A Review of Control Methods for Inverters Parallel Operation

Changmao Hou, Bin Zou, Yongchao Zhao, Po Wang
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Abstract

With the increasing demands of modern industrial society on the capacity and reliability of the power supply system, distributed power supply system control technology has emerged. In the context of a large number of mature power electronics technologies, power systems are gradually evolving into power electronics, and more and more power electronic devices are emerging in power systems. In today's power technology transformation field, multi-inverter parallel operation control technology has become a research trend. It can not only expand the power supply capacity but also makes the system more stable and reliable. Firstly, this paper introduces the main problem of parallel operation of multi-inverter, namely the circulation between inverters. According to the analysis of the circulation problem, the control method of the parallel operation of a multi-inverter is introduced. The non-interconnected control technology of drooping control has obvious advantages and development potential. Finally, according to the principle of drooping control, some new improved control methods are introduced, and it is pointed out that drooping control technology will become the mainstream of the development of parallel control technology of inverter in the future, and the development trend of this kind of control technology is forecasted.
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逆变器并联运行控制方法综述
随着现代工业社会对供电系统容量和可靠性的要求越来越高,分布式供电系统控制技术应运而生。在大量成熟电力电子技术的背景下,电力系统逐渐向电力电子发展,越来越多的电力电子器件出现在电力系统中。在当今电力技术改造领域,多逆变器并联运行控制技术已成为一种研究趋势。它不仅可以扩大供电容量,而且使系统更加稳定可靠。本文首先介绍了多台逆变器并联运行的主要问题,即逆变器之间的循环问题。通过对循环问题的分析,介绍了多逆变器并联运行的控制方法。下垂控制的非互联控制技术具有明显的优势和发展潜力。最后,根据下垂控制的原理,介绍了一些新的改进控制方法,指出下垂控制技术将成为未来逆变器并联控制技术发展的主流,并对这种控制技术的发展趋势进行了预测。
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