天气条件对隔离微电网优化规模影响的评估

Gurkan Soykan, Gulfem Er, Ethem Çanakoglu
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引用次数: 2

摘要

由于全球变暖,对低碳电力生产的需求使得可再生能源的使用变得必不可少。随着技术的进步,可再生能源变得越来越容易获得,微电网系统在世界各地都很受欢迎。特别是,在缺乏电力基础设施的农村地区,带有储能系统的孤立微电网在没有电网连接的情况下工作是一种众所周知的解决方案。本研究旨在通过提出的框架评估天气条件对孤立微电网最优规模的影响,并确定系统的最优规模。采用成本优化方法对问题进行表述。目标函数定义为生命周期成本。求解了为期一年的优化问题,以了解天气条件的影响,并考虑了可再生资源的季节性。在设计仿真中,系统由风能、光伏和电池储能系统组成。该系统使用月度数据进行测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Effect of Weather Conditions on Optimal Sizing of an Isolated Microgrid
The need for low carbon electricity production due to global warming has made the usage of renewable energy resources essential. As renewable energy sources become more accessible due to technological advances, the microgrid system has been popular all over the world. Especially, the isolated microgrid with an energy storage system that works without the grid connection is a well-known solution in a rural area that lacks electrical infrastructure. This study aims to evaluate the effect of weather conditions on the optimal sizing of an isolated microgrid by a proposed framework and decide the optimal sizing of the system. A cost optimization method is used for problem formulation. The objective function is defined as life cycle cost. The optimization problem is solved for a one-year period to understand the effect of weather conditions and take into account the seasonality of renewable resources. For the design simulation, the system is formed of wind, photovoltaic, and battery storage systems. The system is tested using monthly data.
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