Application of island microgrid based on hybrid batteries storage

Wen Yeting, Dai Yuxing, Zhou Xiwei, Wang-ping Ye, Xie Bin
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引用次数: 10

Abstract

This paper describes a MW-level island microgrid system which is constructed on 4226 meters high plateau in the western of China. The microgrid system is composed of 7MWp PV modules, 5MWh lithium batteries and 20MWh lead-acid batteries, which are integrated with power electronic interface without stable generation source. A master-slave control structure is adopted in the system. Batteries Energy Storage Systems (BESSs) play as different function roles, and the cooperative control method of BESSs is presented to support the power balance during system operation. Master Battery System (MBS) is equipped with lithium batteries which handles the frequency and voltage as a master control unit. Slave Battery System (SBS) is equipped with large capacity lead-acid batteries which are used as energy reserve devices and operated as slave units. Regulation Battery System (RBS) is operated as slave unit for short-term energy scheduling, which is also used as a spare master unit for black-start and system maintenance. According to the cooperative data, the coordinated control and energy management of island microgrid system are able to guarantee it operate stably and reliably under different dynamic conditions. Meanwhile, operation conditions of batteries are greatly improved in this application.
基于混合电池储能的孤岛微电网应用
本文介绍了在中国西部海拔4226米的高原上建设的兆瓦级海岛微电网系统。微电网系统由7MWp光伏组件、5MWh锂电池和20MWh铅酸电池组成,与电力电子接口集成,无稳定发电源。系统采用主从控制结构。电池储能系统(BESSs)扮演着不同的功能角色,提出了BESSs的协同控制方法,以支持系统运行中的功率平衡。主电池系统(MBS)配备了锂电池,作为主控制单元处理频率和电压。从蓄电池系统(SBS)配备大容量铅酸蓄电池作为能量储备装置,作为从机组运行。调节电池系统(Regulation Battery System, RBS)作为短期能量调度的从机组运行,同时作为备用主机组进行黑启动和系统维护。根据协作数据,对孤岛微电网系统进行协调控制和能量管理,保证其在不同动态条件下稳定可靠地运行。同时,大大改善了电池的工作条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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