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One approach to cascade framework design within control structure reconfiguration in faulty systems

机译:故障系统中控制结构重配置中级联框架设计的一种方法

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The paper is concerned with the problem of control structure reconfiguration to retain fault tolerance in control of linear continuous-time systems. Following the concept of fault tolerant control systems the main idea is to use the nominal system model output as a reference to be followed when a fault occurs, while the nominal control loop is kept untouched and the nominal controller remains part of the reconfigured control loop. Since only the estimation error, obtained as a difference between the measured and nominal output, is used for the fault covering, the state control principe is proposed for nominal control and static output control principe for reconfiguration control law. Using an extended form of Lyapunov function, the modified design conditions are introduced and proven in the paper. The approach also unifies optimization in static output control design, which ensures stability and desired performances. The results, offering the sufficient and necessary design conditions, are illustrated with a numerical example to note the effectiveness of the proposed approach.
机译:本文关注控制结构的重构问题,以在线性连续时间系统的控制中保持容错能力。遵循容错控制系统的概念,主要思想是使用标称系统模型输出作为故障发生时要遵循的参考,而标称控制回路保持不变,标称控制器仍是重新配置的控制回路的一部分。由于仅将估计误差作为测量值和标称输出之间的差值获得,用于故障覆盖,因此建议状态控制原理用于标称控制,而静态输出控制原理用于重构控制律。使用扩展形式的Lyapunov函数,引入了修改的设计条件,并在本文中进行了证明。该方法还统一了静态输出控制设计中的优化,从而确保了稳定性和所需的性能。通过数值示例说明了提供充分和必要的设计条件的结果,以说明所提出方法的有效性。

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