偏远矿区MVDC微电网:保护、运行和控制

C. Yuan, M. Haj-ahmed, M. Illindala
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引用次数: 17

摘要

本文研究了偏远地区矿场中压直流(MVDC)微电网的设计。所涉及的各个方面包括其保护计划以及操作和控制。这样做的目的是在敏感负载终端提供高质量和可靠性的电压,并提高所有采矿设备的能源效率。在拟建的MVDC微电网中,采用了几种本地分布式能源(DERs),包括光伏阵列、风力涡轮机、燃料电池堆、储能系统和移动柴油发电机。对MVDC微电网系统的保护、运行和控制进行了全面分析。采用基于通信的固态电子继电器差动保护方案,仅隔离MVDC微电网的故障部分。以往的研究工作在很大程度上忽略了直流系统的后备保护。本文采用过流保护装置进行备用保护。此外,通过适当的通信和协作框架以及直流总线信令(DBS)控制,可以将直流总线电压保持在可接受的范围内。给出了MATLAB/Simulink建模和仿真结果,说明了系统的可靠性、安全性和电能质量。
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An MVDC microgrid for a remote area mine site: Protection, operation and control
This paper investigates the design of a medium voltage direct current (MVDC) microgrid for a remote area mine site. The various aspects covered include its protection schemes as well as operation and control. This is intended to provide a voltage of high power quality and reliability at the sensitive load terminals, and also improve the energy efficiency of all the mining equipment. In the proposed MVDC microgrid, several local distributed energy resources (DERs) have been employed including PV arrays, wind turbines, a fuel cell stack, an energy storage system and mobile diesel generators. A comprehensive analysis is presented on the protection, operation and control of the MVDC microgrid system. A communication based differential protection scheme with solid state electronic relays is employed for isolating only the faulted portion of the MVDC microgrid. Previous research work had largely neglected the backup protection for DC systems. In this paper, the overcurrent protection device is utilized for backup protection. Furthermore, with an appropriate communication and cooperative framework among these DERs accompanied by dc bus signaling (DBS) control, the dc bus voltage can be maintained within an acceptable range. MATLAB/Simulink modeling and simulation results are presented and discussed to illustrate the system's reliability, security and power quality.
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