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A novel structure design and control strategy for an aircraft active sidestick

机译:飞机主动侧杆的新型结构设计和控制策略

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摘要

This paper is concerned with a new design of an aircraft active sidestick based on Permanent Magnet Synchronous Machine (PMSM) and proposes an innovative robust control strategy based on an adaptive optimal sliding mode controller. Indeed, such an application requires high performance specifications which impose many constraints (torque, torques ripples, temperature). Here, a new design for the sidestick actuator is provided with a specific structure: a double airgap rotating one adapted to the considered process. Then, an optimization is performed to enhance the set of specifications of the PMSM w.r.t the aeronautical application. Also, a new adaptive optimal robust control for the designed actuator is provided based on the linear quadratic approach combined with the sliding mode control method. Then, an adaptive disturbances rejection is performed with the proposed strategy. Due to the considered design of the actuator (1/12 of a complete PMSM), a position control is achieved based on the LQRSliding mode approach to meet the required performances and to manage the plant parameter variation and load disturbances. Also, a varying parameter is used to adapt "on-line" the considered control to the varying level of disturbance that affect the system. First simulation results of the considered strategy applied to the newly designed actuator (compared to other strategies) proves the efficiency of the proposed solution for position control of the actuator and robustness considering load disturbances.
机译:本文关注基于永磁同步电机(PMSM)的飞机主动侧杆的新设计,并提出了一种基于自适应最优滑模控制器的创新鲁棒控制策略。实际上,这样的应用需要高性能规格,该规格施加了许多限制(扭矩,扭矩波动,温度)。此处,侧杆执行器的新设计具有特定的结构:双重气隙旋转,适用于所考虑的过程。然后,执行优化以增强航空应用的PMSM规格集。此外,基于线性二次方法结合滑模控制方法,为设计的执行器提供了一种新的自适应最优鲁棒控制。然后,采用提出的策略进行自适应干扰抑制。由于考虑了执行器的设计(完整PMSM的1/12),基于LQRSliding模式方法实现了位置控制,以满足所需的性能并管理工厂参数变化和负载干扰。而且,使用变化的参数来使所考虑的控制“在线”适应影响系统的变化的干扰水平。应用于新设计的执行器的已考虑策略的第一模拟结果(与其他策略相比)证明了所提出的解决方案对于执行器位置控制和考虑负载扰动的鲁棒性的效率。

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