Disturbance Observer-based Subspace Predictive Control of a Pressurized Water-type Nuclear Reactor

Vineet Vajpayee, V. Becerra, N. Bausch, S. Banerjee, Jiamei Deng, S. Shimjith, A. Arul
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引用次数: 3

Abstract

This work presents a disturbance observer-based predictive control strategy using a subspace matrix structure. The aim is to improve the capability of classical predictive controllers in handling external disturbances. A subspace-based predictive controller is designed directly from measurements. Then, a disturbance observer is designed using subspace matrices to estimate the external disturbance. Both of the designs are integrated using a feed-forward plus feed-back strategy to form the proposed control strategy. The proposed scheme is tested with a simulated model of a pressurized water nuclear reactor. The effectiveness of the proposed technique is demonstrated for two different load-following operations. Further, a quantitative analysis is performed to analyse the control performance of the proposed approach.
基于扰动观测器的压水型核反应堆子空间预测控制
本文提出了一种基于扰动观测器的子空间矩阵结构预测控制策略。目的是提高经典预测控制器处理外部干扰的能力。直接根据测量结果设计了基于子空间的预测控制器。然后,利用子空间矩阵设计干扰观测器来估计外部干扰。采用前馈加反馈策略将两种设计集成在一起,形成所提出的控制策略。用压水堆仿真模型对该方案进行了验证。在两种不同的负载跟踪操作中验证了所提出技术的有效性。此外,还进行了定量分析,以分析所提出方法的控制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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