Decentralized Demand Side Management Optimization for Residential and Commercial Load

Hayder O. Alwan, Hamidreza Sadeghian, Zhifang Wang
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引用次数: 17

Abstract

In smart grid, the demand side management techniques need to be designed to process a large number of controllable loads of several types, this results in increased sustainability of the grid, as well as reduced the operational cost. In this paper, we proposed a framework to study decentralized demand side management in a distributed network which contains a variety of loads of two demand types; residential load and commercial load. Specifically, each of residential load and commercial load has local renewable generation such as rooftop PV and flexible appliances and by making an optimum individual scheduling will reduce the electricity bill with a manageable sacrifice of customers convenience and comfort according time-of-using (TOU) prices. In our simulation model commercial load bus on bus seventeenth, with twenty-nine households employed to demonstrate the performance of the proposed DSM for large number of appliances. Using the developed simulation model we examine the performance of decentralized DSM and study their impact on the distribution network operation and renewable generation, overall voltage deviation, real power loss, and possible problems such as reverse power flows, voltage rise have examined and compared.
住宅和商业负荷分散需求侧管理优化
在智能电网中,需要设计需求侧管理技术来处理多种类型的大量可控负荷,从而提高电网的可持续性,降低运行成本。在本文中,我们提出了一个框架来研究包含两种需求类型的各种负载的分布式网络中的分散需求侧管理;住宅负荷和商业负荷。具体来说,每个住宅负荷和商业负荷都有本地可再生能源发电,如屋顶光伏和灵活的电器,通过制定最佳的个人调度,将在可管理的牺牲客户的便利和舒适的情况下,根据使用时间(TOU)价格减少电费。在我们的模拟模型中,商业负载总线在17号总线上,29个家庭被雇用来演示拟议的DSM对大量电器的性能。利用所建立的仿真模型对分布式DSM的性能进行了考察,研究了分布式DSM对配电网运行和可再生能源发电的影响、总体电压偏差、实际功率损耗以及可能出现的反向潮流、电压上升等问题进行了考察和比较。
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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