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Overview on resonance characteristics and resonance suppression strategy of multi-parallel photovoltaic inverters

机译:多并联光伏逆变器的谐振特性及抑制策略的概述

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摘要

Photovoltaic(PV) inverters have been widely used in large-scale PV power generation systems to reduce the system mismatch and increase the output power. With the increasing installed capacity of PV power stations, the number of string PV inverters increases, which brings about risk of inverter resonance and influences the quality and stability of multi-parallel inverters grid-connected system. Thus, the problems of multi-parallel inverters resonance have become a hot research topic. This paper is focused on the case of grid-connected string PV inverter systems, and the grid-connected PV inverter resonance where resonance suppression strategy will be analyzed and discussed. Firstly, the structure of string PV inverter and multi-parallel inverters system are presented. Secondly, discussions are made about the model of multi-parallel inverters system and its resonance characteristics based on the multi-input-multi-output(MIMO) system, Norton equivalent circuit and carrier synchronization. Thirdly, two strategies of “inverter level” and “system level” are provided to summarize the multi-parallel inverters resonance suppression strategy. Finally, the development tendency of resonance suppression strategy and conclusions are prospected.
机译:光伏(PV)逆变器已广泛用于大型PV发电系统中,以减少系统不匹配并增加输出功率。随着光伏电站装机容量的增加,光伏并网逆变器的数量增加,带来了逆变器谐振的风险,并影响了多并联逆变器并网系统的质量和稳定性。因此,多并联逆变器的谐振问题已成为研究的热点。本文重点研究并网串式光伏逆变器系统的情况,以及并网光伏逆变器的谐振,其中将分析和讨论谐振抑制策略。首先,介绍了串式光伏逆变器和多并联逆变器系统的结构。其次,基于多输入多输出(MIMO)系统,诺顿等效电路和载波同步,讨论了多并联逆变器系统的模型及其谐振特性。第三,提供了“逆变器级”和“系统级”两种策略来总结多并联逆变器的谐振抑制策略。最后,展望了共振抑制策略的发展趋势和结论。

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