一种新型鲁棒级联反应性智能控制器的合成

F. Arshid, A. Memon, M. A. Uqaili, Arshid Habib Malik
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引用次数: 0

摘要

本文为在巴基斯坦运行的加拿大氘铀(CANDU)型核电站(NPP)合成了一种新型智能级联反应性控制器(NICRC)。设计的NICRC是由5个子控制器组成的反应堆功率和慢化剂液位控制器级联配置。提出的NICRC采用智能软计算技术进行设计。CANDU核电站原有的反应性控制器是在可编程控制器(PLC)上实现的网络化控制器。新型NICRC是基于智能分布式级联功率控制器(IDCPC)和智能级联慢化剂液位控制器(ICMLC)设计的,用于CANDU堆芯慢化剂液位控制。IDCPC由三个神经子控制器组成,ICMLC由两个神经子控制器组成。提出的NICRC采用自适应反向传播前馈神经网络(ABPFNN)设计。利用MATLAB在分布式并行计算环境下对所提出的控制器进行了综合。提出了一种高度复杂的多目标神经网络形式,并对CANDU核电站从冷启动到大功率满负荷运行进行了评估。在CANDU反应堆的慢化剂水平、低对数和蒸汽压力模式完全覆盖的典型瞬态条件下,对高鲁棒NICRC的性能进行了测试和评估,发现在期望的控制范围内性能优异。
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SYNTHESIS OF A NOVEL ROBUST INTELLIGENT CASCADED REACTIVITY CONTROLLER FOR CANDU REACTOR
In this paper, a Novel Intelligent Cascaded Reactivity Controller (NICRC) is synthesized for a CANadian Deuterium Uranium (CANDU) -type Nuclear Power Plant (NPP) operating in Pakistan. The designed NICRC is a cascaded configuration of reactor power and moderator level controllers composed of five sub-controllers. The proposed NICRC is designed using intelligent soft computing technique. The original reactivity controller of CANDU nuclear power plant is a networked controller implemented on a Programmable Logic Controller (PLC). The new NICRC is designed based on two Intelligent Distributed Cascaded Power Controller (IDCPC) and Intelligent Cascaded Moderator Level Controller (ICMLC) for moderator level control in CANDU reactor core. The IDCPC is composed of three neural sub-controllers while ICMLC is composed of two neural sub-controllers. The proposed NICRC is designed using Adaptive Back Propagation Feedforward Neural Network (ABPFNN). The proposed controller is synthesized in a distributed parallel computing environment using MATLAB. The proposed NICRC is formulated in a highly complex multi-objective neural form and evaluated against full power operation of CANDU nuclear power plant from cold start-up to high power. The performance of highly robust NICRC is tested and evaluated for a typical transient providing complete coverage of moderator level, low log and steam pressure modes of CANDU reactor and found excellent within the desired control bands.
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