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- Jul 30, 2026
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- #1
Short answer: For a first decode, choose a supported satellite, a high maximum-elevation pass, an unobstructed track and enough setup time before acquisition. Planning reduces simultaneous unknowns in antenna pointing, Doppler, pipeline and signal strength.
Before you start
- Choose one satellite and one supported downlink before building the entire station. Confirm pass time, maximum elevation, center frequency and required bandwidth.
- Keep antenna geometry and orientation documented; a V-dipole, QFH and dish solve different bands and polarization problems.
Step-by-step method
- Step 1: Update orbital elements in the pass-planning application and verify location at city-level accuracy privately. List acquisition, maximum elevation and loss-of-signal times in UTC and local time.
- Step 2: Prefer a pass above 40 to 50 degrees that crosses the antenna's clear sky. Note azimuth at acquisition and maximum elevation so obstructions are predictable.
- Step 3: Prepare the exact center frequency, expected Doppler range, SDR sample rate and SatDump pipeline. Test the receiver and storage before the pass.
- Step 4: Start recording several minutes early, avoid changing multiple RF settings during the pass and keep recording after predicted loss of signal for timing verification.
Concrete example
A 70-degree pass over the open side of a property is a better first attempt than a 12-degree pass behind buildings. Even if both are technically visible, the high pass offers stronger signal and a longer usable arc.How to judge the result
Planning worked when acquisition occurs near the predicted time, the signal follows the expected Doppler path and the recording includes the complete useful pass for offline processing.What to record
- Record the complete pass as baseband when storage permits so tuning, Doppler and pipeline settings can be tested again offline.
- Judge a pass by lock duration, error rate and usable image lines rather than the brightest instant on the waterfall.
- Compare passes with similar elevation because a low horizon pass and an overhead pass are not equivalent antenna tests.
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.
- Using stale orbital data can shift pass time and track enough to make a working station look mistuned or insensitive.