微电网中不同PV/BESS架构的多模式运行:并网模式和孤岛模式

M. Chamana, I. Mazhari, B. Parkhideh, B. Chowdhury
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引用次数: 9

摘要

在模拟微电网试验台上,比较了两种不同太阳能光伏/电池储能系统(BESS)架构的性能。光伏系统在直流链路上与BESS接口,以提供备用电力。这两种不同的集成解决方案可以在功率级数量、效率、存储系统灵活性和控制复杂性方面进行比较。可重构太阳能转换器(Reconfigurable Solar Converter, RSC)的单功率转换系统具有更大的灵活性、更低的复杂性和根据系统需求的多模式能力,与目前具有两级功率转换单元的间接光伏/电池系统相比,系统效率更高,更经济。当微电网被隔离或与主电网断开连接时,有各种方法来分担负荷。在孤岛模式下,像柴油发电机这样的分布式发电机(DG)可以提高供电的可靠性,并调节微电网内的频率和电压。在微电网试验台上模拟了光伏到电网、光伏+电池到电网、电池到电网(直流到交流)和光伏到电池(直流到直流)这两种拓扑结构的不同运行模式,验证了这两种架构在微电网中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-mode operation of different PV/BESS architectures in a microgrid: Grid-tied and island mode
The performance of two different solar photovoltaic (PV)/battery energy storage system (BESS) architectures are compared on a simulated microgrid testbed. The PV system is interfaced with the BESS at the DC link to provide reserve power. These two different integrated solutions can be compared with regards to the number of power stages, efficiency, storage system flexibility, and control complexity. A single power conversion system named Reconfigurable Solar Converter (RSC) presents more flexibility, less complexity, and multi-mode capability depending on system requirement, and results in a more efficient and economical system compared with a current indirect PV/battery system with two stages of power conversion units. There are various approaches to share the load when microgrids are islanded or disconnected from the main grid. In the islanded mode, a distributed generator (DG) like a diesel generator can enhance the reliability of the power supply and regulate the frequency and voltage within the microgrid. Different operation modes for both topologies such as PV to grid, PV plus battery to the grid, battery to the grid (DC to AC) and PV to battery (DC to DC) are simulated on a microgrid testbed, verifying the applicability of the two architectures in microgrids.
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