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Design of neural network predictive controller based on imperialist competitive algorithm for automatic voltage regulator

机译:基于帝国主义竞争算法的自动电压调节器神经网络预测控制器设计

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This paper proposes the neural network (NN) predictive controller that combines the advantages of NN and predictive control for the automatic voltage regulator (AVR). The NN predictive controller is suggested as a new intelligence controller rather than the conventional controllers for the AVR. This is the first application of the NN predictive controller for AVR. There are five parameters of the NN predictive controller which need a proper tuning to get a good performance by using the NN predictive controller. In recent papers, the parameters of NN predictive controller are typically set by trial and error or by the designer's expertise. The imperialist competitive algorithm (ICA) is introduced in this paper as a new artificial intelligence technique instead of the trial-and-error or the designer's expertise methods to get the optimal parameters of NN predictive controller in order to overcome the deviations of the voltage. The performance of the designed NN predictive controller based on the ICA is compared with the designed NN predictive controller based on the genetic algorithm and the conventional proportional-integral-derivative controller based on Ziegler-Nichols technique. The comparison emphasizes the superiority of the suggested NN predictive controller based on the ICA.
机译:本文提出了基于NN的优点和自动电压调节器(AVR)的神经网络(NN)预测控制器。 NN预测控制器被建议为新的智能控制器而不是AVR的传统控制器。这是AVR的NN预测控制器的第一次应用。 NN预测控制器的五个参数需要适当调谐,通过使用NN预测控制器来获得良好的性能。在最近的论文中,NN预测控制器的参数通常由试验和错误或设计师的专业知识设置。本文将帝国主义竞争算法(ICA)作为一种新的人工智能技术,而不是试用 - 错误或设计师的专业方法来获得NN预测控制器的最佳参数,以克服电压的偏差。基于Ziegler-Nichols技术的基于遗传算法和传统的比例积分控制控制器,将设计的NN预测控制器的设计基于ICA的设计基于ICA的性能进行比较。比较强调了基于ICA的建议的NN预测控制器的优越性。

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