Generation Scheduling of Grid Connected Microgrid using GAMS

Indurekha Shial, Rajat Kanti Samal, Chinmaya Bhuyan
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Abstract

The integrated form of distributed energy resources make a small-scale power grid called microgrid. Based on the production of electrical energy renewable energy sources are integrated especially wind energy which gives various features to the power system. Here a grid-connected mode of microgrid with wind energy resources is used which offers a positive impact on quality of life, climate change and energy efficiency. In this paper an integrated scheduling model is used to find an optimal solution of distributed energy resource network and depository devices in such a way that both cost and emission are reduced by using General Algebraic Modelling System(GAMS). The results show that this system can efficiently synchronize the power generation of distributed energy system and the fluctuations of wind power production is reduced due to the presence of Energy Storage System (ESS). Such that the system is handling uncertainties correctly in electrical microgrid.
基于GAMS的并网微电网发电调度
分布式能源的集成形式构成了一个小规模的电网,称为微电网。在生产电能的基础上集成了可再生能源,特别是风能,使电力系统具有各种各样的特点。这里使用了风能资源的微电网并网模式,这对生活质量、气候变化和能源效率产生了积极影响。本文利用通用代数建模系统(GAMS),建立了分布式能源网络和储能设备的综合调度模型,在降低成本和降低排放的前提下寻求分布式能源网络和储能设备的最优解。结果表明,该系统可以有效地同步分布式能源系统的发电,并且由于储能系统(ESS)的存在,减少了风力发电的波动。使系统能够正确处理微电网中的不确定性。
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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