Bidirectional optimal operation of smart building-to-grid systems

Meysam Razmara, G. Bharati, M. Shahbakhti, S. Paudyal, R. Robinett
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引用次数: 12

Abstract

This paper proposes a novel bidirectional optimization of buildings integrated to the smart distribution grid, which possess potential benefits to the customers and utilities both. Mathematical models required for the optimal operations of buildings and grids are developed and a new method is proposed to obtain the solution of the bidirectional optimization. In this work, minimization of the cost of energy is chosen as an objective for the building load management, while the distribution utilities aim to increase load penetration by maximizing the load factor. Case studies are carried out based on actual data collected from an office building at Michigan Technological University, and using a standard distribution test feeder. Studies demonstrate that the proposed bidirectional optimization is beneficial to both the customer and the distribution grid as it shows significant saving in the energy costs and improvement on the system load factor.
智能楼宇-电网系统的双向优化运行
本文提出了一种新型的建筑物与智能配电网相结合的双向优化方法,该方法对用户和电力公司都有潜在的好处。建立了建筑物和网格优化运行所需的数学模型,提出了一种求解双向优化问题的新方法。在这项工作中,能源成本的最小化被选择为建筑负荷管理的目标,而配电公司的目标是通过最大化负荷系数来增加负荷渗透。案例研究基于从密歇根理工大学办公楼收集的实际数据,并使用标准分布测试馈线。研究表明,所提出的双向优化对用户和配电网都是有利的,因为它可以显着节省能源成本并提高系统负载系数。
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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