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Evolutionary optimization of fuzzy systems for water level control in the steam generator of nuclear power plant

机译:核电站蒸汽发生器水位控制模糊系统的进化优化。

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Stabilizing water-level of the steam generator in nuclear power plant is a very important problem since dynamics of the system has nonlinear characteristics. Nonminimum phase phenomenon known as 'swell and shrink' effect in the steam generator is more salient in low operating power. The swell and shrink effect is one of main factors for frequent shutdown of the nuclear power plant. In this paper, a new framework for building an intelligent fuzzy controller for stabilizing water-level of steam generator is proposed. In the proposed framework, two fuzzy systems are used and those fuzzy systems are optimized using evolutionary algorithm. The first fuzzy system is a fuzzy model, which is used to approximate the input-output relationship of the real steam generator. After the fuzzy model is obtained, a group of fuzzy controllers is optimized by evolutionary algorithm while performing control test on the obtained fuzzy model.
机译:由于系统的动力学具有非线性特性,因此稳定核电厂蒸汽发生器的水位是一个非常重要的问题。在低工作功率下,蒸汽发生器中称为“膨胀和收缩”效应的非最小相位现象更为明显。膨胀和收缩效应是频繁关闭核电站的主要因素之一。本文提出了一种构建稳定蒸汽发生器水位的智能模糊控制器的新框架。在提出的框架中,使用了两个模糊系统,并使用进化算法对这些模糊系统进行了优化。第一模糊系统是模糊模型,其用于近似真实蒸汽发生器的输入-输出关系。在获得模糊模型后,通过进化算法对一组模糊控制器进行优化,同时对所获得的模糊模型进行控制测试。

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