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Reliable gain-scheduled control of discrete-time systems and its application to CSTR model

机译:离散时间系统的可靠增益调度控制及其在CSTR模型中的应用

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摘要

This paper is focused on reliable gain-scheduled controller design for a class of discrete-time systems with randomly occurring nonlinearities and actuator fault. Further, the nonlinearity in the system model is assumed to occur randomly according to a Bernoulli distribution with measurable time-varying probability in real time. The main purpose of this paper is to design a gain-scheduled controller by implementing a probability-dependent Lyapunov function and linear matrix inequality (LMI) approach such that the closed-loop discrete-time system is stochastically stable for all admissible randomly occurring nonlinearities. The existence conditions for the reliable controller is formulated in terms of LMI constraints. Finally, the proposed reliable gain-scheduled control scheme is applied on continuously stirred tank reactor model to demonstrate the effectiveness and applicability of the proposed design technique.
机译:本文针对一类具有随机发生的非线性和执行器故障的离散时间系统,进行可靠的增益调度控制器设计。此外,假设系统模型中的非线性是根据伯努利分布随机发生的,并且具有可实时测量的时变概率。本文的主要目的是通过实现依赖于概率的Lyapunov函数和线性矩阵不等式(LMI)方法来设计增益调度控制器,从而使闭环离散时间系统对于所有允许的随机发生的非线性随机稳定。可靠控制器的存在条件是根据LMI约束条件制定的。最后,将所提出的可靠的增益计划控制方案应用于连续搅拌釜反应器模型,以证明所提出的设计技术的有效性和适用性。

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