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Adaptive Robust Fault-Tolerant Synchronization Control for a Dual Redundant Hydraulic Actuation System with Common-Mode Fault

机译:具有共模故障的双冗余液压执行系统的自适应鲁棒容错同步控制

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摘要

This paper investigates the fault-tolerant synchronization control (FTSC) problemfor a dual redundant hydraulic actuation system (DRHAS), which works on active/active (A/A) mode and suffers from a kind of common-mode fault (CMF), i.e., internal leakage faults occurring in both hydraulic actuator (HA) channels simultaneously due to a common cause. Firstly, in order to follow the position command and synchronize the force outputs of the two channels, a desired trajectory generator derived from the dynamics of the control surface is employed. Then, considering model uncertainties and nonlinear dynamics of the plant, an FTSC controller is designed based on adaptive robust control (ARC) theory and backstepping technology. The controller parameters, closely related to the fault parameters, are updated online to make the controller adapt to the fault condition only when the system performance degradation exceeds a prescribed tolerable level. It has been verified that the proposed FTSC scheme can guarantee the bounded stability of output tracking error system under common-mode fault. Finally, simulation results under two scenarios demonstrate the effectiveness of the proposed FTSC scheme.
机译:本文研究了双冗余液压致动系统(DRHAS)的容错同步控制(FTSC)问题,该系统工作于主动/主动(A / A)模式,并遭受一种共模故障(CMF),即,由于共同原因,两个液压执行器(HA)通道中同时发生内部泄漏故障。首先,为了遵循位置指令并使两个通道的力输出同步,采用了从控制面的动力学中得出的理想轨迹发生器。然后,考虑模型不确定性和工厂的非线性动力学特性,基于自适应鲁棒控制(ARC)理论和反推技术设计了一种FTSC控制器。与故障参数密切相关的控制器参数将在线更新,以使控制器仅在系统性能下降超过规定的可容忍水平时才适应故障条件。实验证明,提出的FTSC方案能够保证共模故障下输出跟踪误差系统的有限稳定性。最后,两种情况下的仿真结果证明了所提出的FTSC方案的有效性。

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