Investigation of Communication Delay Impact on DC Microgrids with Adaptive Droop Control

Dimitris Baros, Nick Rigogiannis, N. Papanikolaou, Michael Loupis
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引用次数: 3

Abstract

This work aims to investigate the effects of communication delay in a DC microgrid, which operates under an adaptive droop control scheme. A case study of a residential DC microgrid is examined, which is essentially a household prosumer with power generation units, both on site and remotely, energy storage units and various loads. Conventional droop control schemes have been widely adopted in DC microgrids, although they cause voltage deviation, due to the different characteristics of generation units, whereas their performance is sensitive to line impedances. In order to compensate this deviation, while maintaining current sharing accuracy (adapting to line impedances), a distributed secondary controller is considered, which regards only the information of neighboring converters, by the aid of digital communication links. The impact of various communication methods, in terms of communication delay is examined and evaluated via MATLAB/Simulink simulations.
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自适应下垂控制对直流微电网通信延迟影响的研究
本研究旨在研究在自适应下垂控制方案下运行的直流微电网中通信延迟的影响。本文以住宅直流微电网为例进行了研究,该微电网本质上是一个拥有发电装置的家庭产消者,包括现场和远程发电装置、储能装置和各种负载。传统的下垂控制方案在直流微电网中被广泛采用,但由于发电机组的特性不同,它们会产生电压偏差,而它们的性能对线路阻抗很敏感。为了补偿这种偏差,在保持电流共享精度(适应线路阻抗)的同时,考虑利用数字通信链路只考虑相邻变换器信息的分布式二级控制器。通过MATLAB/Simulink仿真分析了各种通信方式对通信延迟的影响。
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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