SX1276 Shield based Applications
Dependencies: X_NUCLEO_IKS01A1 LoRaWAN-lib SX1276Lib mbed
LoRaWAN-SX1276-Application Demo uses SX1276MB1LAS mbed component shield on a nucleo board platform to demonstrate a Class-A LoRaWAN device in the 915MHz ISM band for North American region. It uses the LoRaWAN-lib and SX1276Lib libraries.
Comissioning.h (LoRaWAN Network Configuration)
The end-device can be activated in one of the two ways:
Over the Air (OTA) activation can be enabled as shown in the figure below.
The end-device must be configured with the following parameters:
LORAWAN_DEVICE_EUI
(8 Bytes) : Fist 3 Bytes is the Organizationally Unique Identifier (OUI) followed by 5 bytes of unique ID. If not defined by user, then the firmware automatically assigns one to the end-deviceLORAWAN_APPLICATION_EUI
(8 Bytes)LORAWAN_APPLICATION_KEY
(or DEVKEY) (16 Bytes)
Activation by Personalization (ABP) can be enabled as shown in the figure below.
The end-device must be configured with the following parameters:
LORAWAN_DEVICE_ADDRESS
(4 Bytes) : If not defined by user, then the firmware automatically assigns one to the end-deviceLORAWAN_NWKSKEY
(16 Bytes)LORAWAN_APPSKEY
(16 Bytes)
Config.h (LoRaWAN Communication Parameters)
- Mode of Operation : Hybrid
If the end-device needs to be configured to operate over 8-channels, then
Hybrid Mode
needs to be enabled
- Mode of Operation : Frequency Hop
If the end-device needs to be configured to operate over 64-channels, then
Hybrid Mode
needs to be disabled
- Delay between successive JOIN REQUESTs :
The delay between successive Join Requests (until the end-device joins the network) can be configured using the parameter
OVER_THE_AIR_ACTIVATION_DUTYCYCLE
- Inter-Frame Delay :
One can change the delay between each frame transmission using
APP_TX_DUTYCYCLE
It is advisable thatAPP_TX_DUTYCYCLE
is greater than or equal to 3sec.
- Data Rate :
The data rate can be configured as per LoRaWAN specification using the paramter
LORAWAN_DEFAULT_DATARATE
. The range of values are DR_0, DR_1, DR_2, DR_3 and DR_4
- Confirmed/Unconfirmed Messages :
The uplink message or payload can be chosen to be confirmed or unconfirmed using the parameter
LORAWAN_CONFIRMED_MSG_ON
. When set to 1, the transmitted messages need to be confirmed with anACK
by the network server in the subsequent RX window. When set to 0, noACK
is requested.
- ADR ON/OFF :
The ADR can be enabled or disabled using the parameter
LORAWAN_ADR_ON
. When set to 1, ADR is enabled and disabled when set to 0.
- Application Port :
The application port can be set using parameter
LORAWAN_APP_PORT
. A few examples are associated to specific Application Port, and are defined in Config.h
- Payload Length :
The lenght of the payload (in bytes) to be transmitted can be configured using
LORAWAN_APP_DATA_SIZE
- Transmit Power :
The transmit power can be configured using
LORAWAN_TX_POWER
(LoRaMAC verifies if the set power is compliant with the LoRaWAN spec and FCC guidelines)
The baud-rate for serial terminal display is 115200
Diff: app/LoRaDeviceStateProc.cpp
- Revision:
- 6:c5f2da0de0b0
- Parent:
- 0:42863a11464a
--- a/app/LoRaDeviceStateProc.cpp Sun Nov 26 03:26:34 2017 +0000 +++ b/app/LoRaDeviceStateProc.cpp Wed Jul 18 22:26:26 2018 +0000 @@ -30,6 +30,7 @@ MlmeReq_t mlmeReq; +uint16_t ChannelMaskTemp[6] = {0}; /*! * \brief Function executed on TxNextPacket Timeout event @@ -79,6 +80,86 @@ LoRaMibReq.Type = MIB_CHANNELS_TX_POWER; LoRaMibReq.Param.ChannelsTxPower = LORAWAN_TX_POWER; LoRaMacMibSetRequestConfirm( &LoRaMibReq ); + + LoRaMibReq.Type = MIB_CHANNELS_MASK; + LoRaMibReq.Param.ChannelsMask = ChannelMaskTemp; + +#ifdef USE_BAND_915_HYBRID_BLOCK_A + + ChannelMaskTemp[0] = 0x00FF; + ChannelMaskTemp[1] = 0x0000; + ChannelMaskTemp[2] = 0x0000; + ChannelMaskTemp[3] = 0x0000; + ChannelMaskTemp[4] = 0x0001; + +#elif defined USE_BAND_915_HYBRID_BLOCK_B + + ChannelMaskTemp[0] = 0xFF00; + ChannelMaskTemp[1] = 0x0000; + ChannelMaskTemp[2] = 0x0000; + ChannelMaskTemp[3] = 0x0000; + ChannelMaskTemp[4] = 0x0002; + +#elif defined USE_BAND_915_HYBRID_BLOCK_C + + ChannelMaskTemp[0] = 0x0000; + ChannelMaskTemp[1] = 0x00FF; + ChannelMaskTemp[2] = 0x0000; + ChannelMaskTemp[3] = 0x0000; + ChannelMaskTemp[4] = 0x0004; + +#elif defined USE_BAND_915_HYBRID_BLOCK_D + + ChannelMaskTemp[0] = 0x0000; + ChannelMaskTemp[1] = 0xFF00; + ChannelMaskTemp[2] = 0x0000; + ChannelMaskTemp[3] = 0x0000; + ChannelMaskTemp[4] = 0x0008; + +#elif defined USE_BAND_915_HYBRID_BLOCK_E + + ChannelMaskTemp[0] = 0x0000; + ChannelMaskTemp[1] = 0x0000; + ChannelMaskTemp[2] = 0x00FF; + ChannelMaskTemp[3] = 0x0000; + ChannelMaskTemp[4] = 0x0010; + +#elif defined USE_BAND_915_HYBRID_BLOCK_F + + ChannelMaskTemp[0] = 0x0000; + ChannelMaskTemp[1] = 0x0000; + ChannelMaskTemp[2] = 0xFF00; + ChannelMaskTemp[3] = 0x0000; + ChannelMaskTemp[4] = 0x0020; + +#elif defined USE_BAND_915_HYBRID_BLOCK_G + + ChannelMaskTemp[0] = 0x0000; + ChannelMaskTemp[1] = 0x0000; + ChannelMaskTemp[2] = 0x0000; + ChannelMaskTemp[3] = 0x00FF; + ChannelMaskTemp[4] = 0x0040; + +#elif defined USE_BAND_915_HYBRID_BLOCK_H + + ChannelMaskTemp[0] = 0x0000; + ChannelMaskTemp[1] = 0x0000; + ChannelMaskTemp[2] = 0x0000; + ChannelMaskTemp[3] = 0xFF00; + ChannelMaskTemp[4] = 0x0080; + +#elif defined USE_BAND_915 + + ChannelMaskTemp[0] = 0xFFFF; + ChannelMaskTemp[1] = 0xFFFF; + ChannelMaskTemp[2] = 0xFFFF; + ChannelMaskTemp[3] = 0xFFFF; + ChannelMaskTemp[4] = 0x00FF; + ChannelMaskTemp[5] = 0x0000; + +#endif + + LoRaMacMibSetRequestConfirm( &LoRaMibReq ); LoRaMacDownlinkStatus.DownlinkCounter = 0; }