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A Combined Framework for Demand Side Management and Power Quality Enhancement in Smart Grid Under Different Distributed Energy Resource Penetration

机译:不同分布式能源资源渗透下智能电网需求侧管理和电力质量增强的组合框架

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Demand-Side Management (DSM) is considered as a pivotal function in the achievement of sustainable energy for optimizing energy and maintaining the needed flexibility in electrical power system operation. The increasing need to integrate Distributed Energy Resources (DERs) in the recent distribution smart grids and the requirements of enhancing power quality issues necessitate the diversifications of DSM methods and techniques. Present literature lacks studies that combine both power quality issues along with DSM strategies. This paper presents a developed method for DSM that depends upon day-ahead load shifting technique to be applied in smart grids the presence of DERs. The developed strategy examined the impact of the penetration level of DERs on both the DSM capability and Total Harmonic Distortion (THD). The aim is to attain the maximum allowable DERs penetration level for the benefit of DSM without jeopardizing the standards of THD. The day-ahead load shifting technique is applied in this paper using a minimization mathematical model with and without DERs. The formulated problem is solved by using a particle swarm optimization (PSO) algorithm. The simulation results show that the presence of DERs with the proposed DSM strategy can achieve substantial savings in terms of reducing the peak load demand and operating cost; with a trade-off to come up with the optimal DERs penetration level that achieves the best possible DSM while maintaining the allowable limits of PQ indices.
机译:需求侧管理(DSM)被认为是在实现可持续能源中实现可持续能源的关键功能,并在电力系统操作中保持所需的灵活性。在最近的分布智能电网中越来越需要将分布式能源资源(DER)集成在最近的分布智能电网和提高电能质量问题的要求需要DSM方法和技术的多样化。目前的文献缺乏研究,即与DSM策略一起结合电力质量问题。本文介绍了一种用于DSM的开发方法,其取决于前方的载荷转换技术应用于智能网格的存在。开发策略检测了DSM能力和总谐波失真(THD)对渗透水平的影响。目的是为了达到DSM的利益而不危及THD标准的效益,达到最大允许的DER渗透水平。使用最小化数学模型,在本文中应用了一天的载荷转换技术。通过使用粒子群优化(PSO)算法来解决配制的问题。仿真结果表明,具有所提出的DSM策略的DER的存在可以在降低峰值负荷需求和运营成本方面实现大量节省;随着权衡提出最佳的DER渗透水平,可以实现最佳DSM,同时保持PQ指数的允许极限。

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