Visualize 6-degree-of-freedom (6DoF) spacecraft motion: 3 translational and 3 rotational axes.
Simulates Newton's laws (F=ma) for translation and Euler's equations (τ=Iω̇) for rotation.
Perfect for understanding orbital maneuvers, attitude control, and spacecraft dynamics.
References
Curtis, H. D. (2020). Orbital Mechanics for Engineering Students (4th ed.). Butterworth-Heinemann.
Spacecraft
Initial State
Maneuver
Analysis
Position
Velocity
Attitude
Angular Rates
Forces
Torques
Timing
Translation
Rotation
Position (m)
Velocity (m/s)
Acceleration (m/s²)
Attitude (deg)
Attitude Rate (deg/s)
Angular Acceleration (deg/s²)
Position (m)
Initial:-
Maneuver End:-
Final:-
Velocity (m/s)
Initial:-
Maneuver End:-
Final:-
Total ΔV:-
Attitude (deg)
Initial:-
Maneuver End:-
Final:-
Angular Rates (deg/s)
Initial:-
Maneuver End:-
Final:-
Performance Metrics
Max Acceleration:-
Max Angular Acc:-
Total Distance:-
Time: 0.0 s
30.0x
How to use
Set spacecraft mass and moment of inertia (MoI) in the Spacecraft tab
Define initial position, velocity, and attitude in the Initial State tab
Specify forces, torques, and timing in the Maneuver tab
Adjust simulation time and time step in the Analysis tab
Parameters automatically update the simulation in real-time