Adaptive Voltage Tuning Based Load Sharing in DC Microgrid

Shivam Chaturvedi, D. Fulwani
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引用次数: 4

Abstract

Distributed control of converters is important to achieve plug and play functionality in a dc microgrid. It must ensure proportional load sharing among converters and voltage regulation of the dc bus. Droop control is a conventional distributed control method to achieve load sharing among converters in a dc microgrid. It is realized by reducing the voltage reference, linearly or dynamically, as the load increases. This degrades the voltage regulation as the overall bus voltage decreases as the load increases. In this paper, a sliding mode control based adaptive voltage tuning method is proposed such that the voltage reference is adjusted dynamically above and below the desired dc bus voltage to achieve load sharing. This results in excellent voltage regulation, also the proposed control is realized locally hence it facilitates plug and play functionality. The per unit input current value is exchanged among the neighboring converters. The proposed controller is validated through simulation.
基于自适应电压调谐的直流微电网负荷共享
在直流微电网中,转换器的分布式控制对于实现即插即用功能非常重要。它必须保证变流器之间的比例负载分担和直流母线的电压调节。下垂控制是实现直流微电网各变流器负荷分担的一种传统分布式控制方法。它是通过随着负载的增加而线性或动态地降低基准电压来实现的。随着负载的增加,整体母线电压降低,这降低了电压调节。本文提出了一种基于滑模控制的自适应电压整定方法,在直流母线电压上下动态调节基准电压,实现负载共享。这导致了出色的电压调节,也提出的控制是在本地实现的,因此它有利于即插即用功能。单位输入电流值在相邻的转换器之间交换。通过仿真验证了所提控制器的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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