bandsaunter/INSTALL.md
The Dust Council df080f6571 A window on the sky, and flags on the routes
The terminal board says what is overhead.  This says where: a real map
with the aircraft moving on it as the frames arrive, and beside each one a
box carrying everything known about the flight -- type and registration,
who operates it, where it came from and where it is going, height with a
rate of climb, speed and heading, how far away and on what bearing, its
position, how many frames it has sent and how long since the last one.

Qt is asked for and not required.  Four bindings are tried, the module
imports on a machine with none of them, and asking for the window without
one gets the instructions rather than a traceback -- before the receiver
is opened, since nothing is gained by taking the dongle for a window that
cannot be drawn.

In the menu, "listen now" is now "passive capture" with a realtime
display beside it.  Closing the window leaves exactly the files pressing
control-C leaves, because listen and watch share one read loop and one
finishing step; the receiver runs on its own thread, so a slow repaint
cannot cost a frame and a slow tile fetch cannot stall the picture.

The animation's labels grew to match: flight level and speed, type and
registration, and both ends of the route, each with a small flag of the
country its airport is in.  The flags are a table rather than a network --
twelve pixels by eight, where a flag is the arrangement that makes one
recognisable rather than a rendering of the real thing -- and a country
not in the table is named by its two letters, since a flag that is nearly
another country's is worse than none.  Where a route arrives as bare
codes the country comes from the ICAO prefix.

Four things found on the way.  The window ignored --seconds, so "listen
for ten minutes" meant something different with a window open; it closes
itself now.  The register was being asked twice per aircraft, once for
labels and once for airport positions.  Cached routes had no country in
them, so the first real redraw drew no flags at all -- routes are
versioned now.  And past fourteen aircraft on one frame the labels go
back to the callsign, the height and the speed, because five lines beside
each of three hundred aircraft is a page of overlapping text with a map
somewhere behind it.

Long names are folded rather than allowed to stretch a box, breaking at
the arrow of a route so the two ends stay whole; and the animation's
label placement gained the same ring search the window uses, having only
ever tried four spots.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_016PsWPTweCT6pwxKngvVxcg
2026-09-04 13:38:47 -07:00

14 KiB

Installing bandsaunter

Step by step, from nothing to a scan running. The whole of it is four dependencies and one C library; there is nothing to compile and no model to download unless you want speech transcription.

If you are on Debian, Ubuntu or Mint, build the package — it is two commands and apt does the rest. Anywhere else, use a virtual environment.

You can try the whole program before buying or plugging in a receiver. --simulate runs the scanner against a synthetic band, and bandsaunter adsb --simulate flies imaginary aircraft past an imaginary receiver. Neither needs hardware or a network.


What you need

Python 3.10 or newer
A receiver any RTL2832U dongle (RTL-SDR Blog v3/v4, NESDR, generic) — optional, everything except live scanning works without one
An aerial whatever came with the dongle to start; a band-cut aerial for anything serious
Disk ~250 MB for the program and its dependencies; recordings are what actually fill a disk
Network only for installing, and for callsign and aircraft lookups afterwards

Operating systems: developed and packaged on Debian; runs on any Linux with Python 3.10+, and on macOS with brew install librtlsdr. On Windows it will run under WSL2 with USB passthrough, which is more trouble than it is worth — a Raspberry Pi is the easier answer.


A. Debian, Ubuntu, Mint: the package

git clone <the repository>  bandsaunter
cd bandsaunter
./packaging/build-deb.sh                        # writes dist/bandsaunter_<version>_all.deb
sudo apt install ./dist/bandsaunter_*.deb

That is the whole of it. build-deb.sh needs only dpkg-deb and fakeroot, both already present on a normal system; apt then pulls in numpy, scipy, rich, PyYAML and librtlsdr itself.

The package also does the one piece of system setup that a pip install cannot: it blacklists the DVB-T television driver, which claims these dongles on sight. Read what it prints — if a receiver was plugged in during the install, unplug and replug it, or run sudo rmmod dvb_usb_rtl28xxu once.

Uninstall with sudo apt remove bandsaunter, which also removes the blacklist.

For several machines: your own apt repository

./packaging/build-repo.sh builds the application, a speech recogniser and a model into a small apt repository under dist/repo, so that apt install bandsaunter on every other machine brings transcription with it. See Install → From your own apt repository in the README.


B. Anywhere else: a virtual environment

Debian, Ubuntu and Fedora refuse pip install outside a virtual environment (PEP 668: "externally-managed-environment"). That is the error most people hit first, and a virtual environment is the answer:

sudo apt install librtlsdr0                # Debian/Ubuntu/Mint
# sudo dnf install rtl-sdr                 # Fedora
# sudo pacman -S rtl-sdr                   # Arch
# brew install librtlsdr                   # macOS

git clone <the repository>  bandsaunter
cd bandsaunter
python3 -m venv .venv
. .venv/bin/activate
pip install .                              # a few wheels; under a minute

That installs four wheels — numpy, scipy, rich, PyYAML — and puts two commands on the path, bandsaunter and saunterbrowse. Nothing is built from source.

Use pip install -e . instead if you intend to change the code.

The commands only exist while the environment is active. To have them always, install with pipx instead, which keeps its own environment and puts the commands on your path permanently:

sudo apt install pipx && pipx install /path/to/bandsaunter

As a last resort — a throwaway machine, a container — pip install --break-system-packages . overrides the refusal. It puts the dependencies in among the system ones, which is what the warning is about.


Check that it worked

bandsaunter --version
bandsaunter bands                  # the built-in US band plan; no hardware needed
bandsaunter scan -b 2m --simulate  # a whole scan against a synthetic band
bandsaunter adsb --simulate --seconds 30
bandsaunter flights                # draws what the last command heard

With a receiver plugged in:

bandsaunter devices                # should list the dongle
bandsaunter devices --test         # opens it and captures a block
bandsaunter                        # interactive setup, then scanning

bandsaunter devices is the command to run when something is wrong: it says whether librtlsdr loaded, whether a dongle was found, and what to do about it if not.


Optional dependencies

Everything below is genuinely optional. The program starts, scans, records, identifies, decodes Morse and draws waterfalls with none of it, and says plainly when a feature is unavailable rather than failing.

Install Gives you Without it
sudo apt install espeak-ng clearer spoken timestamps on combined recordings, rendered about three times faster a built-in formant synthesiser does the same job, less clearly
sudo apt install ffmpeg bandsaunter flights --out sky.mp4 writes a video a GIF is written instead, and it says so
sudo apt install rtl-sdr rtl_test, rtl_sdr and friends, for diagnosing hardware nothing missing from bandsaunter itself
pip install faster-whisper speech transcription of recorded voice — see the step-by-step below (~250 MB installed, plus a 148 MB model) transcription is off; scans report that no recogniser is installed
pip install vosk a smaller, weaker recogniser (~10 MB plus a 40 MB model) as above
sudo apt install python3-pyqt6 the realtime aircraft window (bandsaunter adsb --window) the terminal board still shows every aircraft, and the maps are still drawn afterwards
pip install pyte the terminal-resize tests those tests skip

The aircraft window needs Qt, and any of four bindings will do — PyQt6, PyQt5, PySide6 or PySide2 — because distributions disagree about which they package. python3-pyqt6 on Debian and Fedora, python-pyqt6 on Arch, or pip install PyQt6 in the environment bandsaunter runs from. Without it the window is the only thing missing, and the program says so rather than failing.

Aircraft and callsign lookups need no installation, only a network. They ask public registers about a callsign or a 24-bit address and cache the answers for a month; --no-lookup turns them off, and what the address and the callsign say on their own is worked out offline either way.


Speech transcription, step by step

This is the only part with a real download in it, and the only part Debian cannot supply, so it gets its own section. Two pieces are needed: the recogniser (a Python package) and the model it loads (the weights). Scanning, recording, identifying and CW decoding all work without either.

Step 1 — install the recogniser where bandsaunter can see it

The recogniser must go into the same environment bandsaunter itself runs from, or bandsaunter will not find it.

If you installed into a virtual environment:

. .venv/bin/activate                 # the same one bandsaunter is in
pip install faster-whisper

If you installed for your user with pip install --user (the layout this project was developed with, everything under ~/.local):

pip install --user --break-system-packages faster-whisper

--break-system-packages is what gets past the PEP 668 refusal described above; with --user it writes to ~/.local/lib/python3.x/site-packages and touches nothing the distribution owns.

This pulls in ctranslate2, av, huggingface-hub, tokenizers and onnxruntime — about 250 MB installed, no compiler needed, all wheels.

Step 2 — check bandsaunter can see it

bandsaunter transcribe --engines
 engine          installed  how to get it
 faster-whisper  yes        pip install faster-whisper  (best on radio audio)
 whisper         no         pip install openai-whisper
 whisper-cli     no         whisper.cpp, no Python dependencies
 vosk            no         pip install vosk  (small, weaker on noisy audio)
 pocketsphinx    no         pip install pocketsphinx  (tiny, poor on radio audio)
auto would use faster-whisper

installed: yes against faster-whisper and a last line naming it is the whole test. If it says no while pip says the package is there, they are in different environments — see When it does not work.

Step 3 — get the model

The model is not in the pip package. By default base.en is used, and the first transcription downloads it from Hugging Face (Systran/faster-whisper-base.en) into ~/.cache/huggingface/hub/, about 140 MB. Everything after that is offline.

You can leave it to happen by itself, but a scan that appears to hang for a minute on its first voice capture is unnerving, so it is better to fetch it deliberately:

python3 -c "from faster_whisper import WhisperModel; WhisperModel('base.en', device='cpu', compute_type='int8')"
du -sh ~/.cache/huggingface        # about 140 MB when it has finished

To watch what any engine is doing, including a download in progress:

BANDSAUNTER_ENGINE_OUTPUT=1 bandsaunter transcribe recording.wav --stdout

Model sizes, measured from the repository listings:

Model Download Notes
tiny.en 78 MB fastest; misses words on noisy radio audio
base.en 148 MB the default; keeps up comfortably on an ordinary machine
small.en 486 MB noticeably better on weak signals, several times slower
medium.en 1.5 GB better again; wants a fast machine and patience
large-v3 3.1 GB multilingual, and slow on a CPU

Everything runs on the CPU, at int8 — no GPU, no CUDA, no nvidia packages, on purpose: a scanner should not need a graphics card, and int8 on a CPU keeps up with a scan.

Step 4 — turn it on

bandsaunter transcribe recording.wav --stdout      # one file, straight away
bandsaunter transcribe ~/bandsaunter               # a whole directory
bandsaunter scan -b 2m --transcribe                # during a scan
bandsaunter config transcribe=true                 # or make that the default
bandsaunter config transcribe_model=small.en       # and choose the model

During a scan, transcription runs on its own thread after each recording is written, so it never holds up the sweep. Transcripts land beside the audio as <recording>_transcription.txt, and saunterbrowse shows them.

Doing it without a network, or on many machines

./packaging/build-repo.sh collects the recogniser and the model into two Debian packages, so no machine you install on ever reaches the network:

MODEL=base.en ./packaging/build-repo.sh      # any size from the table above

That produces bandsaunter-transcribe (the wheels, unpacked into /usr/lib/bandsaunter/vendor) and bandsaunter-model-base-en (the weights, in /usr/share/bandsaunter/models/base.en), and an apt repository serving them alongside bandsaunter itself. Both are Recommends, so a plain apt install bandsaunter from that repository brings the lot.

For a machine that is not using apt, copy the model directory anywhere and point at it:

export BANDSAUNTER_MODEL_DIR=/opt/models        # holds base.en/, small.en/ ...
bandsaunter config transcribe_model=/opt/models/base.en    # or an outright path

A model name that matches a directory under BANDSAUNTER_MODEL_DIR is used from disk; anything else is left to the recogniser to download.

A smaller alternative

vosk is a tenth of the size and much weaker on the noisy, clipped audio radio produces. It is worth it on a Raspberry Pi and not otherwise:

pip install vosk                                  # ~10 MB
bandsaunter config transcribe_engine=vosk

It fetches its own small model on first use, by language; point transcribe_model at an unpacked model directory to use a specific one.


When it does not work

externally-managed-environment from pip. Use a virtual environment or pipx, as above. This is the distribution protecting its own Python, not a problem with bandsaunter.

bandsaunter transcribe --engines says no although pip installed it. The recogniser went into a different environment from bandsaunter. Ask each of them where it is and compare:

python3 -c "import bandsaunter, sys; print(sys.executable); print(bandsaunter.__file__)"
python3 -c "import faster_whisper; print(faster_whisper.__file__)"

Install the recogniser with the same pip that owns the first path — the venv's pip for a venv install, pip install --user --break-system-packages for a ~/.local one. On a .deb install, bandsaunter runs as the system python3 and looks in /usr/lib/bandsaunter/vendor as well, which is what the bandsaunter-transcribe package fills.

The first transcription takes a minute and prints nothing. It is downloading the model. BANDSAUNTER_ENGINE_OUTPUT=1 shows the progress, and Step 3 above fetches it deliberately instead.

librtlsdr was not found. Install it: librtlsdr0 on Debian/Ubuntu, rtl-sdr on Fedora and Arch, brew install librtlsdr on macOS. Everything that does not touch the receiver keeps working without it.

bandsaunter devices finds nothing, or cannot open the dongle. Almost always the DVB-T driver, which claims these dongles the moment they are plugged in:

echo 'blacklist dvb_usb_rtl28xxu' | sudo tee /etc/modprobe.d/blacklist-rtl.conf
sudo rmmod dvb_usb_rtl28xxu

Then unplug and replug the receiver. The .deb does this for you.

Permission denied opening the device. On Debian and Ubuntu the librtlsdr0 package installs the udev rule that grants access, so this is rare; if you built librtlsdr yourself, you need the rule from its source tree in /etc/udev/rules.d, then sudo udevadm control --reload and a replug.

Nothing is recorded. That is usually correct behaviour rather than a fault: captures are kept only when they carry voice, decodable CW or an identified digital scheme. bandsaunter scan -b 2m --simulate proves the whole path end to end without an aerial.


Running the tests

pip install pytest pyte
python3 -m pytest tests/ -q

About 1500 tests and around fifteen minutes; they need no hardware and no network.


Licence

GNU General Public License, version 3 or later. The full text is in LICENSE, and in an installed package at /usr/share/doc/bandsaunter/copyright.