分布式发电用电力电子变换器

Q. Xu, Pengfeng Lin, F. Blaabjerg
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引用次数: 2

摘要

本章综述了分布式发电与智能电网集成的电力电子技术。介绍了典型的电力电子分布式发电系统。光伏转换效率的提高、制造技术的进步和光伏组件成本的降低是光伏发电集约利用的主要动力。本章介绍了并网交流系统中的电力电子变流器及其控制技术。它还提出了电压源转换器的控制策略,其次是多电平转换器和模块化多电平转换器的概述。本章解释了转换器级控制方法和系统级协调。结果表明,集中式控制和分布式控制均可获得系统的频率和电压恢复。随着太阳能光伏发电的日益普及和蓄电池系统的广泛部署,直流微电网得到了逐步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power Electronics Converters for Distributed Generation
This chapter reviews power electronics technology for distributed generation integrated into smart grid. It presents an introduction to typical distributed generation systems with the power electronics. The improvement of photovoltaics (PV) conversion efficiency, advancement in manufacturing technology and reduced cost of PV modules, are the main driving forces for the intensive utilization of PV power. The chapter introduces power electronic converters in grid‐connected AC systems and their control technologies. It also presents control strategies of voltage‐source converters, followed by an overview of multilevel converters and modular multilevel converters. The chapter explains converter level control methodologies and system level coordination. It shows that system frequency and voltage restorations, obtained by both centralized and distributed control schemes. DC microgrids have been progressively developed with the increasing penetration of solar PV power and wide deployment of battery system which are naturally in DC.
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