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A low-cost electric-field energy harvester for an MV/HV asset-monitoring smart-sensor

机译:用于MV / HV资产监控智能传感器的低成本电场能量收集器

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This paper investigates the powering of smart-grid-sensors with electric fields (E-fields) present in abundance near most medium-to-high voltage (MV/HV) utility assets. A unique E-field energy harvester is proposed which is integrated into a sensor's enclosure, thereby ensuring low-cost and compact size. The proposed energy harvester can be used with multiple assets by virtue of its shape which also allows installation without interruption of the MV/HV asset. Design methodology of the harvester through Maxwell simulations along with a new and efficient circuit design for obtaining a regulated DC supply is presented. A medium voltage prototype of the proposed E-field energy harvester integrated with a wireless voltage sensor is built and tested on a 35 kV bus. The prototype provides 17 mW of continuous power at 35 kV with a high energy density. This power is enough to operate a low-duty cycle sensor node stuck-on to an MV/HV asset. The prototype shows promising results and demonstrates the efficacy of using E-fields for powering smart grid sensors for MV/HV assets.
机译:本文研究了在大多数中高压(MV / HV)公用事业资产附近大量存在电场(E场)的智能电网传感器的供电。提出了一种独特的电场能量收集器,该能量收集器集成到传感器的外壳中,从而确保了低成本和紧凑的尺寸。所提议的能量收集器由于其形状而可以与多种资产一起使用,这也使得安装过程中不会中断MV / HV资产。提出了通过麦克斯韦(Maxwell)模拟进行的收割机设计方法,以及用于获得稳定直流电源的新型高效电路设计。在35 kV总线上构建并测试了与无线电压传感器集成的拟议电场收集器的中压原型。该原型在35 kV时可提供17 mW的连续功率,且能量密度高。该功率足以操作粘附在MV / HV资产上的低占空比传感器节点。该原型显示出令人鼓舞的结果,并展示了使用电场为中压/高压资产的智能电网传感器供电的功效。

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