一种优化电池存储利用率的并网光伏微型逆变器

Vikram Roy Chowdhury, M. Chaaban, S. Essakiappan, M. Manjrekar, Yaosuo Xue
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引用次数: 2

摘要

住宅规模的光伏(PV)装置已经大大增加,并预计将继续这样做。由于住宅规模光伏的采用越来越多,住宅级电池储能也变得至关重要。本文提出了一种集成储能的新型微型逆变器拓扑结构。所提出的拓扑结构类似于飞电容多电平逆变器的结构,减少了开关计数。这提供了设计简单等优点,同时比现有拓扑更具成本效益。本文还提出了一种独特的控制方案,可以减轻光伏间歇性,同时优化电池利用率。该拓扑结构和控制技术在一个230 W的家用微型逆变器上得到了仿真验证。仿真结果验证了微型逆变器的工作原理和控制方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A grid connected PV micro-inverter with optimized battery storage utilization
Photovoltaic (PV) installations on the residential scale have been increasing tremendously and projected to continue to do so. Battery energy storage at the residential level has also become critical due to the increased adoption of residential scale PV. This paper proposes a new micro-inverter topology with integrated energy storage for PV applications. The proposed topology has a structure similar to that of a flying capacitor multilevel inverter, with reduced switch count. This provides advantages such as design simplicity while being more cost effective than existing topologies. A unique control scheme is also proposed in this paper, which mitigates PV intermittencies while also optimizing battery utilization. The proposed topology and control technique are verified by simulation for a residential scale micro-inverter rated 230 W. The simulation results validate the micro-inverter operation and the control methodology.
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