Grid-mode controller design for a dual-mode inverter interface for a distributed generation source

H. Mataifa, A. Raji, R. Tzoneva
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引用次数: 2

Abstract

Power electronics applications to electric power processing are playing an increasingly indispensable role in the power quality and power reliability enhancement, especially in view of the growing importance of distributed (especially renewable) energy sources' contribution to electric power generation. Grid-interactive distributed generation systems have huge potential to significantly enhance the power supply reliability, especially when effective control of their power electronics interface units enables their efficient operation both when in grid-tie mode and autonomously (i.e. dual-mode operation capability). In this paper, the grid-tie mode operation of a dual-mode power electronic (inverter) interface unit for a distributed generation source is considered. Firstly, requirements underlying the control strategy design for the dual-mode inverter are outlined, highlighting the commonly employed strategies together with their main characteristics. Then the controller design procedure for the grid-tie mode operation is presented, which forms part of the larger-scope dual-mode control strategy design, but not covered in its entirety in this paper. The designed grid-mode controller has been implemented in the Matlab/Simulink software development environment, considering a 15-kVA three-phase power inverter connected to the power utility's distribution network. The results obtained from the computer simulations attest to the designed control system's effectiveness in enabling the distributed generation system to supply high-quality, low-distortion current to the grid.
分布式电源双模逆变器接口并网控制器设计
电力电子技术在电力处理中的应用在提高电能质量和可靠性方面发挥着越来越重要的作用,特别是考虑到分布式(特别是可再生)能源对发电的贡献日益重要。电网交互分布式发电系统具有显著提高供电可靠性的巨大潜力,特别是当对其电力电子接口单元进行有效控制,使其在并网模式和自主模式(即双模式运行能力)下都能高效运行时。本文研究了分布式发电源双模电力电子(逆变器)接口单元并网运行的问题。首先,概述了双模逆变器控制策略设计的基本要求,重点介绍了常用的控制策略及其主要特点。然后给出了并网模式运行的控制器设计过程,这是更大范围的双模控制策略设计的一部分,但本文没有全面介绍。设计的并网型控制器在Matlab/Simulink软件开发环境下实现,以接入电网配电网的15kva三相逆变器为例。计算机仿真结果表明,所设计的控制系统能够有效地使分布式发电系统向电网提供高质量、低失真的电流。
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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