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A Low-Cost Wireless Voltage Sensor for Monitoring MV/HV Utility Assets

机译:用于监控中压/高压公用事业资产的低成本无线电压传感器

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Voltage sensing of the utility network provide critical information for asset management, prioritizing asset replacements, increasing situational awareness and providing increased visibility of the grid. For ease of use, and to increase commercial appeal among utilities, these sensors should be designed to have a low cost, long life ( $> {10}~{hbox {years}}$), be self-powered, and require no maintenance. This paper deals with the development of a novel low-cost wireless voltage sensor for medium- and high-voltage (MV/HV) utility assets such as cables, transformers, switchgear, capacitor banks, and conductors. A review of existing techniques along with their drawbacks is outlined in this paper. Further, the challenges pertaining to the development a low-cost floating voltage sensor such as variability of voltage, self-calibration requirements, and distance-to-earth variations are presented. These challenges are circumvented by deriving a detailed mathematical model of the sensor. Further, using a set of valid assumptions, a new moving average voltage sensing (MAVS) algorithm is proposed, tested using simulations and validated using a high-voltage prototype. The wireless voltage sensor prototype is tested at up to 35 kV and is built to accommodate electric field energy harvesting in addition to voltage sensing. The prototype has a low-volume production cost of $150 and shows promising results by providing self-calibrated measurements capable of tracking the voltage variation with less than 2.5% error.
机译:公用事业网络的电压感测可为资产管理,确定资产置换的优先级,提高态势感知并提供电网可视性提供关键信息。为了易于使用并增加公用事业的商业吸引力,这些传感器的设计应具有低成本,长寿命($> {10}〜{hbox {years}} $),自供电且不需要保养。本文讨论了一种新型的低成本无线电压传感器的开发,该传感器适用于中高压(MV / HV)公用事业资产,例如电缆,变压器,开关设备,电容器组和导体。本文概述了现有技术及其缺点。此外,还提出了与开发低成本浮动电压传感器有关的挑战,例如电压的可变性,自校准要求以及对地的距离变化。通过推导传感器的详细数学模型来规避这些挑战。此外,使用一组有效的假设,提出了一种新的移动平均电压感测(MAVS)算法,使用模拟进行了测试,并使用了高压原型进行了验证。无线电压传感器原型经过了高达35 kV的测试,其构建目的是在收集电压感应以外的电场能量。该原型机的小批量生产成本为150美元,并且通过提供能够跟踪电压变化且误差小于2.5%的自校准测量结果,显示出了可喜的结果。

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