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首页> 外文期刊>Electric power systems research >Robust decentralized neural networks based LFC in a deregulated power system
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Robust decentralized neural networks based LFC in a deregulated power system

机译:稳压电源系统中基于LFC的鲁棒分散神经网络

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摘要

In this paper, a decentralized radial basis function neural network (RBFNN) based controller for load frequency control (LFC) in a deregulated power system is presented using the generalized model for LFC scheme according to the possible contracts. To achieve decentralization, the connections between each control area with the rest of system and effects of possible contracted scenarios are treated as a set of input disturbance signals. The idea of mixed H_2/H_∞ control technique is used for the training of the proposed controller. The motivation for using this control strategy for training the RBFNN based controller is to take large modeling uncertainties into account, cover physical constraints on control action and minimize the effects of area load disturbances. This newly developed design strategy combines the advantage of the neural networks and mixed H_2/H_∞ control techniques to provide robust performance and leads to a flexible controller with simple structure that is easy to implement. The effectiveness of the proposed method is demonstrated on a three-area restructured power system. The results of the proposed controllers are compared with the mixed H_2/H_∞ controllers for three scenarios of the possible contracts under large load demands and disturbances. The resulting controller is shown to minimize the effects of area load disturbances and maintain robust performance in the presence of plant parameter changes and system nonlinearities.
机译:本文基于广义的LFC方案模型,根据可能的合同,提出了一种基于分散径向基函数神经网络(RBFNN)的去调节电力系统负荷频率控制(LFC)控制器。为了实现分散,将每个控制区域与系统其余部分之间的连接以及可能发生的收缩情况的影响视为一组输入干扰信号。 H_2 /H_∞混合控制技术的思想用于训练所提出的控制器。使用这种控制策略来训练基于RBFNN的控制器的动机是要考虑到较大的建模不确定性,涵盖控制动作的物理约束,并最大程度降低区域负荷干扰的影响。这种新开发的设计策略结合了神经网络的优势和混合的H_2 /H_∞控制技术,可提供强大的性能,并提供一种结构简单,易于实现的灵活控制器。在三区域重组电力系统上证明了该方法的有效性。将所提出的控制器的结果与混合H_2 /H_∞控制器的结果进行比较,以分析在大负载需求和扰动下三种可能的合同情况。结果表明,在存在工厂参数变化和系统非线性的情况下,所得的控制器可最大程度地降低区域负荷干扰的影响并保持稳定的性能。

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