高压电力线磁场区能量收集用高导磁材料的适用性研究

H. Pervaiz, A. H. Khawaja
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引用次数: 0

摘要

高压输电线路(HVTLs)等架空结构可能会受到恶劣天气条件和环境的破坏,从而导致输电线路出现不希望的变化,因此传感和监测对架空结构至关重要。尽管有危险,这些传感器需要持续通电。这些载流导体在附近产生不耦合的电场和磁场。本研究的目的是分析各种高磁导率材料在放置在电力线附近时集中磁场的功效,电力线将补充能量收集器线圈中的电流感应过程。研究了高磁导率材料,如Mu-Metal,硅钢和铁氧体,当放置在hvtl产生的磁场区域下时,它们集中磁通量用于能量收集应用的能力。利用ANSYS中的Maxwell 3D有限元代码程序进行建模和有限元分析,该程序采用Maxwell方程组求解复杂电磁问题。在本研究中,对这些高渗透材料的不同形状和取向进行了建模、模拟,并最终编制了结果。Mu-Metal表现出最理想的结果,因为它具有高度的磁通量集中能力,因此感应电压比其他对应物要高得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation on employability of high magnetic permeable materials for energy harvesting application in high voltage power lines magnetic field zone
Sensing and monitoring is vital for overhead structures such as High Voltage transmission lines (HVTLs) which may be damaged by severe weather conditions and environment, resulting in undesired variation in transmission lines. These sensors need to be continuously powered-up despite hazards. These current carrying conductors generate uncoupled electric and magnetic fields in close vicinity. The aim of this investigation is to analyze various high permeability materials with respect to their efficacy to concentrate the magnetic field when placed near the power lines which will complement the current induction process in the coil of energy harvester. High Magnetic permeable material such as Mu-Metal, silicon Steel and Ferrite were studied in terms of their ability to concentrate the magnetic flux for energy harvesting applications when placed under the region of magnetic field, produced by HVTLs. The modeling and Finite Element Analysis were done using finite Element code program Maxwell 3D from ANSYS which uses Maxwell Equations to solve complex Electromagnetic problems. In this study, different shapes and orientations of these High permeable materials were modeled, simulated and ultimately results were compiled. Mu-Metal showed the most desirable results due to its high ability to concentrate the magnetic flux and hence, induced voltages comparably much more than its other counterparts.
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