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Nonlinear Multiple Models Adaptive Secondary Voltage Control of Microgrids

机译:非线性多型微电网自适应二次电压控制

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摘要

This article proposes a model-free secondary voltage control (SVC) for microgrids (MG) using nonlinear multiple models adaptive control. Firstly, a linear robust adaptive controller is designed to guarantee the voltage stability in the bounded-input-bounded-output (BIBO) manner so as to meet the operation requirements of MGs. Secondly, a nonlinear adaptive controller is developed to improve the voltage tracking performance with the help of artificial neural networks (ANNs). A switching mechanism for coordinating such two controllers is designed to guarantee the closed-loop stability while achieving accurate voltage tracking. By an online identification based on the input and output data of MGs, the proposed method does not resort to any apriori information of system model and primary control, thus exhibiting good robustness, ease of deployment and disturbance rejection.
机译:本文使用非线性多模型自适应控制提出了用于微电网(MG)的无模型二级电压控制(SVC)。首先,设计线性鲁棒自适应控制器以保证有界输入界限输出(BIBO)方式中的电压稳定性,以满足MGS的操作要求。其次,开发了非线性自适应控制器以提高人工神经网络(ANN)的帮助来改善电压跟踪性能。用于协调这种两个控制器的切换机构旨在保证闭环稳定性,同时实现精确的电压跟踪。通过基于MGS的输入和输出数据的在线识别,所提出的方法不诉诸任何<斜体XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“ http://www.w3.org/1999/xlink“> apriori 系统模型和主要控制信息,从而呈现出良好的鲁棒性,易于部署和扰动拒绝。

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