基于微电网的分布式能源仿真与实验性能分析

Yunqi Wang, T. Phung, J. Ravishankar
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引用次数: 1

摘要

由于其集成的即插即用特性,微电网正变得非常流行。但分布式发电机组的高度渗透也可能造成潜在的不稳定,因为它无法调节系统。本文比较了系统负荷需求突变时微电网的动态性能。使用多个分布式源来创建灵活的仿真场景。利用DIgSILENT软件进行了仿真,结果表明微电网在孤岛模式下可能会崩溃。研究发现,安装存储设备可以帮助解决这一问题,但在确定其容量时应同时考虑发电量和负荷变化。DG穿透水平也显示了对系统瞬态的影响,因为它可以潜在地改变扰动的水平。模拟结果通过一个混合了风能、太阳能发电和电池存储的实验性微电网设置进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation and experimental performance analysis of micro-grid based distributed energy resources
Micro-grids are becoming very popular due to the plug-and-play nature of their integration. But the high penetration of distributed generators may also create potential instability as it is unable to regulate the system. This paper compares the dynamic performance of a micro-grid when the system load demand is suddenly changed. Multiple distributed sources are used to create a flexible simulation scenario. The simulation is carried out using DIgSILENT software and the results indicate that the micro-grid may collapse when it works in islanding mode. It is found that the installation of storage device can help solve this problem, but both generation and load changes should be considered when determining its capacity. The DG penetration level also shows the impact on the system transient as it can potentially change the level of disturbance. The results of the simulation are validated using an experimental micro-grid setup, having a mix of wind, solar generation and battery storage.
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