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Distributed fault tolerant tracking control for large-scale multi-motor web-winding systems

机译:大型多电机幅绕系统的分布式容错跟踪控制

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This study is concerned with the distributed fault tolerant tracking control for large-scale multi-motor web-winding systems. Firstly, the web-winding system is considered a synthetic system with several dynamic subsystems subject to multiple disturbances and actuator faults. Then, a disturbance compensation-based distributed fault diagnosis scheme is developed to estimate the system actuator faults. By setting the reference outputs, a method of obtaining equilibrium control inputs and equilibrium states is formulated to achieve the distributed variation dynamic model at equilibrium points by Taylor expansion. Based on the estimated actuator faults, an effective distributed fault tolerant control strategy is proposed by the techniques of interval matrix and disturbance local compensation. Sufficient conditions of asymptotic stability of the estimation error systems and the closed-loop systems are derived based on the Lyapunov theory. A fault diagnosis observer and a fault tolerant controller gain matrices are obtained by solving the linear matrix inequalities. Finally, simulations and analysis are performed on the three-motor web-winding system to verify the effectiveness of the proposed distributed fault tolerant control strategy.
机译:这项研究涉及到大型多电机幅绕系统的分布式容错跟踪控制。首先,卷筒纸卷绕系统被认为是具有多个动态子系统的综合系统,该子系统会受到多种干扰和执行器故障的影响。然后,开发了一种基于扰动补偿的分布式故障诊断方案来估计系统执行器故障。通过设置参考输出,制定了一种获得平衡控制输入和平衡状态的方法,以通过泰勒展开来实现平衡点处的分布变化动态模型。基于估计的执行器故障,通过区间矩阵和扰动局部补偿技术,提出了一种有效的分布式容错控制策略。基于李雅普诺夫理论,推导了估计误差系统和闭环系统的渐近稳定性的充分条件。通过求解线性矩阵不等式,获得了故障诊断观察者和容错控制器增益矩阵。最后,对三电机网络绕线系统进行了仿真和分析,以验证所提出的分布式容错控制策略的有效性。

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