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Optimal self-scheduling of home energy management system in the presence of photovoltaic power generation and batteries

机译:光伏发电和电池存在下家居能源管理系统的最佳自我调度

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摘要

Today, the fact that consumers are becoming more active in electrical power systems, along with the development in electronic and control devices, makes the design of Home Energy Management Systems (HEMSs) an expedient approach to mitigate their costs. The added costs incurred by consumers are mainly paying for the peak-load demand and the system's operation and maintenance. Thus, developing and utilizing an efficient HEMS would provide an opportunity both to the end-users and system operators to reduce their costs. Accordingly, this paper proposes an effective HEMS design for the self-scheduling of assets of a residential end-user. The suggested model considers the existence of a dynamic pricing scheme such as Real-Time Pricing (RTP), Time-of-Use (TOU), and Inclining Block Rate (IBR), which are effective Demand Response Programs (DRPs) put in place to alleviate the energy bill of consumers and incentivize demand-side participation in power systems. In this respect, the self-scheduling problem is modeled using a stochastic Mixed-Integer Linear Programming (MILP) framework, which allows optimal determination of the status of the home appliances throughout the day, obtaining the global optimal solution with a fast convergence rate. It is noted that the consumer is equipped with self-generation assets through a Photovoltaic (PV) panel and a battery. This system would make the consumers have energy arbitrage and transact energy with the utility grid. Consequently, the proposed model is demonstrated by determining the best operation schedule for different case studies, highlighting the impact each different DRP has on designing and utilizing the HEMS system for best results.
机译:今天,消费者在电力系统中变得更加活跃的事实,随着电子和控制装置的开发,使家庭能源管理系统(HEMSS)的设计成为一种有利的方法来减轻其成本。消费者产生的增加的成本主要用于峰值负荷需求和系统的操作和维护。因此,开发和利用有效的HEMS将为最终用户和系统运营商提供机会,以降低其成本。因此,本文提出了一种有效的下摆设计,用于住宅最终用户的资产的自我调度。建议的模型考虑了动态定价方案,例如实时定价(RTP),使用时间(TOU)和倾斜的块速率(IBR),这是所做的有效需求响应程序(DRP)减轻消费者能源票据,激励电力系统的需求侧参与。在这方面,使用随机混合整数线性编程(MILP)框架进行建模自调度问题,这允许通过快速收敛速率获得全天的全局最佳解决方案的最佳确定。注意,消费者通过光伏(PV)面板和电池配备自发电资产。该系统将使消费者与实用网格进行能量套利和交易能量。因此,通过确定不同案例研究的最佳操作时间表来证明所提出的模型,突出每个不同DRP对设计和利用下摆系统进行最佳效果的影响。

著录项

  • 来源
    《Energy》 |2020年第1期|118568.1-118568.13|共13页
  • 作者单位

    Department of Electrical Engineering Shiraz Branch Islamic Azad University Shiraz Iran;

    Institute for Systems and Computer Engineering Technology and Science (INESC TEC) Porto Portugal Faculty of Engineering of the University of Porto (FEUP) Porto Portugal;

    Institute for Systems and Computer Engineering Technology and Science (INESC TEC) Porto Portugal Faculty of Engineering of the University of Porto (FEUP) Porto Portugal;

    Department of Electrical Electronic and Information Engineering University of Bologna Italy;

    Institute for Systems and Computer Engineering Technology and Science (INESC TEC) Porto Portugal;

    Institute for Systems and Computer Engineering Technology and Science (INESC TEC) Porto Portugal Faculty of Engineering of the University of Porto (FEUP) Porto Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Demand response programs; Home energy management system; Self-scheduling; Incline block rate; Time of use;

    机译:需求响应计划;家庭能源管理系统;自我调度;倾斜块率;使用时间;

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