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Decentralized robust control of a class of nonlinear systems and application to a boiler system

机译:一类非线性系统的分散鲁棒控制及其在锅炉系统中的应用

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摘要

This paper presents a scheme for designing a robust decentralized controller for an industrial utility boiler system. First, a new method for designing linear robust decentralized controllers for a class of nonlinear systems is presented. For systems in this class the feedthrough matrix, D is not equal to zero. By using a descriptor system representation, the system is converted into a system with D = 0. Then, sufficient conditions for closed-loop stability, and asymptotic output tracking over the operating-range of the system are obtained. Satisfaction of these conditions is formulated as an optimization problem with LMI constraints. By solving the optimization problem, a decentralized controller for the system can be calculated. In order to control a utility boiler, an identified model of the utility boiler is considered. The identified model is nonlinear, second order, and captures all the characteristics of the real system, including shrink and swell phenomenon, non-minimum phase behavior, and instability. Using the proposed methodology, a decentralized robust controller is designed for the identified model. Thereafter, the designed controller is applied to the simulation model of the real system. The simulation results show excellent input tracking and disturbance rejection.
机译:本文提出了一种用于工业锅炉系统的鲁棒分散控制器的设计方案。首先,提出了一种为一类非线性系统设计线性鲁棒分散控制器的新方法。对于此类系统,馈通矩阵D不等于零。通过使用描述符系统表示,将系统转换为D = 0的系统。然后,获得了足够的条件以实现闭环稳定性,并在系统的工作范围内跟踪渐近输出。将这些条件的满足公式化为具有LMI约束的优化问题。通过解决优化问题,可以计算出系统的分散控制器。为了控制电站锅炉,考虑了确定的电站锅炉模型。所识别的模型是非线性的二阶模型,并捕获了实际系统的所有特征,包括收缩和膨胀现象,非最小相位行为以及不稳定性。使用所提出的方法,为所识别的模型设计了分散的鲁棒控制器。此后,将设计好的控制器应用于实际系统的仿真模型。仿真结果显示了出色的输入跟踪和干扰抑制能力。

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