Optimal Operation of a Smart Multi-Energy Neighborhood

Mustafa Ata, Ayşe Kübra Erenoğlu, İbrahim Şengör, O. Erdinç, Akιn Taşcιkaraoğlu, J. Catalão
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引用次数: 3

Abstract

Together with the increasing population and prosperity levels of the growing countries, the economic and technological developments and modernized lifestyles of the end users have increased their electrical, heating and cooling energy demands extraordinarily. These services are generally provided to the end users independently, which leads to considerable reductions in the system efficiencies. For the purpose of providing a decrease in the demands of the end users and to transfer the energy carriers to the end users in an integrated and more efficient way, the concept of multi energy systems (MESs) has emerged. MESs could be developed at a district level, a city level and lastly at a country level. In this paper, a smart neighborhood MES model is proposed with the aim of achieving cost optimization by mixed integer linear programming (MILP) based formulation considering a time-of-use (TOU) tariff. In order to testify the effectiveness of the proposed optimization algorithm, two different case studies are conducted by taking into account flexible energy production capability of different energy carriers.
智能多能邻域的最优运行
随着发展中国家人口的增长和繁荣程度的提高,经济和技术的发展以及最终用户的现代化生活方式极大地增加了他们对电力、供暖和制冷能源的需求。这些服务通常是独立地提供给最终用户的,这导致系统效率大大降低。为了减少终端用户的需求,并以一种集成的、更有效的方式将能量载体传递给终端用户,多能系统(MESs)的概念应运而生。可以在地区一级、城市一级、最后在国家一级发展综合卫生系统。本文提出了一种基于混合整数线性规划(MILP)的智能社区MES模型,该模型考虑了分时电价(TOU),以实现成本优化。为了验证所提优化算法的有效性,考虑了不同能源载体的柔性产能能力,进行了两个不同的案例研究。
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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