Modeling and attitude control of aircraft with variations in mass and center of gravity

Xiaoke Yang, Youwu Zhong, Lingyu Yang, Jing Zhang, Gongzhang Shen
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引用次数: 23

Abstract

Large scale variations in the mass or center of gravity (C.G.) pose serious problems for the control of aircraft in situations as heavy load airdrop on cargo aircraft, the airliners which employ the active C.G. control technology, aircraft with structural damages during the flight. To solve the problem of attitude control of such aircraft, a general model for the aircraft is established and a disturbance rejection attitude controller is proposed. The proposed model comprises of a 6-DOF dynamics model and the mass and C.G. variation model, which can handle various mass or C.G. variations and can reflect the dynamic couplings introduced by such variations. For the attitude control of such aircraft, based on the framework of observation and compensation, an explicit model following controller with the extension of extended state observer (ESO) is established. Real-time simulations demonstrate that the proposed model can accurately reflect the aircrafts dynamic responses during the variations, and with the compensation from the ESO, the model following controller can improve the performance and meet the requirements of precision attitude control.
具有质量和重心变化的飞行器建模和姿态控制
在载重空投、采用主动重心控制技术的客机、在飞行过程中结构损坏的飞机等情况下,质量或重心的大尺度变化给飞机的控制带来了严重的问题。为解决该类飞行器的姿态控制问题,建立了该飞行器的通用模型,提出了抗扰姿态控制器。该模型由六自由度动力学模型和质量与重心变化模型组成,能够处理各种质量或重心变化,并能反映这种变化所带来的动力学耦合。针对该类飞行器的姿态控制,基于观测补偿框架,建立了带扩展状态观测器(ESO)扩展的显式模型跟随控制器。仿真结果表明,该模型能较好地反映飞行器在变化过程中的动态响应,在ESO的补偿下,模型跟随控制器的性能得到改善,满足精度姿态控制的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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