Local Energy Market Strategy based on the Study of Interconnected Microgrids

Kittisak Intaprom, P. Wirasanti
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引用次数: 1

Abstract

Recently, one of the microgrid developments is interested in the energy trading sector to establish local energy market in the distribution system. To understand the microgrids in the energy market, an energy trading strategy in the local energy market based on the study of interconnected microgrids (IMGs), is presented in this paper. The proposed energy trading strategy is introduced in three process layers, i.e., business layer, information layer, and physical layer. The business layer is the dominant layer. It assigns the amount of energy that IMGs have to trade. Consequently, a decision-making process is essential. This paper then proposes fuzzy logic and arithmetic weight method for the decision-making process to calculate the net market demand profile for IMGs. As a result of the business layer, the MGs have to follow the dispatch profile, called the physical layer. This paper utilizes economic dispatch to minimize generation costs. The interaction between a business operator and the microgrid operators is operated via the information layer. To demonstrate the energy trading strategy, evaluate the decision-making process, and economic dispatch, the simulation in DIgSILENT Powerfactory and MATLAB is developed to present the local energy trading with IMGs. As a result, the strategy shows how IMGs can be participated in the day-ahead market of the local energy market.
基于互联微电网研究的地方能源市场策略
最近,微电网的发展之一是对能源交易部门感兴趣,以便在配电系统中建立当地的能源市场。为了更好地理解微电网在能源市场中的作用,本文提出了一种基于互联微电网研究的本地能源市场能源交易策略。提出的能源交易策略分为三个流程层,即业务层、信息层和物理层。业务层是主导层。它分配了img必须交易的能源数量。因此,决策过程是必不可少的。在此基础上,提出了模糊逻辑和算法权重的决策过程,以计算IMGs的净市场需求曲线。由于存在业务层,mg必须遵循称为物理层的调度配置文件。本文利用经济调度使发电成本最小化。业务运营商和微电网运营商之间的交互是通过信息层进行的。为了演示能源交易策略,评估决策过程和经济调度,在DIgSILENT Powerfactory和MATLAB中进行了仿真,展示了IMGs的局部能源交易。因此,该战略显示了img如何参与当地能源市场的前一天市场。
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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