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首页> 外文期刊>Annals of nuclear energy >Design an anti-windup controller for a PWR power-level control in the presence of control rod speed saturation
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Design an anti-windup controller for a PWR power-level control in the presence of control rod speed saturation

机译:在控制杆速度饱和的情况下设计用于PWR功率水平控制的防饱和控制器

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Control input saturation can cause severe performance degradation and possible instability in a Pressurized Water Reactor (PWR). Therefore, some form of limit protection is needed. This study proposes a dynamic compensation design problem for a PWR subject to control rod speed saturation. Design of this dynamic compensator is based on minimization of a performance index. First, a nonlinear dynamic feedback controller is designed based on feedback linearization. Then based on Parseval's theorem, the dynamic compensator is design such that the auxiliary control law is the same as that without control rod speed saturation. The proposed control approach is applied to a PWR. Simulation results show that the proposed anti-windup scheme is quite effective in presence of input saturation and it has a remarkable performance for tracking reference trajectory. (C) 2019 Elsevier Ltd. All rights reserved.
机译:控制输入​​饱和会导致压水堆(PWR)的性能严重下降并可能不稳定。因此,需要某种形式的限位保护。这项研究提出了一种受压杆速度饱和的压水堆动态补偿设计问题。该动态补偿器的设计基于性能指标的最小化。首先,基于反馈线性化设计了非线性动态反馈控制器。然后根据帕斯瓦尔定理,设计动态补偿器,使辅助控制律与无控制杆速度饱和的控制律相同。所提出的控制方法被应用于压水堆。仿真结果表明,所提出的抗饱和方案在存在输入饱和的情况下是非常有效的,并且在跟踪参考轨迹方面具有显着的性能。 (C)2019 Elsevier Ltd.保留所有权利。

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