Active Disturbance Rejection Control of Nuclear Pressurized Water Reactor for Power Generation

S. Ahmad, K. Abdulraheem, Andrei Olegovich Tolokonsky, Hafiz Ahmed
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引用次数: 2

Abstract

Control design for pressurized water reactor (PWR) is difficult due to associated non-linearity, modelling uncertainties and time-varying system parameters. Extended state observer (ESO) based active disturbance rejection control (ADRC) presents a simple and robust control solution which is almost model free and has few tuning parameters. However, conventional ESO suffers from noise over-amplification in the obtained estimates due to high-gain construction which in turn degrades the noise sensitivity of the closed-loop system and limits the achievable dynamic performance in practical scenarios. To overcome this problem, two recent techniques namely cascade ESO (CESO) and low-power higher-order ESO (LHESO) are implemented for control of PWR. Simulation analysis conducted in MATLAB illustrates the performance improvement obtained over conventional ESO based ADRC. Extensive simulation analysis is also conducted to investigate robustness towards parametric uncertainties.
核电压水堆发电用自抗扰控制
由于压水堆系统的非线性、建模不确定性和系统参数的时变,压水堆的控制设计非常困难。基于扩展状态观测器(ESO)的自抗扰控制(ADRC)提供了一种简单、鲁棒的控制方案,该方案几乎不受模型约束,且只需要很少的可调参数。然而,传统的ESO由于高增益结构,在得到的估计中存在噪声过度放大的问题,这反过来降低了闭环系统的噪声灵敏度,限制了实际情况下可实现的动态性能。为了克服这一问题,采用了级联ESO (CESO)和低功率高阶ESO (LHESO)两种新技术来控制压水堆。在MATLAB中进行的仿真分析表明,与传统的基于ESO的自抗扰控制器相比,该方法的性能得到了改善。还进行了广泛的仿真分析,以研究对参数不确定性的鲁棒性。
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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