具有dg的微电网系统储能的影响

U. Kwhannet, N. Sinsuphun, U. Leeton, T. Kulworawanichpong
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引用次数: 20

摘要

本文介绍了储能对微电网系统的影响研究,该系统由一个非常小的生物质类型的发电机组组成。本文使用的能量存储是一个电池组。它包括并联和串联电池单元之间的组合,以实现足够的电池存储系统。为了验证模拟电池储能系统的有效性,对某配电系统进行了一天的运行测试。该仿真使用MATLAB软件进行,以支持并平衡发电(来自变电站和可再生能源工厂)与整个系统的电力需求之间的能量交换。与蓄电池组储能装置一起,放置一个总发电量为6兆瓦的简易6母线测试系统进行测试。考虑四种测试用例(案例1:未安装储能设备,忽略功率损耗;案例2:未安装储能设备,但考虑功率损耗;案例3:安装储能设备,但忽略功率损耗;案例4:安装储能设备,同时考虑功率损耗)。本文所使用的输电损耗可采用牛顿-拉夫森潮流解法确定。对测试系统进行了为期一天的储能仿真,并采用适当的算法对储能进行充能。结果表明,该储能系统可以实现高效的能源利用和降低功率损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of energy storage in micro-grid systems with DGs
This paper presents an impact study of energy storage on a micro-grid system consisting of a very small power producer of a biomass type. The energy storage used in this paper is a battery bank. It comprises a combination between shunt and series battery cells in order to implement a sufficient battery storage system. To verify the simulated battery storage system, one day operation of an electric power distribution system was tested. This simulation was performed using MATLAB software in order to support and also to balance the energy exchange between the generation (drawn from both substation and renewable energy plants) and the power demand of the entire system. With the energy storage plant of battery banks, a simple 6-bus test system with a total power generation of 6 MW is situated for test. Considering of four test cases (case 1: without energy storage installation and neglecting power losses, case 2: without energy storage installation but considering power losses, case 3: with energy storage installation but power losses neglected, case 4: with energy storage installation and also considering power losses). Power transmission losses used in this paper can be determined by using Newton-Raphson power flow solution method. The simulation of the test system was carried out by performing one day simulation with energy storage and energizing stored energy by using an appropriate algorithm. The results showed that the system with energy storage can lead to efficient energy usage and power loss reduction.
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