<
From version < 24.1
edited by Xiaoling
on 2024/08/16 11:25
To version < 21.2 >
edited by Xiaoling
on 2023/04/14 11:02
Change comment: There is no comment for this version

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... ... @@ -37,10 +37,10 @@
37 37  
38 38  **End node actually value when TXP=0 and DR=0**
39 39  
40 -(% border="1" cellspacing="3" style="background-color:#f2f2f2; width:1002px" %)
41 -|(% style="background-color:#4f81bd; color:white; width:134px" %)**Frequency band**|(% style="background-color:#4f81bd; color:white; width:400px" %)**Output Power in LoRa Module (consider 2dB antenna)**|(% style="background-color:#4f81bd; color:white; width:362px" %)(((
40 +(% border="1.5" cellspacing="4" style="background-color:#F2F2F2; width:1002px" %)
41 +|(% style="width:134px;background-color:#D9E2F3" %)**Frequency band**|(% style="width:400px;background-color:#D9E2F3" %)**Output Power in LoRa Module (consider 2dB antenna)**|(% style="width:362px;background-color:#D9E2F3" %)(((
42 42  **Spreading Factor(Higher SF can transmit further)**
43 -)))|(% style="background-color:#4f81bd; color:white; width:102px" %)**Band Width**
43 +)))|(% style="width:102px;background-color:#D9E2F3" %)**Band Width**
44 44  |(% style="width:134px" %)**EU868**|(% style="width:400px" %)14dBm|(% style="width:362px" %)SF=12|(% style="width:102px" %)125Khz
45 45  |(% style="width:134px" %)**US915**|(% style="width:400px" %)20 or 22 dBm (depends on max output of module)|(% style="width:362px" %)SF=10|(% style="width:102px" %)125Khz
46 46  |(% style="width:134px" %)**AS923**|(% style="width:400px" %)14dBm|(% style="width:362px" %)SF=12|(% style="width:102px" %)125Khz
... ... @@ -58,9 +58,9 @@
58 58  
59 59  (% style="color:#037691" %)**AT+ADR=0**
60 60  
61 -(% style="color:#037691" %)**AT+DR=0     **~/~/(%%) Use longest distance modulation
61 +(% style="color:#037691" %)**AT+DR=0  **~/~/(%%) Use longest distance modulation
62 62  
63 -(% style="color:#037691" %)**AT+TXP=0   **(%%)~/~/ Use max power   For EU868, max power can be is AT+TXP=50
63 +(% style="color:#037691" %)**AT+TXP=0   **(%%)~/~/Use max power   For EU868, max power can be is AT+TXP=50
64 64  
65 65  
66 66  This can be downlink via the LoRaWAN downlink command, see [[this link>>url:http://wiki.dragino.com/xwiki/bin/view/Main/End%20Device%20AT%20Commands%20and%20Downlink%20Command/#H8.2UseDownlinkCommandtosetafixuplinkDR]] for reference.
... ... @@ -71,8 +71,10 @@
71 71  
72 72  According to the above technology, if we have a problem on the distance, we can first check if the end node is trying to longest distance modulation already. We can see that from the LoRaWAN server. Below is an example from Chirpstack.
73 73  
74 +
74 74  We can see the traffic in gateway's page and know that the distance is SF12 / BW125. (note, server is not able to know Transmit Power settings from End Node)
75 75  
77 +
76 76  [[image:image-20221006185826-3.png]]
77 77  
78 78  
... ... @@ -81,25 +81,13 @@
81 81  
82 82  Below are the settings for longest distance transmission. ( will reduce battery life)
83 83  
84 -* (% style="color:#037691" %)**AT+ADR=0**          (%%)~/~/  Disable ADR  (% style="color:#037691" %)**(downlinkpayload: 2200FFFF)**
85 -* (% style="color:#037691" %)**AT+DR=0**           (%%)~/~/  Use the smallest DR,the longest distance modulation (% style="color:#037691" %)**(downlinkpayload: 220000FF)**
86 -* (% style="color:#037691" %)**AT+TXP=0**          (%%)~/~/  Use max power   For EU868, max power can be is AT+TXP=50 (% style="color:#037691" %)** (downlinkpayload: 22000000)**
86 +* (% style="color:#037691" %)**AT+ADR=0**     (%%)~/~/  Disable ADR
87 +* (% style="color:#037691" %)**AT+DR=  0**     (%%)~/~/  Use the smallest DR,the longest distance modulation
88 +* (% style="color:#037691" %)**AT+TXP=0**    (%%) ~/~/  Use max power   For EU868, max power can be is AT+TXP=50
87 87  
88 -
89 -
90 -== 2.5 Debug in Software ==
91 -
92 -
93 -Dragino can help client to debug the software for the distance issue. In the case , please send us below info:
94 -
95 -* Detail packets include for Join Request, Join Accept, Uplink & Downlink, These packets should include:
96 -** RSSI, DataRate, FCNT, Frequency.
97 -** MIC command detail & Payload detail.
98 -
99 -
100 100  = 3.  Analyze at the hardware side =
101 101  
102 -== 3.1  Check if the antenna path is good ~-~- For LSN50v2 series end node ==
92 +== 3.1  Check if the antenna path is good ~-~- For LSn50v2 series end node ==
103 103  
104 104  
105 105  a) Open Enclosure and Check if the antenna connection to module is good.
... ... @@ -106,6 +106,7 @@
106 106  
107 107  b) check if the connector match.
108 108  
99 +
109 109  [[image:image-20221016081725-1.png||height="426" width="706"]]
110 110  
111 111  
... ... @@ -130,8 +130,6 @@
130 130  * High ISM band usage by other technologies.
131 131  * Radio communication are usually killed with bad topographic conditions. It is usually not possible to communicate through a hill, even very small.
132 132  
133 -
134 -
135 135  == 4.2  Improve the Antenna ==
136 136  
137 137  
... ... @@ -148,6 +148,7 @@
148 148  
149 149  Below is the output log in gateway side ( SSH Access to Gateway and Check Station log)
150 150  
140 +
151 151  [[image:image-20221006185826-4.png]]
152 152  
153 153  
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