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首页> 外文期刊>Industrial Informatics, IEEE Transactions on >Internet-of-Things Hardware-in-the-Loop Simulation Architecture for Providing Frequency Regulation With Demand Response
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Internet-of-Things Hardware-in-the-Loop Simulation Architecture for Providing Frequency Regulation With Demand Response

机译:物联网硬件在环仿真架构,可为需求调节提供频率调节

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摘要

Following recent advances in network infrastructure, cloud computing, and embedded systems, fascinating work is underway exploring the utility of demand response in increasing grid stability while permitting high penetration of intermittent renewable distributed generation resources. Although works have demonstrated diverse theoretical advantages of demand response programs, little real-world data are available and utilities generally remain reticent in moving forward with large-scale implementation due to risks inherent to any modification of the power system. Deciding that the next pertinent step in bringing demand response from theory to technology is developing an Internet-of-things hardware-in-the-loop simulation power system integrated device capable of empirically testing the theoretical mechanisms, this work presents an architecture testbed for providing demand response (telemetric monitoring and actuation of loads), which is real node in a power system simulation where virtual node's parameters derive real node data. We test a demand response algorithm, which provides frequency regulation services.
机译:随着网络基础设施,云计算和嵌入式系统的最新发展,引人入胜的工作正在探索需求响应在提高电网稳定性的同时允许间歇性可再生分布式发电资源的高渗透率的实用性。尽管工作已经证明了需求响应程序具有多种理论优势,但由于缺乏任何动力系统修改所固有的风险,因此实际数据很少,公用事业通常对大规模实施仍保持沉默。决定将需求响应从理论带入技术的下一个相关步骤是开发能够实证测试理论机制的物联网硬件在环仿真电源系统集成设备,该工作提出了一种架构测试平台,旨在提供需求响应(遥测和负载驱动),它是电力系统仿真中的真实节点,其中虚拟节点的参数派生真实节点数据。我们测试了一种需求响应算法,该算法可提供频率调节服务。

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