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The CMake build system will first try to locate libfec in the system. if it is not available, it will start building the libfec that is part of the gr-satnogs source code. During the installation libfec is installed in the system, thus future builds will make use of it and will not rebuild from source. |
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.. | ||
CMakeLists.txt | ||
README.md | ||
meteor_decoder.grc | ||
mpla.ogg | ||
noaa_apt_decoder.grc | ||
satnogs_meteor_decoder.py | ||
satnogs_noaa_apt_decoder.py | ||
upsat_afsk_receiver.grc | ||
upsat_afsk_transmitter.grc | ||
upsat_fsk_receiver.grc | ||
upsat_fsk_transmitter.grc | ||
upsat_transceiver_cli.grc | ||
upsat_transceiver_cli.py | ||
upsat_transceiver_qt.grc | ||
upsat_transceiver_qt.py |
README.md
SatNOGS NOAA APT Decoder
--antenna
: Specify the RX antenna of SDR device
--bb-gain
: Specify the baseband (BB )gain of the SDR device
--dev-args
: Set device specific arguments
--doppler-correction-per-sec
: Doppler corrections per second
--file-path
: File path of the output audio file
--if-gain
: Specify the intermediate frequency (IF) gain of the SDR device
--image-file-path
: File path of the output image file(s)
--lo-offset
: Local oscillator offset
--ppm
: Set PPM
--rf-gain
: Specify the radio frequency (RF) gain of the SDR device
--rigctl-port
: Specify the listening port of the rigctl daemon (rigctld)
--rx-freq
: Set the target frequency of the satellite
--rx-sdr-device
: Specify the RX SDR device. Possible values: ['usrpb200','usrp2','rtlsdr','airspy','hackrf']
--waterfall-file-path
: File path of the output waterfall data file
--split-images
: Split the two images contained in the received image. Use 1 for Yes, 0 for No
--sync
: Synchronize image to the APT training sequence. Use 1 for Yes, 0 for No
--flip-images
: Rotate images 180 degrees. Use 1 for Yes, 0 for No