collaborators
Showing physics.space-phShow all

5 papers · 1 filter

physics.space-ph2026

Solar Cruiser Disturbance Torque Estimation and Predictive Momentum Management

Ping-Yen Shen, Ryan J. Caverly

This paper presents a novel disturbance-torque-estimation-augmented model predictive control (MPC) framework to perform momentum management on NASA's Solar Cruiser solar sail missi…

physics.space-ph2026

Areostationary Satellite Station Keeping Via a Natural Motion Trajectory and Predictive Control

Nathan A. Gall, Robert D. Halverson, Ryan J. Caverly

Areostationary Mars orbit (AMO) satellites will play an important role in future expeditions to the Martian surface due to their strength as navigation and communication satellites…

physics.space-ph2025

Solar Sail Momentum Management With Mass Translation and Reflectivity Devices Using Predictive Control

Ping-Yen Shen, Ryan J. Caverly

Solar sails enable propellant-free space missions by utilizing solar radiation pressure as thrust. However, disturbance torques act on the solar sail and effective attitude control…

physics.space-ph2025

Time-Varying Model Predictive Attitude Control for Magnetically Actuated Dual-Spin Satellites

Robert D. Halverson, Ryan J. Caverly

Attitude control hardware for small satellites is often limited in power and space availability given the importance of the science instruments they exist to transport. To mitigate…

physics.space-ph2024

Autonomous Station Keeping of Satellites in Areostationary Mars Orbit: A Predictive Control Approach

Robert D. Halverson, Avishai Weiss, Gabriel Lundin +1

The continued exploration of Mars will require a greater number of in-space assets to aid interplanetary communications. Future missions to the surface of Mars may be augmented wit…