540 KVA逆变器与1.86 MWh电池储能系统在微电网应用中的先进系统集成研究

Sahin Gullu, Amour-Che Djaho, Reza Rezaii, M. Elrais, Md. Safayatullah, A. Mensah, I. Batarseh
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引用次数: 0

摘要

本文讨论了佛罗里达太阳能中心(FSEC)与中佛罗里达大学(UCF)和A.F. Mensah公司合作,实现540千伏安三相双向逆变器和1863.68千瓦时锂离子电池储能系统(BESS)的先进系统集成。本文的目的是通过提供测试结果,给出一个案例研究和高级系统集成的概述。它使读者能够理解微电网在实际应用中的含义。在介绍了系统的概述之后,通过确定系统的总谐波失真(THD)值并在不同电源管理场景下进行仿真,对系统的实际能耗、降低能耗、电池测试数据、电压和电流波形进行了演示和分析。该系统目前在FSEC使用,没有光伏板集成。通过理论和仿真结果对光伏集成系统场景进行了说明。因此,BESS容量应为光伏板功率的“4小时”倍,利用大电流变换向电网输送200千瓦电力时,THD水平确定为0.07。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Systems Integration of 540 KVA Inverter and 1.86 MWh Battery Energy Storage System for Microgrid Application: A Case Study
This paper discusses the realization of advanced systems integration that has 540 KVA three-phase bidirectional inverter and 1863.68 kWh lithium-ion battery energy storage system (BESS) at Florida Solar Energy Center (FSEC) with a partnership of University of Central Florida (UCF) and A.F. Mensah Inc. The purpose of this paper is to give a case study and an overview of advanced systems integration by providing their test results. It enables the reader to understand what a microgrid is in a real application. After explaining the overview of the system, the real energy consumption, the reduced energy consumption, the battery testing data, the voltage, and current waveforms are demonstrated and analyzed by determining its total harmonic distortion (THD) values and simulating its results in different power management scenarios. The system is now utilized at FSEC without the PV Panels integration. The PV integrated system scenario is explained by providing theoretical and simulation results. As a result, the BESS capacity should be "4 hour" times of the PV panel power, and the THD level is determined 0.07 when 200-kW power is sent to the grid by using high current transforms.
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