Satellite Fast Maneuver Control Technology Based on Parallel System

IF 1.1 4区 工程技术 Q3 ENGINEERING, AEROSPACE
Youtao Gao, Jinghe Guo, Zhicheng You, Zezheng Dong, Yi Cheng
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引用次数: 0

Abstract

An on-orbit thrust estimation method of satellite based on parallel system, which can achieve high-efficiency and high-precision thrust estimation, is proposed. A complete satellite maneuvering parallel system framework is constructed. Initially, a real-time artificial model, which is consistent with the actual system, is established. The injection time of maneuvering control is estimated optimally based on the modification of the artificial model with the specific injection time treated as the optimization parameter. The jet time, with the minimum maneuvering error, is obtained. Then, a maneuver strategy is designed and fed back to the actual system. The method based on a parallel system with jet time as the optimal parameter has higher control accuracy than the previous maneuvering control, which only considers the speed increment. Simulation results show that the terminal error of the first maneuver using the parallel system method is less than 100 meters for a maneuvering mission of tens of kilometers.
基于并行系统的卫星快速机动控制技术
提出了一种基于并行系统的卫星在轨推力估计方法,可实现高效率、高精度的推力估计。构建了完整的卫星机动并联系统框架。首先,建立了与实际系统相符的实时人工模型。在对人工模型进行修正的基础上,以特定的喷射时间作为优化参数,对机动控制的喷射时间进行最优估计。得到了机动误差最小的喷射时间。然后,设计机动策略并反馈给实际系统。以射流时间为最优参数的并联系统控制方法比以往只考虑速度增量的机动控制方法具有更高的控制精度。仿真结果表明,对于数十公里的机动任务,采用并联系统方法进行第一次机动的末端误差小于100米。
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来源期刊
CiteScore
2.70
自引率
7.10%
发文量
195
审稿时长
22 weeks
期刊介绍: International Journal of Aerospace Engineering aims to serve the international aerospace engineering community through dissemination of scientific knowledge on practical engineering and design methodologies pertaining to aircraft and space vehicles. Original unpublished manuscripts are solicited on all areas of aerospace engineering including but not limited to: -Mechanics of materials and structures- Aerodynamics and fluid mechanics- Dynamics and control- Aeroacoustics- Aeroelasticity- Propulsion and combustion- Avionics and systems- Flight simulation and mechanics- Unmanned air vehicles (UAVs). Review articles on any of the above topics are also welcome.
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