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Energy Harvesting from the Stray Electromagnetic Field around the Electrical Power Cable for Smart Grid Applications

机译:从智能电网应用的电力电缆周围的杂散电磁场中收集能量

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摘要

For wireless sensor node (WSN) applications, this paper presents the harvesting of energy from the stray electromagnetic field around an electrical power line. Inductive and capacitive types of electrodynamic energy harvesters are developed and reported. For the produced energy harvesters, solid core and split-core designs are adopted. The inductive energy harvester comprises a copper wound coil which is produced on a mild steel core. However, the capacitive prototypes comprise parallel, annular discs separated by Teflon spacers. Moreover, for the inductive energy harvesters' wound coil and core, the parametric analysis is also performed. A Teflon housing is incorporated to protect the energy harvester prototypes from the harsh environmental conditions. Among the inductive energy harvesters, prototype-5 has performed better than the other harvesters and produces a maximum rms voltage of 908 mV at the current level of 155 A in the power line. However, at the same current flow, the capacitive energy harvesters produce a maximum rms voltage of 180 mV. The alternating output of the prototype-5 is rectified, and a super capacitor (1 F, 5.5 V) and rechargeable battery (Nickel-Cadmium, 3.8 V) are charged with it. Moreover, with the utilization of a prototype-5, a self-powered wireless temperature sensing and monitoring system for an electrical transformer is also developed and successfully implemented.
机译:对于无线传感器节点(WSN)应用,本文介绍了从电源线周围的杂散电磁场中收集能量的方法。开发并报道了感应式和电容式电动能量收集器。对于生产的能量收集器,采用实心和分芯设计。感应式能量收集器包括一个在低碳钢芯上生产的绕铜线圈。但是,电容性原型包括由特氟龙垫片隔开的平行的环形圆盘。此外,对于感应能量采集器的绕线线圈和铁芯,还执行了参数分析。特氟龙外壳被结合起来以保护能量收集器原型免受恶劣的环境条件的影响。在感应式能量收集器中,原型5的性能要优于其他收集器,并且在电力线中的电流水平为155 A时产生的最大均方根电压为908 mV。但是,在相同电流下,电容式能量收集器产生的最大均方根电压为180 mV。对prototype-5的交流输出进行整流,并为其充电一个超级电容器(1?F,5.5?V)和可充电电池(镍镉,3.8 V)。此外,通过使用原型5,还开发并成功实现了用于变压器的自供电无线温度感测和监视系统。

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