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Nonlinear multivariable control of nuclear power plants based on the unknown-but-bounded disturbance model

机译:基于未知但有界扰动模型的核电厂非线性多变量控制

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摘要

A nonlinear control system that is based entirely on the time-domain representation of dynamic systems is proposed for the control of a simplified pressurized-water-reactor (PWR) nuclear power plant model. The initial stage consists of designing several linear control systems using plant models linearized at preselected operating points. A set-theoretic algorithm is used that explicitly treats the control, control rate, and state constraints. The control objective is to design a system that uses only the available control, at the available rate, in the presence of an input disturbance, without violating the prespecified state constraints. The final stage of the design process uses the gain-scheduling technique to implement the linear control systems a global nonlinear control system. The final design is evaluated through transient response simulations using a simplified nonlinear model of a PWR-type nuclear power plant, with encouraging results.
机译:提出了一种完全基于动态系统时域表示的非线性控制系统,用于控制简化的压水反应堆(PWR)核电站模型。初始阶段包括使用在预先选择的操作点处线性化的工厂模型设计几个线性控制系统。使用了一套理论算法,可以明确处理控制,控制速率和状态约束。控制目标是设计一种系统,该系统在存在输入干扰的情况下仅以可用速率使用可用控制,而不会违反预先规定的状态约束。设计过程的最后阶段使用增益调度技术将线性控制系统实现为全局非线性控制系统。通过使用PWR型核电站的简化非线性模型的瞬态响应仿真评估最终设计,并获得令人鼓舞的结果。

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