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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Improved disturbance rejection control based on H_∞ synthesis and equivalentinput-disturbance for aircraft longitudinal autopilot design
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Improved disturbance rejection control based on H_∞ synthesis and equivalentinput-disturbance for aircraft longitudinal autopilot design

机译:基于H_∞综合和等效输入扰动的改进的航空器纵向自动驾驶仪抗扰控制

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摘要

Disturbance rejection control has been developed over decades attracting wide interest and research attention. Aiming at providing a potential engineering application of disturbance rejection control to aircraft control system design following traditional frequency-domain methods, this paper presents an improved disturbance rejection control of two degrees of freedom based on H infinity synthesis and equivalent-input-disturbance for an aircraft longitudinal autopilot design. The mismatched disturbance is transformed as a "total disturbance" in the input channel for compensation through the establishment of an equivalent-input-disturbance system. The H infinity synthesis based on classical frequency-domain analysis is applied to a disturbance filter and a composite feedback controller design. In terms of the controller design, the system including the filter is considered as a whole in H infinity optimization process without separate design to guarantee the stability of the overall system. Furthermore, the proposed method is successfully implemented on the autopilot design by modeling nonlinear aircraft longitudinal dynamics as a linear equivalent-input-disturbance formulation of angle of attack. The simulation of tracking performance in comparison with existing renowned methods is conducted in the presence of aerodynamic uncertainties, gust disturbance, actuator characteristics and sensor noise. The results verify the effectiveness of the proposed method with excellent performance and practical prospects.
机译:干扰抑制控制已经发展了数十年,引起了广泛的兴趣和研究关注。为了在传统频域方法的基础上为飞机控制系统设计提供干扰抑制控制的潜在工程应用,本文提出了一种基于H无穷大合成和等效输入干扰的改进的两自由度干扰抑制控制方法纵向自动驾驶仪设计。通过建立等效输入扰动系统,将失配的扰动在输入通道中转换为“总扰动”,以进行补偿。基于经典频域分析的H无穷大综合应用于扰动滤波器和复合反馈控制器设计。就控制器设计而言,包括滤波器在内的系统在H无穷大优化过程中被视为一个整体,无需单独设计即可保证整个系统的稳定性。此外,通过将非线性飞机纵向动力学建模为攻角的线性等效输入-扰动公式,将所提出的方法成功应用于自动驾驶仪设计。在存在空气动力学不确定性,阵风干扰,执行器特性和传感器噪声的情况下,与现有的著名方法进行了跟踪性能的仿真。结果证明了该方法的有效性,具有良好的性能和实际应用前景。

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