@inproceedings{9f20b1d385874bfdbbd578209bc055dd,
title = "Optimal Target Enclosing Control against a Fully Unknown Noncooperative Target Satellite",
abstract = "This paper focuses on an enclosing controller design against a noncooperative in-orbit target with fully unknown dynamics and uncertainties by low-thrust satellite formation. By transforming the target-enclosing task into target pursuit part and configuration tracking part, the controller is divided into two layers. Based on the relative states only obtained by measurement, novel funnel-like performance boundaries are proposed to constrain both transient and steady-state performance of the target pursuit error. Meanwhile, by being described as a nonzero-sum differential game, approximate Nash equilibrium strategies achieving an optimal enclosing performance are solved for each enclosing satellite. All the theoretical discoveries have been validated through numerical simulations.",
keywords = "differential game, formation cooperation, prescribed performance, target enclosing, unmanned system",
author = "Bosong Wei and Xiaokui Yue and Zhaohui Dang and Honghua Dai and Zongcheng Liu and Chen Zhao",
note = "Publisher Copyright: {\textcopyright} 2025 IEEE.; 2025 IEEE International Conference on Unmanned Systems, ICUS 2025 ; Conference date: 18-09-2025 Through 19-09-2025",
year = "2025",
doi = "10.1109/ICUS66297.2025.11294476",
language = "英语",
series = "Proceedings of 2025 IEEE International Conference on Unmanned Systems, ICUS 2025",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "1757--1763",
editor = "Rong Song",
booktitle = "Proceedings of 2025 IEEE International Conference on Unmanned Systems, ICUS 2025",
}