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- Jul 30, 2026
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- #1
Short answer: Select a local VHF ACARS channel from a current regional source, use AM demodulation with clean unsquelched audio and route it to an ACARS decoder. Frequencies and activity vary by country and airport, so do not copy a distant list without verification.
Before you start
- Confirm that reception and message handling are lawful in your location, and avoid publishing personal or sensitive message content.
- Use the correct channel plan, modulation and decoder for AIS, classic ACARS, VDL Mode 2 or an unknown signal; they are not interchangeable audio decoders.
Step-by-step method
- Step 1: Choose one known active regional channel and tune a nearby airband voice signal first to verify AM reception and antenna performance.
- Step 2: Set AM with roughly 8 to 12 kHz receive bandwidth, accurate frequency correction and moderate manual gain. Keep the signal centered during short data bursts.
- Step 3: Route unprocessed audio to the decoder, disable enhancements and set level below clipping. Open squelch or use a threshold that never cuts the burst preamble.
- Step 4: Run for at least an hour during active flight periods and inspect valid frames. Redact message content, aircraft identifiers and private data before sharing.
Concrete example
A visible burst on a known ACARS frequency that produces no frames should be checked for AM mode, audio sample rate, clipping and squelch before changing antennas. A decoder cannot recover a clipped or truncated burst.How to judge the result
The setup is working when repeated bursts decode with valid framing and timestamps, and the same audio path remains stable across application restarts.What to record
- Record center frequency, sample rate, occupied bandwidth, symbol or burst timing and a short redacted I/Q sample for identification work.
- For AIS and ACARS, compare valid decoded messages over equal periods rather than raw waterfall intensity.
- A signal that stays at the same display offset when the receiver retunes may be an internal spur rather than an over-the-air transmission.
Common mistakes
- Changing several hardware, software or RF variables at once, which removes the controlled comparison needed to identify the cause.
- Treating one autoscaled screenshot or one unusually good result as proof without recording the settings and repeating the test.
- Publishing decoded operational or personal message text can create privacy and legal issues even when reception itself is permitted.