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Neural networks for designing an automatic voltage regulator of a synchronous generator

机译:用于设计同步发电机自动电压调节器的神经网络

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Automatic voltage regulators (AVRs) are controllers used to maintain consistent voltage at the generator terminals. In general these controllers are designed using linear models. However, power systems are extremely nonlinear and highly complex. Therefore, using nonlinear techniques to design AVR would seem more appropriate. Artificial Neural Networks (ANNs) are nonlinear maps that have the potential to finally make the realisation of practical nonlinear controllers possible. This paper is concerned with the development of a Feedforward Multilayer Perceptron (MLP) Neural Networks and its use as an Automatic Voltage Regulator (AVR) with Power System Stabiliser (PSS). The performance of the MLP-AVR is compared with a conventional AVR. The MLP-AVR shows good performance compared to that of conventional AVR.
机译:自动电压调节器(AVR)是用于在发电机端子上保持一致电压的控制器。通常,这些控制器是使用线性模型设计的。然而,电力系统是极端非线性的并且高度复杂。因此,使用非线性技术设计AVR似乎更合适。人工神经网络(ANN)是非线性映射,有可能最终使实用的非线性控制器的实现成为可能。本文涉及前馈多层感知器(MLP)神经网络的开发及其与带有电源系统稳定器(PSS)的自动电压调节器(AVR)的使用。 MLP-AVR的性能与常规AVR进行了比较。与常规AVR相比,MLP-AVR显示出良好的性能。

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