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- Jul 30, 2026
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- 121
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- #1
Short answer: Start from the authorized frequency range, minimum detectable event, time resolution and retention period. Those requirements determine antenna paths, simultaneous bandwidth, scan strategy, clocking, storage and calibration; one wide-tuning receiver does not automatically monitor the whole band continuously.
Before you start
- Define authorized bands, observation period, minimum signal duration and the measurement you need before selecting hardware.
- Use shielding or conducted RF paths for active security tests whenever over-the-air transmission is unnecessary.
Step-by-step method
- Step 1: Write the bands, occupancy metric, minimum event duration and required amplitude accuracy. Mark signals that must be captured simultaneously rather than sequentially.
- Step 2: Design antennas, preselection, attenuation and gain for each band. Use switching or parallel receivers when one RF path cannot cover dynamic range safely.
- Step 3: Calculate sample and storage rates, processing load and network bandwidth. Decide which data can be reduced to spectra or events and which requires retained I/Q.
- Step 4: Add a stable frequency reference, periodic amplitude calibration, timestamp source and health monitoring. Pilot one band before expanding the station.
Concrete example
A 100 MHz span cannot be continuously observed by a 20 MHz receiver without sweeping or several synchronized channels. Sweeping may miss a 5 ms burst; the requirement decides whether that loss is acceptable.How to judge the result
The design is complete when every required event fits within bandwidth/time coverage, expected levels stay inside linear range and storage plus calibration can be sustained for the retention period.What to record
- Calibrate amplitude with a known source and record frequency-dependent correction; an SDR display is not automatically a traceable power meter.
- Store enough metadata to reproduce each observation: receiver, clock, antenna, gain, bandwidth, location precision and software configuration.
- For occupancy, define threshold, time resolution and treatment of noise before calculating percentages.
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.
- Specifying only the lowest and highest frequency ignores event duration, dynamic range and probability of intercept.