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超低空重装空投纵向自抗扰控制
引用本文:赵世伟,孙秀霞,贾文铜,路耀军.超低空重装空投纵向自抗扰控制[J].火力与指挥控制,2017,42(4).
作者姓名:赵世伟  孙秀霞  贾文铜  路耀军
作者单位:1. 空军工程大学航空航天工程学院,西安,710038;2. 解放军93802部队,陕西 咸阳,712201
基金项目:国家自然科学基金,航空科学基金资助项目
摘    要:针对超低空重装空投过程中,货物的持续移动及瞬间出舱对载机产生的干扰力矩严重影响空投任务的完成性甚至危及飞行安全的问题,提出了一种基于自抗扰理论的超低空空投运输机纵向控制律设计方法。将气动参数摄动、未建模动态等不确定因素都归结为"未知扰动",利用扩张状态观测器对扰动进行实时估计和补偿,实现了飞机内环速度和俯仰角的解耦控制,保证了系统鲁棒性,结合外环PID高度保持控制器完成整个飞行控制系统的设计。数值仿真结果表明,该系统具有良好的响应特性,且对系统不确定性具有较强的鲁棒性。

关 键 词:超低空空投  解耦控制  自抗扰控制  鲁棒性

Active Disturbance Rejection Control for Longitudinal Movement of Ultra-low Altitude Heavyweight Airdrop
ZHAO Shi-wei,SUN Xiu-xia,JIA Wen-tong,LU Yao-jun.Active Disturbance Rejection Control for Longitudinal Movement of Ultra-low Altitude Heavyweight Airdrop[J].Fire Control & Command Control,2017,42(4).
Authors:ZHAO Shi-wei  SUN Xiu-xia  JIA Wen-tong  LU Yao-jun
Abstract:In order to dealing with the influence on the airdrop task implementation and the flight safety caused by the continuous movement of cargo and its extraction suddenly during the process of ultra-low altitude heavy-cargo airdrop,a control law for longitudinal movement of ultra-low altitude heavy-cargo airdrop based on Active Disturbance Rejection Control (ADRC) theory is designed. Aerodynamic parameter,unmolded dynamics and other uncertain factors are boiled to"unknown disturbance",and which are real-time estimated and compensated through the extent state observer (ESO)to achieve the decoupling control of the velocity and the pitching angle within the inner circle, which guarantees the robustness of the system. Combining with the PID altitude holder for outer ring, the controller realizes the whole control system. The simulation results provide sufficient support to the effectiveness and robustness of this proposed controller.
Keywords:ultra-low-altitude airdrop  decoupling control  active disturbance rejection control (ADRC)  robustness
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