首页> 外文会议>2018 IEEE/ACM Third International Conference on Internet-of-Things Design and Implementation >From Energy Audits to Monitoring Megawatt Loads: A Flexible and Deployable Power Metering System
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From Energy Audits to Monitoring Megawatt Loads: A Flexible and Deployable Power Metering System

机译:从能源审计到监视兆瓦负载:一种灵活且可部署的电表系统

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The U.S. Federal Government and commercial partners have identified a critical gap in today's measurement technology-the ability to accurately, inexpensively, and wirelessly submeter building electricity usage at the circuit-level. Such metering technology would enable building owners, operators, and occupants to characterize and curtail electricity use in buildings-a major cost and source of carbon emissions today. Existing circuit-level metering systems are too costly to deploy, due to difficult installation or cumbersome calibration processes, too inaccurate, due to an inability to faithfully calculate power from synchronized current and voltage channels, or too unreliable, due to a strong dependence on a frequently lossy wireless channel. We propose Triumvi, a standalone, self-powered, non-contact, true-power metering system to help make circuit-level metering affordable, accurate, and reliable-in short, usable. In a splitcore current transformer form factor, Triumvi harvests energy to power itself, monitors current and voltage, calculates power, encrypts data, and wirelessly transmits the results. Our prototype can sustain a sample rate of nearly 0.5 Hz when the load draws at least 360 W and exhibits an average error of 4.3% over a load power draw range of 150-600 W. Triumvi also supports rapid installation, incremental upgrades, metering three phase and high current loads, charge sharing between between meters, and current waveform analysis, creating a highly flexible metering system capable of energy audits, industrial equipment monitoring, and many applications in-between.
机译:美国联邦政府和商业伙伴已经发现了当今测量技术中的一个关键缺陷-在电路级准确,廉价且无线地对建筑物用电量进行计量的能力。这种计量技术将使建筑物的所有者,运营商和居住者能够表征和减少建筑物中的用电量,这是当今的主要成本和碳排放源。由于安装困难或麻烦的校准过程,现有的电路级计量系统部署成本太高,由于无法如实地从同步电流和电压通道计算功率而过于不准确,或者由于对电路的强烈依赖而过于不可靠。无线信道频繁丢失。我们建议使用Triumvi,这是一个独立的,自供电,非接触式,有功功率计量系统,可帮助使电路级计量能够负担得起,准确且可靠,总之可以使用。在分体式电流互感器的外形尺寸中,Triumvi收集能量为自身供电,监视电流和电压,计算功率,加密数据并无线传输结果。当负载消耗至少360 W的功率时,我们的原型可以维持接近0.5 Hz的采样率,并且在150-600 W的负载功率范围内表现出4.3%的平均误差。Triumvi还支持快速安装,增量升级,对三相和高电流负载进行计量,计量表之间的电荷共享以及电流波形分析,从而创建了一种高度灵活的计量系统,能够进行能源审核,工业设备监控以及介于两者之间的许多应用。

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