Kinematics Control of Electromagnetic Formation Flight Using Angular-Momentum Conservation Constraint
Abstract
Electromagnetic formation flight (EMFF) uses the electromagnetic force to control the relative positions of multiple satellites without using conventional fuel-based propulsion. To compensate for the electromagnetic torque generated alongside the electromagnetic force, in most previous studies, all satellites were assumed to have reaction wheels (RWs) besides electromagnetic coils. However, the RW-loaded angular momentum becomes non-uniformly distributed among the satellites, because the electromagnetic torque usually differs between satellites. Without a proper control scheme, this deviation increases over time, and the RWs become saturated quickly, preventing the attitudes of the satellites from being controlled. In this study, a new controller is proposed that enables the electromagnetic force and torque to be controlled simultaneously. The EMFF kinematics derived from the conservation of angular momentum are used for the controller design. This controller can control satellites without saturating the RWs, and only one set of RWs is required among all satellites. The combination of the proposed controller with a simple unloading control exclusive to the chief satellite results in the elimination of the accumulation of angular momentum in the entire system. The effectiveness of the proposed controller is demonstrated through numerical simulations of the formation maintenance and formation reconfiguration of a five-satellite system.
Cite
@article{arxiv.2512.08949,
title = {Kinematics Control of Electromagnetic Formation Flight Using Angular-Momentum Conservation Constraint},
author = {Yuta Takahashi and Hiraku Sakamoto and Shin-ichiro Sakai},
journal= {arXiv preprint arXiv:2512.08949},
year = {2025}
}
Comments
Accepted for publication in AIAA Journal of Guidance, Control, and Dynamics. This is the author's accepted manuscript. The version of record is available at: https://arc.aiaa.org/doi/10.2514/1.G005873