Astrodynamics MCP vs Astronomy MCP Server | AllMCPs
Side-by-Side Model Context Protocol Comparison
Astrodynamics MCP vs Astronomy MCP Server
In-depth architectural comparison of the Astrodynamics MCP and Astronomy MCP Server MCP servers. Compare execution transports, security boundaries, tool capabilities, quality scores, and ready-to-paste client installation snippets for Claude, Cursor, Windsurf, and VS Code.
At a Glance & Executive Verdict
Astrodynamics MCP
Aerospace & Astrodynamics · Local stdio
Quality: 43/100 (Fair) | Auth: No auth required
Astronomy MCP Server
Aerospace & Astrodynamics · Local stdio
Quality: 52/100 (Good) | Auth: No auth required
Verdict Summary: Choose Astrodynamics MCP if you need specialized Aerospace & Astrodynamics tools running via a local process. Choose Astronomy MCP Server if your workspace requires Aerospace & Astrodynamics integration with local subprocess execution. Both servers can be configured concurrently in your client's mcpServers manifest.
Which MCP Server Should You Choose?
Choose Astrodynamics MCP when:
You need dedicated capabilities in the Aerospace & Astrodynamics domain.
You prefer local stdio subprocess transport architecture.
Your security boundary fits: No auth required (Free / Open Source).
Astrodynamics MCP is categorized under Aerospace & Astrodynamics and uses a local stdio subprocess. In contrast, Astronomy MCP Server belongs to Aerospace & Astrodynamics using local stdio subprocess. Select Astrodynamics MCP when you need capabilities focused on aerospace & astrodynamics and Astronomy MCP Server when you require tools for aerospace & astrodynamics.
State-vector transforms across ICRF / ITRS / GCRS / TEME / CIRS / TIRS / IAU body-fixed frames.
porkchop
(depart × arrive) Δv / C3 grid for interplanetary transfers, ASCII contour, summary or full output.
bplane_target
B-plane element calculation and impulsive targeting for hyperbolic flybys.
satellite_metadata
Physical & provenance metadata (mass, dimensions, COSPAR ID, launch, operator, decay status) for a NORAD ID.
gmat_run_mission
Run a complete GMAT mission; returns a parsed summary, report data, and pointers to large outputs.
gmat_sweep
Parameter sweeps and Monte Carlo (grid / samples / Monte Carlo / Latin hypercube) over a mission.
gmat_execute_script
Escape hatch — run raw GMAT script text and return its reports verbatim; engine errors come back as data.
+13 more tools listed on main page
Astronomy MCP Server Tools (7)
astronomy_get_sky_position
Apparent position of one body or named star for an observer and instant — equatorial (RA/Dec), horizontal (alt/az), ecliptic, plus distance, magnitude, angular diameter, phase, and constellation.
astronomy_get_rise_set
Rise, set, and culmination times for a body at a location, with maximum altitude at transit. For the Sun, also the three twilight pairs (civil/nautical/astronomical).
astronomy_get_moon_phase
Moon phase for an instant: illuminated fraction, phase name, synodic age, phase angle, and the next four quarter phases with timestamps.
astronomy_find_events
Forward search for the next occurrences of one sky-event class: eclipses, equinoxes, solstices, moon quarters, oppositions, conjunctions, greatest elongations, and apsides.
astronomy_list_visible
The one-call "what's up right now" answer: every naked-eye body (and optional bright stars) above the horizon, ranked, annotated, and gated by the Sun's altitude into daylight/twilight/dark.
astronomy_get_ephemeris
*(gated extension)* Time-series ephemeris for a small body (asteroid/comet) or spacecraft via JPL Horizons — covers what the in-process major-body set cannot. Off by default.
astronomy_get_satellite_passes
*(gated extension)* Visible passes of a satellite (by NORAD catalog number, or by a name resolved against the catalog) over an observer, from a CelesTrak GP element set propagated with SGP4 in-process. Off by default.