:blue" %)//**➢ **//**Long press more than 10s:**(%%)** **//the gateway will restore the factory settings.// 127 127 126 + //**LED status: ** ETH LED will SOLID BULE Until the restore is finished.// 128 128 129 -When the gateway restores the factory settings is complete, 130 130 131 -The WiFi configuration will enable WiFi Access Point by default. 132 132 133 - Theotherconfigurationwill be restored to the default configuration.130 += **2. Quick Start** = 134 134 135 135 136 -= 2. Quick Start = 137 - 138 - 139 139 The LPS8-V2 supports network access via Ethernet or Wi-Fi connection and runs without a network. 140 140 141 141 In most cases, the first thing you need to do is make the lps8-v2 accessible to the network. 142 142 143 143 144 -== 2.1 Access and Configure LPS8-V2 == 145 145 146 -== =2.1.1FindIPaddressofLPS8-V2===139 +== **2.1 Connects to the network and accesses the gateway Web UI** == 147 147 148 148 149 -== ==(% style="color:blue" %)**Method1**(%%):ConnectviaLPS8-V2WiFi====142 +== **2.1.1 connect the network.** == 150 150 151 151 152 - Sincesoftware version **230524**,At the first boot of LPS8-V2, it will auto generate a WiFi network called(% style="color:green" %)**//dragino-xxxxxx//**(%%)withpassword:145 +=== (% style="color:blue" %)**Method 1**(%%): Connect via Ethernet with DHCP IP from the router === 153 153 154 -(% style="background-color:yellow" %)**dragino+dragino** 155 155 156 -User can use a PC to connect to this WiFi network. The PC will get an IP address 10.130.1.xxx and the LPS8-V2 has the default IP (% style="color:green" %)**10.130.1.1** 157 - 158 -[[image:image-20230527084515-1.png]] 159 - 160 -[[image:image-20230527085250-2.png||height="495" width="284"]] 161 - 162 - 163 -==== (% style="color:blue" %)**Method 2**(%%): Connect via Ethernet with DHCP IP from the router ==== 164 - 165 - 166 166 ((( 167 -Connect the LPS8-V2 Ethernet port to your router and LPS8 -V2can 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 LPS8-V2.149 +Connect the LPS8-V2 Ethernet port to your router and LPS8 can 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 LPS8-V2. 168 168 ))) 169 169 170 170 ((( ... ... @@ -174,39 +174,10 @@ 174 174 [[image:image-20220622100129-1.png||height="332" width="1263"]] 175 175 176 176 177 -==== (% style="color:blue" %)**Method 3**(%%): Connect via LPS8-V2 Fallback IP ==== 178 178 160 +=== (% style="color:blue" %)**Method 2**(%%): Connect via WiFi with DHCP IP from the router === 179 179 180 -[[image:image-20230107084650-2.png||height="310" width="839"]] 181 181 182 - 183 -(% style="color:blue" %)**Steps to connect via fallback IP:** 184 - 185 -~1. Connect the PC's Ethernet port to LPS8-V2's WAN port 186 - 187 -2. Configure PC's Ethernet port has IP: 172.31.255.253 and Netmask: 255.255.255.252 188 - 189 - 190 -**Settings ~-~-> Network & Internet ~-~-> Ethernet ~-~-> Change advanced sharing options ~-~-> Double-click"Ethernet" ~-~-> Internet Protocol Version 4 (TCP/IPv4)** 191 - 192 - 193 -As in the below photo: 194 - 195 -[[image:image-20230413172038-1.png||height="732" width="1243"]] 196 - 197 - 198 -Configure computer Ethernet port steps video: **[[attach:fallback ip.mp4||target="_blank"]]** 199 - 200 -If you still can't access the LPS8-V2 fallback ip, follow this connection to debug : **[[Trouble Shooting>>http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20All%20Gateway%20models/HP0C/#H9.3A0FallbackIPdoesnotwork2Chowcanuserscheck]]** 201 - 202 - 203 -3. In the PC, use IP address 172.31.255.254 to access the LPS8-V2 via Web or Console. 204 - 205 -[[image:image-20230111094247-2.png||height="619" width="1250"]] 206 - 207 - 208 -==== (% style="color:blue" %)**Method 4**(%%): Connect via WiFi with DHCP IP from the router ==== 209 - 210 210 [[image:image-20220622100542-2.png||height="369" width="1256"]] 211 211 212 212 ... ... @@ -226,107 +226,13 @@ 226 226 [[image:image-20220622102901-8.png||height="476" width="938"]] 227 227 228 228 229 -=== 2.1.2 Access Configure Web UI === 230 230 183 +== **2.2 The LPS8-V2 is registered and connected to The Things Network** == 231 231 232 -**Web Interface** 233 233 234 - Opena browser on thePC andtypethe LPS8-V2 ipaddress(depends onyourconnect method)186 +=== **2.2.1 Select your area frequency** === 235 235 236 236 237 -[[(% style="background-color:yellow" %)**//http:~~/~~/IP_ADDRESS //**>>http://IP_ADDRESS]](%%) or (% style="background-color:yellow" %)//**[[http:~~/~~/172.31.255.254>>http://172.31.255.254(]]**//(Fallback IP) 238 - 239 -You will see the login interface of LPS8-V2 as shown below. 240 - 241 -The account details for Web Login are: 242 - 243 -(% style="color:blue" %)**User Name: root** 244 - 245 -(% style="color:blue" %)**Password: dragino** 246 - 247 -[[image:image-20240318160845-1.png]] 248 - 249 - 250 -== 2.2 Typical Network Setup == 251 - 252 -=== 2.2.1 Overview === 253 - 254 - 255 -LPS8-V2 supports flexible network set up for different environment. This section describes the typical network topology can be set in LPS8-V2. The typical network set up includes: 256 - 257 -* **WAN Port Internet Mode** 258 - 259 -* **WiFi Client Mode** 260 - 261 -* **Cellular Mode** 262 - 263 -=== 2.2.2 Use WAN port to access Internet === 264 - 265 - 266 -By default, the LPS8-V2 is set to use the WAN port to connect to an upstream network. When you connect the LPS8-V2's WAN port to an upstream router, LPS8-V2 will get an IP address from the router and have Internet access via the upstream router. The network status can be checked in the (% style="color:blue" %)**home page**(%%): 267 - 268 - 269 -[[image:image-20230411100633-2.png||height="501" width="935"]] 270 - 271 - 272 -=== 2.2.3 Access the Internet as a WiFi Client === 273 - 274 - 275 -In the WiFi Client Mode, LPS8-V2 acts as a WiFi client and gets DHCP from an upstream router via WiFi. 276 - 277 -The settings for WiFi Client is under page (% style="color:blue" %)**Network ~-~-> Wi-Fi** 278 - 279 -[[image:image-20230411095739-1.png||height="264" width="691"]] 280 - 281 -In the WiFi Survey Choose the WiFi AP, and input the Passphrase then click(% style="color:blue" %)** Save & Apply**(%%) to connect. 282 - 283 - 284 -=== 2.2.4 Use built-in 4G modem for internet access === 285 - 286 - 287 -(% style="color:blue" %)**Since Hardware version HP0C 1.4** 288 - 289 -Users can see whether LPS8v2 has EC25 on the label of the gateway to determine whether there is 3G/4G Cellular modem. 290 - 291 - 292 -If the LPS8-V2 has 3G/4G Cellular modem, user can use it as main internet connection or back up. 293 - 294 -First, install the Micro SIM card as below direction 295 - 296 -Second, Power off/ ON LPS8-V2 to let it detect the SIM card. 297 - 298 - 299 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20All%20Gateway%20models/LPS8N%20-%20LoRaWAN%20Gateway%20User%20Manual/WebHome/1657090855037-497.png?rev=1.1||alt="1657090855037-497.png"]] 300 - 301 - 302 -The set up page is (% style="color:blue" %)**Network ~-~-> Cellular** 303 - 304 -While use the cellular as Backup WAN, device will use Cellular for internet connection while WAN port or WiFi is not valid and switch back to WAN port or WiFi after they recover. 305 - 306 - 307 -[[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20All%20Gateway%20models/LPS8N%20-%20LoRaWAN%20Gateway%20User%20Manual/WebHome/1657090932270-444.png?rev=1.1||alt="1657090932270-444.png"]] 308 - 309 - 310 -**Note: In most cases, the user simply types in the APN and checks the enable checkbox, without typing Pincode, Username, or Password settings.** 311 - 312 - 313 -=== 2.2.5 Check Internet connection === 314 - 315 - 316 -In the **home** page, we can check the Internet connection. 317 - 318 -* GREEN Tick [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20All%20Gateway%20models/LPS8N%20-%20LoRaWAN%20Gateway%20User%20Manual/WebHome/1652436675869-206.png?width=15&height=14&rev=1.1||alt="1652436675869-206.png"]] : This interface has Internet connection. 319 -* Yellow Tick [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20All%20Gateway%20models/LPS8N%20-%20LoRaWAN%20Gateway%20User%20Manual/WebHome/1652436705761-420.png?width=15&height=15&rev=1.1||alt="1652436705761-420.png"]] : This interface has IP address but don't use it for internet connection. 320 -* RED Cross [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20All%20Gateway%20models/LPS8N%20-%20LoRaWAN%20Gateway%20User%20Manual/WebHome/1652436787176-950.png?width=15&height=14&rev=1.1||alt="1652436787176-950.png"]] : This interface doesn't connected or no internet. 321 - 322 -[[image:image-20230411101534-3.png||height="544" width="942"]] 323 - 324 - 325 -== 2.3 The LPS8-V2 is registered and connected to The Things Network == 326 - 327 -=== 2.3.1 Select your area frequency === 328 - 329 - 330 330 ((( 331 331 First, you need to set the frequency plan in LPS8-V2 to match the end node we use, so to receive the LoRaWAN packets from the LoRaWAN sensor. 332 332 ... ... @@ -336,9 +336,10 @@ 336 336 [[image:image-20220622103332-9.png||height="485" width="938"]] 337 337 338 338 339 -=== 2.3.2 Get the only gateway EUI === 340 340 199 +=== **2.2.2 Get the only gateway EUI** === 341 341 201 + 342 342 Every LPS8-V2 has a unique gateway id. The ID can be found on LoRaWAN Semtech page: 343 343 344 344 ... ... @@ -360,9 +360,10 @@ 360 360 [[image:image-20220622103956-12.png]] 361 361 362 362 363 -=== 2.3.3 Register the gateway to The Things Network === 364 364 224 +== **2.2.3 Register the gateway to The Things Network** == 365 365 226 + 366 366 **Login to The Things Network** 367 367 368 368 [[https:~~/~~/console.cloud.thethings.network/>>https://console.cloud.thethings.network/]] ... ... @@ -376,30 +376,34 @@ 376 376 **Get it online** 377 377 378 378 379 -= 3. Web Configure Pages = 380 380 381 -= =3.1Home ==241 += **3. Web Configure Pages** = 382 382 383 383 384 - Showsthesystemrunning status:244 +== **3.1 Home** == 385 385 246 + 247 +//Shows the system running status~:// 248 + 386 386 [[image:http://wiki.dragino.com/xwiki/bin/download/Main/User%20Manual%20for%20All%20Gateway%20models/HP0C/WebHome/image-20220622102901-8.png?rev=1.1||alt="image-20220622102901-8.png" height="476" width="939"]] 387 387 388 388 389 -== 3.2 LoRa Settings == 390 390 391 -== =3.2.1LoRa~-~->LoRa===253 +== **3.2 LoRa Settings** == 392 392 393 393 394 - Thispageshows theLoRaRadioSettings. There is a set of default frequency bands according toLoRaWAN protocol, and users can customize the band*as well.256 +=== **3.2.1 LoRa ~-~-> LoRa** === 395 395 396 -Different LPS8v2 hardware versions can support different frequency ranges: 397 397 398 -* (% style="color:#0000ff" %)**868**(% style="color:black" %): valid frequency: 863Mhz ~~ 870Mhz. for bands EU868, RU864, IN865, or KZ865. 399 -* (% style="color:#0000ff" %)**915**(% style="color:black" %): valid frequency: 902Mhz ~~ 928Mhz. for bands US915, AU915, AS923 or KR920 259 +//This page shows the LoRa Radio Settings. There is a set of default frequency bands according to LoRaWAN protocol, and users can customize the band* as well.// 400 400 261 +//Different LPS8v2 hardware versions can support different frequency ranges~:// 262 + 263 +* (% style="color:#0000ff" %)//**868**//(% style="color:black" %)//: valid frequency: 863Mhz ~~ 870Mhz. for bands EU868, RU864, IN865, or KZ865.// 264 +* (% style="color:#0000ff" %)//**915**//(% style="color:black" %)//: valid frequency: 902Mhz ~~ 928Mhz. for bands US915, AU915, AS923 or KR920// 265 + 401 401 (% class="wikigeneratedid" %) 402 -After the user choose the frequency plan, the user can see the actual frequency is used by checking the page (% style="color:#037691" %)**LogRead ~-~-> LoRa Log** 267 +//After the user choose the frequency plan, the user can see the actual frequency is used by checking the page (% style="color:#037691" %)**LogRead ~-~-> LoRa Log**// 403 403 404 404 405 405 (% class="wikigeneratedid" %) ... ... @@ -411,23 +411,26 @@ 411 411 ))) 412 412 413 413 414 -== 3.3 LoRaWAN Settings == 415 415 416 -== =3.3.1LoRaWAN~-~-> LoRaWANSemtechUDP===280 +== **3.3 LoRaWAN Settings** == 417 417 418 418 419 - Thispageis for the connection set up toageneralLoRaWANNetwork server suchas [[TTN>>url:http://www.thethingsnetwork.org/]],[[ChirpStack>>url:https://www.chirpstack.io/]], etc.283 +=== **3.3.1 LoRaWAN ~-~-> LoRaWAN Semtech UDP** === 420 420 421 421 286 +//This page is for the connection set up to a general LoRaWAN Network server such as [[TTN>>url:http://www.thethingsnetwork.org/]], [[ChirpStack>>url:https://www.chirpstack.io/]], etc.// 287 + 288 + 422 422 [[image:image-20220616111932-2.png||height="516" width="672"]] 423 423 424 424 425 -=== 3.3.2 LoRaWAN ~-~-> LoRaWAN Basic Station === 426 426 293 +=== **3.3.2 LoRaWAN ~-~-> LoRaWAN Basic Station** === 427 427 428 -This page is for the connection set up to the TTN Basic Station, AWS-IoT, etc. 429 429 296 +//This page is for the connection set up to the TTN Basic Station, AWS-IoT, etc.// 430 430 298 + 431 431 [[image:image-20220616113246-3.png||height="396" width="672"]] 432 432 433 433 ... ... @@ -436,290 +436,127 @@ 436 436 ))) 437 437 438 438 439 -== 3.4 Network Settings == 440 440 441 -== =3.4.1Network~-~-> WiFi===308 +== **3.4 Network Settings** == 442 442 443 -Users can configure the wifi WAN and enable Wifi Access Point on this interface 444 444 445 - [[image:image-20230619095946-1.png||height="332"width="827"]]311 +=== **3.4.1 Network ~-~-> WiFi** === 446 446 447 447 448 - === 3.4.2 Network ~-~-> System Status===314 +[[image:image-20220616114756-4.png||height="251" width="669"]] 449 449 450 450 451 -[[image:image-20220820134112-2.png||height="539" width="668"]] 452 452 318 +=== **3.4.2 Network ~-~-> System Status** === 453 453 454 -=== 3.4.3 Network ~-~-> Network === 455 455 321 +[[image:image-20220820134112-2.png||height="539" width="668"]] 456 456 457 -In the **Network ~-~-> Network** interface, Users can set the Ethernet WAN static ip address. 458 458 459 -[[image:image-20230214093657-2.png||height="333" width="858"]] 460 460 325 +=== **3.4.3 Network ~-~-> Firewall** === 461 461 462 -=== 3.4.4 Network ~-~-> Cellular === 463 463 328 +[[image:image-20220616115351-6.png||height="244" width="661"]] 464 464 465 -In the **Network ~-~-> Cellular** interface, Users can Enable Cellular WAN and configure Celluar. 466 466 467 -(% style="color:red" %)**Note: APN cannot be empty.** 468 468 469 - [[image:image-20230228115126-1.png]]332 +== **3.5 System** == 470 470 471 471 472 - Aftertheconfiguration iscomplete, return to the Homeinterfaceand puttheouseon theCellicon to checkthe Cellular state.335 +=== **3.5.1 System ~-~-> System Overview** === 473 473 474 -[[image:image-20230228115535-2.png||height="478" width="888"]] 475 475 476 - 477 -Note: Known bugs: 4g consumes a lot of data which has been fixed by the package: dragino-ui-230716 478 - 479 -[[Reduce data method>>http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20All%20Gateway%20models/HP0C/#H8.3Howtoreducethe4gdataconsumed]] 480 - 481 - 482 -== 3.5 System == 483 - 484 -=== 3.5.1 System ~-~-> System Overview === 485 - 486 - 487 487 Shows the system info: 488 488 489 -[[image:image-202 31031162854-1.png]]340 +[[image:image-20220917144512-5.png||height="618" width="853"]] 490 490 491 491 492 -=== 3.5.2 System ~-~-> System General === 493 493 344 +=== **3.5.2 System ~-~-> Backup/Restore** === 494 494 495 -In the **System-> System General** interface, Users can customize the configuration System Password and set Timezone. 496 496 497 - In addition, Users can customizetheFallBack IP address.347 +[[image:image-20220917144725-6.png||height="208" width="869"]] 498 498 499 -[[image:image-20230214094058-3.png]] 500 500 501 501 502 -= ==3.5.3System ~-~->Backup/Restore ===351 += **4. Build-in Server** = 503 503 504 504 505 - [[image:image-20231031162927-2.png]]354 +The default factory version of LPS8-V2 is installed with the built-in Applicant server: (% style="color:blue" %)**Node-Red, and**(%%) LoRaWAN Server: (% style="color:blue" %)**The Things Network - Stack (Open Source 3.19 Version).** 506 506 507 -=== 3.5.4 System ~-~-> Reboot / Reset === 508 508 509 - In the **System-> Reboot / Reset**interface, users cancan restart or reset theateway.357 +[[image:image-20220820115644-1.png||height="217" width="778"]] 510 510 511 -ETH LED will SOLID BULE Until the restore is finished. 512 512 513 - Whenthe gatewayrestores the factory settingsis complete,360 +(% style="color:red" %)**Note:** 514 514 515 - TheWiFiconfigurationwillenableWiFiAccessPointbydefault.362 + **Path**: System ~-~-> Built-in Server 516 516 517 -The other configuration will be restored to the default configuration. 518 518 519 - [[image:image-20240203172853-1.png||height="365" width="901"]]365 +**Troubleshooting:** 520 520 521 521 522 - ===3.5.5System~-~->Remoteit===368 +**~ 1. URL does not jump properly** 523 523 370 + For the ttn-stack, you can click the update the URL which will update the configuration where change the hostname to the current local IP address as the URL. 524 524 525 - Inthe**System->Remoteit** interface, userscanconfigure thegatewaytobeaccessedremotelyviaRemote.it.372 + For the Node-Red, you can use the local IP address and the port is 1880 to access it. 526 526 527 527 528 -the users can refer to this link to configure them: **[[Monitor & Remote Access Gateway>>http://wiki.dragino.com/xwiki/bin/view/Main/Monitor%20%26%20Remote%20Access%20Gateway/?Remote%20Access#H2.1A0RemoteAccessviaRemote.it.]]** 529 529 530 - [[image:image-20221230092303-2.png]]376 +== **4.1 LoRaWAN Network Server ~-~- The Things Network - Stack (TTN-V3)** == 531 531 532 532 533 - ===3.5.6System~-~->PackageManagement===379 +You can access the gateway's built-in LNS server of (% style="color:blue" %)**The Things Network - Stack **(%%)via the URL( (% style="background-color:yellow" %)__**//http:~/~/<hostname>:8080 or http:~/~/<local-IPV4-address> //**__(%%)) in your browser. 534 534 381 +Such as (% style="background-color:yellow" %)__**//http:~/~/dragino-54ff12:8080 or http:~/~/<Local-IPV4-Address>//**__ 535 535 536 -In the **System ~-~-> Package Management** interface, Users can check the current version of Core Packages. 537 537 538 - [[image:image-20230214094316-4.png]]384 +Login account: 539 539 386 +**User ID: ** ** (% style="background-color:yellow" %)admin(%%)** 540 540 541 - == 3.5 Logread==388 +**Password: ** ** (% style="background-color:yellow" %)dragino(%%)** 542 542 543 -=== 3.5.1 LoRa Log === 544 544 391 +[[image:image-20220725171719-1.png||height="570" width="769"]] 545 545 546 -In the **Lograde ~-~-> LoRa Log page**, The users can view information about the gateway lora channel and the status of the IoT connection 547 547 548 -[[image:image-20240416112509-1.png]] 549 549 395 +== **4.2 Application Server ~-~- Node-Red** == 550 550 551 -=== 3.5.2 Gateway Traffic === 552 552 553 - In the**Lograde ~-~-> GatewayTrafficpage**, Theuserscanviewsensor packages about RecentLoRauplink/downlink/Joinrequests398 +You can access the gateway's built-in AS server of (% style="color:blue" %)**Node-Red **(%%)via the URL((% style="background-color:yellow" %)__**//http:~/~/<hostname>:1880 or http:~/~/<local-IPV4-address>//**__(%%)) in your browser. 554 554 555 -[[image:image-20240416112618-2.png||height="705" width="1122"]] 556 556 401 +Such as (% style="background-color:yellow" %)__**//http:~/~/dragino-54ff12:1880 or http:~/~/<Local-IPV4-Address>//**__ 557 557 558 -=== 3.5.3 System Log === 559 559 560 - In the **Lograde ~-~-> SystemLog page**, The users can view informationabout theatewaysystem404 +[[image:image-20220725172124-3.png||height="610" width="843"]] 561 561 562 -[[image:image-20240416112649-3.png||height="820" width="1122"]] 563 563 564 564 565 -=== 3.5.4RecordLog===408 +=== **Using Node-Red, InfluxDB and Grafana,** === 566 566 567 - In the**Lograde~-~->Recod Log page**,The userscanrecord thegatewaycurren runninglog.410 +The LPS8-V2 supports this combination, the default, Node-red is pre-installed but the InfluxDB and Grafana is not pre-installed. 568 568 569 -[[image:image-20240416112712-4.png||height="319" width="1128"]] 570 570 413 +the users can refer to this link to install them. 571 571 415 +[[http:~~/~~/wiki.dragino.com/xwiki/bin/view/Main/Armbian%20OS%20instruction/#H2.6HowtoinstallGrafanaandinfluxdb>>http://wiki.dragino.com/xwiki/bin/view/Main/Armbian%20OS%20instruction/#H2.6HowtoinstallGrafanaandinfluxdb]] 572 572 573 -= 4. Build-in Server = 574 574 575 - Afterthe v1.7-230606version,the LPS8-V2default factory pre-installedthe LoRaWAN Server: (%style="color:blue" %)**ChirpStack-V4**(%%), ApplicationServer: (% style="color:blue" %)**Node-Red**(%%).418 += **5. How users can access LPS8v2 using serial USB** = 576 576 577 577 578 - == 1). LoRaWAN Network Server:(% style="color:blue" %)**ChirpStack-V4**(%%) ==421 +(% style="color:blue" %)**USB TTL to LPS8v2 Connection:** 579 579 580 -[[image:image-20231106180816-4.png||height="416" width="896"]] 581 581 582 - [[image:image-20231201165904-1.png||height="466"width="899"]]424 +Port 1 of the UART on the LPS8v2 is GND 583 583 584 -(% style="color:red" %)**Note: The user can access the**(%%)** (% style="color:blue" %)ChirpStack-V4 (% style="color:red" %)via click the 'Launch' button, and the login account: admin/admin(%%)** 585 - 586 -For more information on server operations see [[Register LPSV2 to the built-in Chirpstack>>||anchor="H2.3TheLPS8-V2isregisteredandconnectedtoTheThingsNetwork"]] 587 - 588 - 589 - 590 -== 2). Application Network Server: (% style="color:blue" %)**Node-Red**(%%) == 591 - 592 - 593 -[[image:image-20230616175558-7.png||height="362" width="894"]] 594 - 595 -[[image:image-20231201170355-2.png||height="536" width="899"]] 596 - 597 -(% style="color:red" %)**Note: The user can access the**(%%)** (% style="color:blue" %)Node-RED (% style="color:red" %)via click the 'Launch' button(%%)** 598 - 599 - 600 - 601 -== **3). Troubleshooting:** == 602 - 603 - 604 -* ((( 605 -=== ** If the URL does not jump properly.** === 606 -))) 607 - 608 - For the ChirpStack, you can use the local IP address and the port is **8080** to access it. 609 - 610 - For the Node-Red, you can use the local IP address and the port is **1880** to access it. 611 - 612 - 613 -* ((( 614 -=== ** How to install InfluxDB, Garfana.** === 615 -))) 616 - 617 - The LPS8V2 is not pre-installed with InfluxDB and Garfana, the users can install them, see [[InfluxDB>>http://wiki.dragino.com/xwiki/bin/view/Main/Armbian%20OS%20instruction/#H2.6HowtoinstallGrafanaandinfluxdb]] 618 - 619 - 620 -* ((( 621 -=== ** How to upgrade the gateway node.js to the latest version.** === 622 -))) 623 - 624 - The user can upgrade nodejs, see [[Upgrade Nodejs>>http://wiki.dragino.com/xwiki/bin/view/Main/Armbian%20OS%20instruction/#H2.5Howtoupgradethenodejsversiontothelatest.]] 625 - 626 - 627 -* ((( 628 -=== ** How to batch register device on the built-in Chirpstack network server** === 629 -))) 630 - 631 - The user can register devices in batch on the gateway Web UI, see [[Batch Register>>http://wiki.dragino.com/xwiki/bin/view/Main/Notes%20for%20ChirpStack/#H11.A0HowtouseChirpstackAPItobatchregisterSensorNode2FGatewayinChistapstackServer]] 632 - 633 - 634 -* ((( 635 -=== ** Why my gateway is not Chirpstack?** === 636 -))) 637 - 638 - After June '23, the default factory LPS8V2 pre-installed Chirpstack-V4 instead of The Things Stack, the users can migrate to Chistack-V4, see **[[Change TTN Stack v3 to ChirpStack>>http://wiki.dragino.com/xwiki/bin/view/Main/User%20Manual%20for%20All%20Gateway%20models/HP0C/#H9.2Build-inTheThingsNetworkmigratetoChirpStack]]** 639 - 640 - 641 -* ((( 642 -=== ** How to disable the built-in server** === 643 -))) 644 - 645 645 (% class="box infomessage" %) 646 646 ((( 647 -Use the following commands to start and stop the TTNv3 service:** ** 648 - 649 -**# start** 650 -systemctl start ttnstack 651 - 652 -**# stop** 653 -systemctl stop ttnstack 654 - 655 -**# enable** 656 -systemctl enable ttnstack 657 - 658 -**#disable** 659 -systemctl disable ttnstack 660 -))) 661 - 662 -(% class="box infomessage" %) 663 -((( 664 -Use the following commands to start and stop the Node-Red service: 665 - 666 -**# start** 667 -systemctl start nodered 668 - 669 -**# stop** 670 -systemctl stop nodered 671 - 672 -**# enable** 673 -systemctl enable nodered 674 - 675 -**#disable** 676 -systemctl disable nodered 677 -))) 678 - 679 - 680 -* ((( 681 -=== ** How to choose the Chirpstack server frequency SubBand** === 682 -))) 683 - 684 -**~ ** The user has to choose a SubBand if using CN470, US915, AU915, or AS923. 685 - 686 - Note: Since the subbands of the Chirpstack are counted from 0, us915_1 of the Chirpstack is equal to US915 FSB2, so if your LoRa Rdio is using the US915 FSB2 you have to choose the us915_1 as the Chirpstack FSB. 687 - 688 -[[image:image-20230602140406-3.png||height="480" width="918"]] 689 - 690 - 691 -When the configuration is complete, click** "Save&Apply"**. 692 - 693 - 694 -(% style="color:red" %)**Note:**(%%) When adding the device profile, the selected Region configuration is also calculated from 0, so setting it to us915_1 corresponds to US915 Sub Band 2. 695 - 696 -[[image:image-20230602143122-4.png||height="511" width="983"]] 697 - 698 - 699 -= 5. Watch Dog = 700 - 701 - 702 -LPS8-V2 supports the Watch Dog but is not enabled by the previous releases(2023-11-24 ) 703 - 704 -The uses can be via the below method to enable Watch Dog: 705 - 706 -(% class="box infomessage" %) 707 -((( 708 -wget -P /tmp/ http:~/~/repo.dragino.com/release/tool/watchdog/enable_watchdog.sh && chmod +x /tmp/enable_watchdog.sh && /tmp/enable_watchdog.sh 709 -))) 710 - 711 -[[image:image-20231124113209-1.png||height="470" width="1157"]] 712 - 713 - 714 -= 6. How users can access LPS8-V2 using serial USB = 715 - 716 - 717 -(% style="color:blue" %)**USB TTL to LPS8-V2 Connection:** 718 - 719 -Port 1 of the UART on the LPS8-V2 is GND 720 - 721 -(% class="box infomessage" %) 722 -((( 723 723 **TXD <~-~--> UART RXD (Gray line)** 724 724 725 725 **RXD <~-~--> UART TXD (White line)** ... ... @@ -727,10 +727,13 @@ 727 727 **GND <~-~--> GND (Black line)** 728 728 ))) 729 729 435 + 730 730 **LPS8v2 UART connection photo** 731 731 732 -[[image:image-202 30421094319-2.png||height="351" width="392"]]438 +[[image:image-20220804163015-1.png||height="621" width="466"]] 733 733 440 + 441 + 734 734 In the PC,you can use the serial port tool(such as [[putty>>url:http://www.chiark.greenend.org.uk/~~sgtatham/putty/download.html]] in Windows), you need to set the serial baud rate to (% style="color:blue" %)**115200**(%%) to access the serial console for LPS8v2. LPS8v2 will output system info once power on as below: 735 735 736 736 ... ... @@ -740,268 +740,116 @@ 740 740 [[image:image-20220804164747-2.png||height="622" width="594"]] 741 741 742 742 743 -= 7. OTA System Update = 744 744 452 += **6. Use the helium gateway-rs as the Data-only Hotspot** = 745 745 746 -LPS8v2 supports system auto-update via OTA, please see **[[this URL>>url:http://wiki.dragino.com/xwiki/bin/view/OTA%20Update/]]** for the detail of this feature. 747 747 455 +== **Step 1: Configure Frequency Band** == 748 748 749 -== 7.1 Auto-update method == 750 750 458 +//Each country has a requirement for frequency region. Choose the right one for your area.// 751 751 752 - The default, eachgateway will enablethe auto-update function.460 +[[image:image-20220905164308-1.png]] 753 753 754 -this function will be triggered every boot and every midnight. 755 755 756 756 757 - Userscanenable/disableitviaWeb Page464 +== **Step 2: Configure the forward address** == 758 758 759 -[[image:image-20230607094447-2.png]] 760 760 467 +**Select one of the servers to configure.** 761 761 762 - ==7.2 Manual upgrademethod ==469 +**For example:** 763 763 471 +[[image:image-20220905164847-2.png]] 764 764 765 -1). Using the Linux command to upgrade the system 766 766 767 -(% class="box infomessage" %) 768 -((( 769 -**apt update && apt install *dragino*** 770 -))) 771 771 475 +== **Step 3: Download and Install the Helium-gateway-rs** == 772 772 773 -2). Upgrade the system via the Web page button of "Manual Update" 774 774 775 - (% style="color:red" %)**Note: thismethod needsabout10 mins, so you will get thelogfter10mins.**478 +**Access the gateway CLI via SSH.** 776 776 777 -[[image:image-202 30607093849-1.png]]480 +[[image:image-20220905165222-3.png]] 778 778 779 779 780 - =8.FAQ =483 +**Download gateway-rs.** 781 781 782 - == 8.1 How to changeHostname==485 +[[image:image-20220905165715-5.png]] 783 783 784 - 785 -By default, Hostname is dragino-xxxxxx,If the user needs to change the hostname, the user needs to access the linux console of LPS8v2 and enter the following command: 786 - 787 787 (% class="box infomessage" %) 788 788 ((( 789 - hostnamectlostname56489 +**Command: wget [[http:~~/~~/repo.dragino.com/release/tool/gateway-rs/helium-gateway-v1.0.0-alpha.31-raspi234.deb>>http://repo.dragino.com/release/tool/gateway-rs/helium-gateway-v1.0.0-alpha.31-raspi234.deb]]** 790 790 ))) 791 791 792 -[[image:image-20230517102429-1.png]] 793 793 794 - After the configuration iscomplete, run "reboot" to restartthegateway.493 +**Install gateway-rs.** 795 795 495 +[[image:image-20220905165917-7.png]] 796 796 797 -== 8.2 Build-in The Things Network migrate to ChirpStack == 798 - 799 - 800 -Migrate guide: 801 - 802 -To stabilize the completion of the migration, The users can migrate in one of the following ways 803 - 804 -**Method 1. Using the Linux shell, ** 805 - 806 -**Method 2. Flash a new image with the Chirpstack** 807 - 808 - 809 -=== Method 1: Using the Linux shell === 810 - 811 811 (% class="box infomessage" %) 812 812 ((( 813 - wget-P/tmp [[http:~~/~~/repo.dragino.com/release/tool/chirpstack/migrate_chirpstack>>http://repo.dragino.com/release/tool/chirpstack/migrate_chirpstack]] && chmod +x /tmp/migrate_chirpstack && /tmp/migrate_chirpstack499 +**Command: dpkg -i helium-gateway-v1.0.0-alpha.31-raspi234.deb ** 814 814 ))) 815 815 816 816 817 - ===Method2: Flash anewimage ===503 +**Modify configuration.** 818 818 819 -Image flash steps: [[How to flash a new image(OS) to the gateway(LPS8V2)>>http://wiki.dragino.com/xwiki/bin/view/Main/Armbian%20OS%20instruction/#H2.3A0Howtoflashanewimage28OS29tothegateway28LPS8V229]] 820 820 506 +[[image:image-20220905173847-12.png]] 821 821 822 -== 8.3 How to reduce the 4g data consumed == 823 823 824 - 825 -1). The gateway will check the network via ping 1.1.1.1/8.8.8.8 which will consume a lot of data, you can set the interval time to reduce data consume. 826 - 827 -[[image:image-20230719100239-1.png||height="724" width="994"]] 828 - 829 - 830 -2. Change the LoRa status package interval time: It does not affect the connection between the gateway and the server, just the status packet interval 831 - 832 -[[image:image-20230719100332-2.png]] 833 - 834 - 835 -3. Disable the auto-update: 836 - 837 -[[image:image-20230719100419-3.png||height="458" width="995"]] 838 - 839 - 840 -== 8.4 How to connect the helium blockchain as a Data-only hotspot == 841 - 842 - 843 843 (% class="box infomessage" %) 844 844 ((( 845 -apt update && apt install helium-gateway 511 +**region=<Enter regional parameters> \ 512 +&& sed -i '/region/d' /etc/helium_gateway/settings.toml && sed -i "1 i\region = \"$region\"" /etc/helium_gateway/settings.toml \ 513 +&& sed -i '/region/d' /etc/helium_gateway/default.toml && sed -i "22 i\region = \"$region\"" /etc/helium_gateway/default.toml** 846 846 ))) 847 847 848 848 849 - == 8.5 Howto change built-inLoRaWAN Serverfrom ChirpStack v4to TTN Stack v3. ==517 +**Restart the helium_gateway** 850 850 519 +[[image:image-20220905170920-9.png]] 851 851 852 -By default, the LPS8v2's built-in server is ChirpStack v4, 853 853 854 -If the user needs to change the built-in server from ChirpStack v4 to TTN Stack v3, the User needs to download the image and flash it to the LPS8v2 gateway: 855 - 856 -[[https:~~/~~/www.dropbox.com/scl/fi/qwtaw4i4dqonzramr93e4/dragino-LPS8V2-TTN-231124.rar?rlkey=nrftlkd1h8en6j07vzbhpj9ui&dl=0>>https://www.dropbox.com/scl/fi/qwtaw4i4dqonzramr93e4/dragino-LPS8V2-TTN-231124.rar?rlkey=nrftlkd1h8en6j07vzbhpj9ui&dl=0]] 857 - 858 - 859 -Image flash steps: [[How to flash a new image(OS) to the gateway(LPS8V2)>>http://wiki.dragino.com/xwiki/bin/view/Main/Armbian%20OS%20instruction/#H2.3A0Howtoflashanewimage28OS29tothegateway28LPS8V229]] 860 - 861 - 862 -== 8.6 How do I view gateway logs == 863 - 864 -=== 8.6.1 LoRaWAN Log: === 865 - 866 - 867 -==== Semtech UDP Log : ==== 868 - 869 -When the gateway starts LoRaWAN Semtech UDP, users can check the logs of the Semtech UDP in the **LogRead ~-~-> System Log** interface 870 - 871 -[[image:image-20231017112115-2.png||height="611" width="821"]] 872 - 873 - 874 -==== Station Log: ==== 875 - 876 -When the gateway starts Basic Station, users can check the logs of the station in the **LogRead ~-~-> System Log** interface 877 - 878 -[[image:image-20231017111606-1.png||height="622" width="821"]] 879 - 880 - 881 -=== 8.6.2 4G Log === 882 - 883 - 884 -User needs to access the Linux console of the gateway and enter the following command: 885 - 886 886 (% class="box infomessage" %) 887 887 ((( 888 -c at/var/log/qmilog.txt524 +**systemctl restart helium_gateway** 889 889 ))) 890 890 891 -[[image:image-20231017114417-3.png||height="543" width="679"]] 892 892 528 +**Check the helium_gateway Log:** 893 893 894 - LPS8v2 use **quectel-CM** linux drive for dial up. Themanual of this driver can be found here:[[**quectel-CM driver usermanual**>>https://www.dropbox.com/scl/fi/73n2jl2c5r8h4i187to4n/Quectel_WCDMA_LTE_Linux_USB_Driver_User_Guide_V1.9-20190212.pdf?rlkey=j8834bw38d4neieisg54zngu9&st=kjsd4zx4&dl=0]].530 +[[image:image-20220905173952-13.png]] 895 895 896 -Below are some commands as reference: 897 897 898 ->Usage: /usr/bin/quectel-CM [options] 899 -> -s [apn [user password auth]] Set apn/user/password/auth get from your network provider. auth: 1~~pap, 2~~chap 900 -> -p pincode Verify sim card pin if sim card is locked 901 -> -p [quectel-][qmi|mbim]-proxy Request to use proxy 902 -> -f logfilename Save log message of this program to file 903 -> -u usbmonlog filename Save usbmon log to file 904 -> -i interface Specify which network interface to setup data call when multi-modems exits 905 -> -4 Setup IPv4 data call (default) 906 -> -6 Setup IPv6 data call 907 -> -k pdn Specify which pdn to hangup data call (by send SIGINT to 'quectel-CM -n pdn') 908 -> -m iface-idx Bind QMI data call to wwan0_<iface idx> when QMAP used. E.g '-n 7 -m 1' bind pdn-7 data call to wwan0_1 909 -> -b Enable network interface bridge function (default 0) 910 -> -v Verbose log mode, for debug purpose.[Examples] 911 ->Example 1: /usr/bin/quectel-CM 912 ->Example 2: /usr/bin/quectel-CM -s 3gnet 913 ->Example 3: /usr/bin/quectel-CM -s 3gnet -v 914 - 915 - 916 - 917 - 918 - 919 -=== 8.6.3 Dmesg Log === 920 - 921 - 922 -Users can check the logs of the Dmesg in the **LogRead ~-~-> System Log** interface: 923 - 924 -[[image:image-20231017115330-5.png||height="565" width="740"]] 925 - 926 - 927 -=== 8.6.4 Record Log === 928 - 929 - 930 -Users can record DMESG logs and LoRaWAN logs on the **LogRead ~-~->Record Log** interface 931 - 932 -[[image:image-20231017115124-4.png||height="215" width="880"]] 933 - 934 - 935 -=== 8.6.5 View gateway logs via Linux Command === 936 - 937 - 938 -**Semtech UDP Log :** 939 - 940 940 (% class="box infomessage" %) 941 941 ((( 942 -**journalctl -u draginofwd-f**535 +**journalctl -u helium_gateway -f** 943 943 ))) 944 944 945 -[[image:image-20231207144627-1.png||height="371" width="1017"]] 946 946 539 +(% style="color:red" %)**Note: if your device is not finished the onboarding, which is unable to connect to the Helium console.** 947 947 948 - **StationLog:**541 +where the helium gateway log is shown: 949 949 950 -(% class="box infomessage" %) 951 -((( 952 -**tail -f /var/log/station.log ** 953 -))) 543 +[[image:image-20220905174534-14.png]] 954 954 955 -[[image:image-20231207144758-2.png||height="132" width="1022"]] 956 956 546 +So you have to finish the onboarding, ~-~--Please refer to [[Step 2.7>>doc:Main.Notes for Helium.WebHome||anchor="H2.7A0Step6:OnboardingData-OnlyHotspot"]] to onboarding your LPS8-V2. 957 957 958 -**Dmesg Log:** 959 959 960 -(% class="box infomessage" %) 961 -((( 962 -**dmesg** 963 -))) 549 += **7. OTA System Update** = 964 964 965 -[[image:image-20231207145210-3.png||height="310" width="1021"]] 966 966 552 +LPS8v2 supports system auto update via OTA, please see **[[this URL>>url:http://wiki.dragino.com/xwiki/bin/view/OTA%20Update/]]** for the detail of this feature. 967 967 968 -== 8.7 DIN Mount Reference: == 969 969 555 += **8. Trouble Shooting** = 970 970 971 -[[image:image-20240318095605-1.jpeg||height="472" width="472"]] 972 972 973 - [[image:image-20240318095617-2.png]]558 +== 8.1 I can't log in to the built-in Server TTN Stack which shows '**Login failed**'. == 974 974 975 975 976 -== 8.8 NTP Service/Time Synchronization == 977 - 978 -The gateway time sync service is provided by chrony service 979 - 980 - 981 -=== 1). Modify the NTP server address: === 982 - 983 -(% class="box infomessage" %) 984 -((( 985 -Configuration file path: /etc/chrony/chrony.conf 986 -))) 987 - 988 - 989 -=== 2). Start/Stop/Enable/Disable NTP service: === 990 - 991 -(% class="box infomessage" %) 992 -((( 993 -systemctl start chrony 994 -\\systemctl stop chrony 995 -\\systemctl disable chrony 996 -\\systemctl enable chrony 997 -))) 998 - 999 - 1000 - 1001 -= 9. Trouble Shooting = 1002 - 1003 -== 9.1 I can't log in to the built-in Server TTN Stack which shows '**Login failed**'. == 1004 - 1005 1005 [[image:image-20220920135918-1.png]] 1006 1006 1007 1007 ... ... @@ -1017,87 +1017,21 @@ 1017 1017 [[image:image-20220920141936-2.png]] 1018 1018 1019 1019 1020 -== 9.2 The built-in TTN status is "Not Running" and the URI is "dragino-123456". How users fix this problem == 1021 1021 1022 1022 1023 - Whenthisproblem occurs, click "**UpdateToDEFAULT**" ,this problem willbefixed.578 += (% style="color:inherit; font-family:inherit; font-size:29px" %)**9. Supports**(%%) = 1024 1024 1025 -[[image:image-20230508171607-1.png]] 1026 1026 1027 - 1028 -== 9.3 Fallback IP does not work, how can users check == 1029 - 1030 - 1031 -When the computer has completed the above fallback IP configuration,the LPS8v2 Web UI is still not accessible via fallback IP. 1032 - 1033 - 1034 -**~1. Check whether the configuration is correct** 1035 - 1036 -Run the CMD command to ipconfig and ping 172.31.255.254. 1037 - 1038 -If this fails, the user needs to reconfigure. 1039 - 1040 -[[image:image-20230413170224-3.png||height="433" width="707"]] 1041 - 1042 -[[image:image-20230413170246-4.png]] 1043 - 1044 - 1045 -**2. Check whether the firewall is disabled** 1046 - 1047 -If the firewall is not down, this will affect access to the gateway. 1048 - 1049 - 1050 -== 9.4 Click "Manual_Update", why there is no response? == 1051 - 1052 - 1053 -When you click "Manual_Update", the gateway will finish updating within 10 minutes and display the update log. 1054 - 1055 - 1056 -[[image:image-20230527090555-3.png||height="660" width="832"]] 1057 - 1058 - 1059 -== 9.5 Why the LPS8V2's Access Point does not do not appear & Fallback IP unable to access == 1060 - 1061 - 1062 -Earlier versions of the LPS8V2 which missing the AP driver and not installed the fallback package, so the users have to do an extra update. 1063 - 1064 -(% class="box infomessage" %) 1065 1065 ((( 1066 -apt update && apt install *dragino* 1067 - 1068 -wget -P /tmp/ [[http:~~/~~/repo.dragino.com/release/hp0c-packages/linux-image-current-draginohp0z_22.05.2_armhf.deb>>http://repo.dragino.com/release/hp0c-packages/linux-image-current-draginohp0z_22.05.2_armhf.deb]] && dpkg -i /tmp/[[linux-image-current-draginohp0z_22.05.2_armhf.deb>>http://repo.dragino.com/release/hp0c-packages/linux-image-current-draginohp0z_22.05.2_armhf.deb]] 582 +**//If you are experiencing issues and can't solve them, you can send mail to [[support@dragino.com>>mailto:support@dragino.com]].//** 1069 1069 ))) 1070 1070 1071 - 1072 -== 9.6 How to reset the built-in server == 1073 - 1074 - 1075 -**1) Build-in The Things Network** 1076 - 1077 -Refer to this link to delete the Built-in server's device. 1078 - 1079 -[[Delete devices from Build-in The Things Network>>url:http://wiki.dragino.com/xwiki/bin/view/Main/Delete%20devices%20from%20Build-in%20The%20Things%20Network/]] 1080 - 1081 - 1082 -**2) Build-in Chirpstack** 1083 - 1084 -Users need to click "Reset" on the Server~-~->NetServer interface, ChirpStack will be reset. 1085 - 1086 -[[image:image-20231106180846-5.png||height="310" width="668"]] 1087 - 1088 - 1089 -= (% style="color:inherit; font-family:inherit; font-size:29px" %)10. Supports(%%) = 1090 - 1091 - 1092 1092 ((( 1093 -If you are experiencing issues and can't solve them, you can send mail to [[support@dragino.com>>mailto:support@dragino.com]]. 1094 -))) 586 +**//With your question as detailed as possible. We will reply and help you in the shortest.//** 1095 1095 1096 -((( 1097 -With your question as detailed as possible. We will reply and help you in the shortest. 1098 1098 1099 1099 1100 -= 1 1. Reference =590 += **10. Reference** = 1101 1101 1102 1102 1103 1103 * Install Tago Core: Refer **Install Tago Core in LPS8v2** in[[ Instruction>>doc:Main.Tago\.IO.WebHome]]. ... ... @@ -1106,7 +1106,7 @@ 1106 1106 1107 1107 ))) 1108 1108 1109 -= 1 2. Order Info =599 += **11. Order Info** = 1110 1110 1111 1111 1112 1112 (% style="color:#0000ff" %)**LPS8v2-XXX-YYY** ... ... @@ -1114,33 +1114,26 @@ 1114 1114 (% style="color:#0000ff" %)**XXX**(% style="color:black" %): Frequency Band 1115 1115 1116 1116 * (% style="color:red" %)**AS923**(%%): LoRaWAN AS923 band 1117 - 1118 1118 * (% style="color:red" %)**AU915**(%%): LoRaWAN AU915 band 1119 - 1120 1120 * (% style="color:red" %)**EU868**(%%): LoRaWAN EU868 band 1121 - 1122 1122 * (% style="color:red" %)**KR920**(%%): LoRaWAN KR920 band 1123 - 1124 1124 * (% style="color:red" %)**US915**(%%): LoRaWAN US915 band 1125 - 1126 1126 * (% style="color:red" %)**IN865**(%%): LoRaWAN IN865 band 1127 1127 1128 1128 (% style="color:#0000ff" %)**YYY**(% style="color:black" %): 4G Cellular Option 1129 1129 1130 -* (% style="color:red" %)**EC25-E**(% style="color:black" %): EMEA, Korea, Thailand, India 615 +* (% style="color:red" %)**E**(%%): EMEA, Korea, Thailand, India. 616 +* (% style="color:red" %)**A**(%%): North America/ Rogers/AT&T/T-Mobile. 617 +* (% style="color:red" %)**AU**(%%): Latin America, New Zeland, Taiwan 618 +* (% style="color:red" %)**J**(%%): Japan, DOCOMO/SoftBank/ KDDI 1131 1131 1132 -* (% style="color:red" %)**EC25-AFX**(% style="color:black" %): America:Verizon, AT&T(FirstNet), U.S.Cellular; Canada:Telus 1133 - 1134 -* (% style="color:red" %)**EC25-AUX**(% style="color:black" %): Latin America, New Zeland, Taiwan 1135 - 1136 -* (% style="color:red" %)**EC25-J**(% style="color:black" %): Japan, DOCOMO, SoftBank, KDDI 1137 - 1138 1138 More info about valid bands, please see [[EC25-E product page>>url:https://www.quectel.com/product/ec25.htm]]. 1139 1139 1140 1140 1141 -= 13. Manufacturer Info = 1142 1142 624 += **12. Manufacturer Info** = 1143 1143 626 + 1144 1144 **Shenzhen Dragino Technology Development co. LTD** 1145 1145 1146 1146 Room 202, Block B, BCT Incubation Bases (BaoChengTai), No.8 CaiYunRoad ... ... @@ -1148,9 +1148,10 @@ 1148 1148 LongCheng Street, LongGang District ; Shenzhen 518116,China 1149 1149 1150 1150 1151 -= 14. FCC Warning = 1152 1152 635 += **13. FCC Warning** = 1153 1153 637 + 1154 1154 ((( 1155 1155 This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: 1156 1156 )))
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