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Economical real-time energy management for microgrids via NILM and with user decision support.

机译:通过NILM和用户决策支持,对微电网进行经济,实时的能源管理。

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摘要

With time-of-use pricing of electrical energy, real-time energy management is being economically incentivized for all. Consumers with renewable sources are among the first to recognize this, and those with the capability to operate in "island" mode as a micro grid find real-time energy management a necessity.;A real-time energy management system (EMS) requires real-time data that enables immediate identification of electrical loads. Non-Intrusive Load Monitoring (NILM) is the process of identification of loads from an aggregate power interface using disaggregation algorithms, thus providing load data economically.;Application of NILM in residential settings has been hampered by limited data availability. Utility billing smart meters provide very sparse (time) sampling of energy use, yielding data that is not adequate for quantifying fundamental harmonics of the waveform. For research and deployment of NILM, there is a critical need for a low-cost sensor system to collect energy data with fast sampling and significant precision.;We first identify the current status, methodologies and challenges of NILM in residential settings. NILM has advanced substantially in recent years due to improvement in algorithms and methodologies. Currently, the important challenges facing residential NILM are inaccessibility of electricity meter high sampling data, and lack of reliable high resolution datasets.;We introduce SEADS (Smart Energy Analytic Disaggregation System) which provides a powerful and flexible system, supporting user configuration of sampling rates and amplitude resolution up to 65KHz and up to 24 bits respectively. The SEADS internal processor is capable of implementing NILM algorithms in real time on the sampled measurements.;An Intelligent Energy Management System (IEMS) has been introduced. Since SEADS has the load information instantaneously, it can be part of a real time command and control system of a microgrid. IEMS proposed integrates SEADS into a Decision Support System (DSS). DSS helps consumers make informed realtime decisions, especially when microgrid is operating in the island mode. Prolonging the stay on the battery and renewable sources, can reduce or eliminate the need for use of a local fossil fuel generator. A combination of automatic and user driven load shedding is necessary in a microgrid for interactively responding to the intermittency of renewable sources. This is possible by controlling only a limited number of loads in parallel with using a battery storage system.
机译:利用电能的按使用时间定价,从经济角度出发,所有人的实时能源管理都受到了激励。拥有可再生资源的消费者是最早认识到这一点的人,并且具有以微电网作为“岛”模式运行的能力的人们发现实时能源管理是必要的。实时能源管理系统(EMS)需要实时数据,可立即识别电气负载。非侵入式负载监控(NILM)是使用分解算法从集合电源接口识别负载的过程,从而经济地提供负载数据。; NILM在住宅环境中的应用受到数据可用性有限的阻碍。公用事业计费智能电表提供非常稀疏的(时间)能源使用采样,产生的数据不足以量化波形的基波谐波。对于NILM的研究和部署,迫切需要一种低成本的传感器系统,以快速的采样和显着的精度收集能源数据。我们首先确定居民环境中NILM的现状,方法和挑战。近年来,由于算法和方法的改进,NILM取得了长足的进步。当前,住宅NILM面临的重要挑战是无法获得电表的高采样数据以及缺乏可靠的高分辨率数据集。;我们推出了SEADS(智能能源分析分解系统),该系统提供了强大而灵活的系统,可支持用户配置采样率幅度分辨率分别高达65KHz和24位。 SEADS内部处理器能够在采样的测量结果上实时实现NILM算法。;已经引入了智能能源管理系统(IEMS)。由于SEADS可即时获得负载信息,因此它可以成为微电网实时命令和控制系统的一部分。 IEMS建议将SEADS集成到决策支持系统(DSS)中。 DSS可帮助消费者做出明智的实时决策,尤其是当微电网以孤岛模式运行时。延长在电池和可再生资源上的停留时间可以减少或消除对使用当地化石燃料发电机的需求。微电网中必须结合自动和用户驱动的减载,以交互响应可再生资源的间歇性。通过与电池存储系统并行地仅控制有限数量的负载,这是可能的。

著录项

  • 作者

    Adabi, Ali.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Electrical engineering.;Computer engineering.;Computer science.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:48:47

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