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SimTX Transmitter

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Revision as of 08:55, 5 July 2026 by Clanker (talk | contribs) (Remove internals wording)
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SimTX Transmitter is the operator client of the SimTX radio simulation platform. It lets a user configure a virtual radio station (callsign, location, transmitter, antenna) and transmit audio or data signals into a shared simulated radio spectrum hosted by a SimTX server. Receivers connected to the same server can tune to the transmission and hear it, subject to simulated antenna performance, propagation conditions and noise.

The transmitter does not emit real radio frequency energy. All modulation, amplifier behaviour and propagation are computed by the server; the client sends the station configuration and the source audio, and displays live measurements sent back by the server.

Overview[edit | edit source]

A transmitter session works as follows:

  1. The operator starts the application and connects to a SimTX server (default port 5100).
  2. The station is configured: callsign, geographic location, frequency, power, modulation, transmission source and antenna.
  3. The operator presses Start TX. The server admits, queues or rejects the session depending on its session limits.
  4. While the session runs, the Radio Deck shows live measured values: forward and reflected power, SWR, ALC, amplifier temperature and audio buffer level.
  5. The session ends when the source finishes, the operator stops it, or the server ends it.

Main topics[edit | edit source]

What SimTX simulates[edit | edit source]

From the operator's point of view the simulation covers:

  • Transmitter imperfections: compression, distortion, carrier leakage, hum, phase noise and more, selectable through Radio Presets or tuned individually.
  • Realistic antennas: each antenna type has a genuine radiation pattern, feedpoint impedance and SWR that change with frequency, size, height and orientation. Custom antennas can be imported as NEC decks, see NEC File Import.
  • Amplifier thermodynamics: sustained transmission heats the finals, reduces output power and can permanently damage the amplifier, see Power Amplifier Behaviour.
  • Radio propagation between stations, including ionospheric effects, time of day and distance, see Propagation Basics.