摘要
To address spacecraft pursuit games in uncertain dynamic space, this paper presents an integrated solution combining robustness analysis and Adaptive Dynamic Programming (ADP). Firstly, a nonlinear relative motion model considering environmental disturbances and target uncertainties is built. Its robustness is enhanced via dimensionless treatment and stochastic disturbance design. Based on lyapunov and Hamilton-Jacobi-Isaacs (HJI) equations, robust optimal control laws for single spacecraft and Nash equilibrium strategies for multi-spacecraft cooperation are devised to ensure asymptotic stability under disturbances. To overcome computational challenges in large state spaces, an ADP framework with Support Vector Regression (SVR) is used. By multi-moment approximation with linear basis functions, efficient policy iteration in a finite time domain is achieved. Numerical simulations show the proposed method performs excellently in spacecraft pursuits, adjusting control commands in real-time against external disturbances and ensuring mission success rates.
| 源语言 | 英语 |
|---|---|
| 页(从-至) | 711-716 |
| 页数 | 6 |
| 期刊 | IFAC-PapersOnLine |
| 卷 | 59 |
| 期 | 20 |
| DOI | |
| 出版状态 | 已出版 - 1 8月 2025 |
| 已对外发布 | 是 |
| 活动 | 23th IFAC Symposium on Automatic Control in Aerospace, ACA 2025 - Harbin, 中国 期限: 2 8月 2025 → 6 8月 2025 |
学术指纹
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