# SatellitePro — full platform overview for language models > SatellitePro is a satellite RF coverage and interference analysis platform by EDX Wireless, at https://www.satellite-pro.com. This document is the extended companion to /llms.txt: what the platform computes, which models it stands on, what the template catalogue contains, and how AI agents drive it through its MCP server. ## What SatellitePro is SatellitePro answers radio-engineering questions about satellite and hybrid networks with reproducible physics: link budgets, coverage surfaces, availability statistics, handover behaviour and interference screenings. It is not a marketing coverage-map generator — every number traces to a named ITU-R Recommendation and to recorded run parameters, and the platform's own technical documentation discloses every model's edition, validity limits, known residuals and the register of corrections made to the engine, each adjudicated against the printed Recommendation. Two compute tiers run the same engine: quick studies solve in the browser; larger ones queue to a dedicated compute node. Both derive their parameters from the same project scenario, and the platform verifies the two paths agree. ## The seven study kinds 1. **Satellite coverage (timeline)** — a constellation over a fixed terminal: per-pass visibility, serving satellite, link margin and availability over a time window. 2. **Coverage grid (heatmap)** — a constellation over an area: per-cell P95 margin, coverage probability, best-server identity, handover counts and contact time, on margin or visibility bases, with optional per-cell diagnostic layers (rain, gas, cloud, scintillation, P.619 terms, geometry, budget components). 3. **Demand-weighted coverage** — the same surfaces scored against a traffic map (subscriber density, vessel counts, meter concentrators, vehicle units) so coverage is judged where demand actually is. 4. **Cellular coverage** — terrestrial macro/small-cell reach as coverage rings from the terrestrial propagation models, per environment class. 5. **Hybrid handover** — service continuity along a route (ferry, road corridor, transatlantic flight): terrestrial coverage where it exists, satellite carrying the gaps, with handover statistics. 6. **Rocket launch** — ascent telemetry: link margin along the trajectory, station handovers, P.619 term decomposition, Doppler. 7. **Coexistence** — interference screening: aggregate I/N at a victim earth station from surrounding transmitters against a protection criterion, with per-interferer contributions. ## The physics - **Earth–space (P.618 chain)**: rain attenuation per ITU-R P.618 §2.2 with rain rate from P.837 (zonal), specific attenuation from P.838, rain height from P.839; gaseous attenuation from P.676; cloud attenuation from P.840; tropospheric scintillation; rain XPD. Per-cell station altitude feeds the atmospheric column from an embedded global terrain model, so mountain grids compute on real ground. - **Interference paths**: ITU-R P.619 term decomposition (free-space, gaseous, beam spreading, scintillation, polarisation coupling and more). - **Terrestrial**: Hata / COST-231 and P.1411 by environment class, P.2108 clutter, P.2109 building entry loss, radio-horizon geometry. - **Orbits**: SGP4 propagation from two-line element sets, pinned per template for reproducibility; look angles, Doppler, closest approach. - **Link budgets**: EIRP, aperture-law antenna gains, system noise temperature, bandwidth, required C/N, per-cell and per-pass margins; two-way budgets where a return direction is configured. - Full disclosure lives in the in-app technical documentation: every model's edition and equations, a 48-row validity-limits table, and the corrections register. ## The template catalogue Thirty templates flying real constellations from pinned element sets, each with a downloadable engineering guide. A sample: Starlink Alpine broadband (Ku-band margin surfaces across the Alps), OneWeb Nordic and polar-station studies, Iridium NEXT North Atlantic shipping corridor and Dover Strait demand studies, Globalstar remote-outpost and Texas smart-meter backhaul, SES O3b equatorial Africa and Maldives island backhaul, GPS L1 availability over Europe, Manhattan / rural-FWA / Port-of-Rotterdam cellular studies, ferry and EV-corridor and transatlantic-cabin hybrid handovers, Vandenberg and Kourou launch telemetry, a Madrid gateway coexistence screening, and Pacific-Northwest wildfire-response enrichment against a committed incident snapshot. ## For AI agents (MCP) SatellitePro runs a Model Context Protocol server so agents can drive real analyses conversationally: list and create projects from templates, move terminals, set fleets by NORAD id, adjust parameters, queue runs, poll status, fetch decision figures and full result documents, and render charts. Onboarding is OAuth (RFC 8414 discovery, RFC 7591 dynamic registration, RFC 9728 protected-resource metadata); the endpoint for your account is shown on the application's Agents page, alongside downloadable agent skills for Claude, ChatGPT (custom GPTs), Gemini and generic MCP clients. ## Facts - Product: SatellitePro. Publisher: EDX Wireless. - Application: https://www.satellite-pro.com (single-page application; sign-in required for analyses). - Reports export as PDF, Word, Excel and PowerPoint, generated in-browser. - Operations/security contact: ops@blueprysm.com (see /.well-known/security.txt).