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Spatially Resolved Measurements of Magnetic Fields Applied to Current Distribution Problems in Batteries

机译:空间分辨磁场测量应用于电池中的电流分布问题

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摘要

This paper presents a novel instrumentation system for spatially resolved measurements of steady-state and slowly time-varying magnetic fields. The instrumentation system has a measurement area of 400 mm × 200 mm consisting of 256 magnetic pixels each measuring the magnetic field crossing the center of the pixel area as three orthogonal vectors. The specified minimum resolution of our chosen sensor is approximately 1.0 × 10-7 T and the maximum specified measurable magnetic field is 8.0 × 10-4 T. Magnetic field data can be recorded at approximately one frame per second. This paper also reports the application of this instrumentation system to measurements on lead acid batteries and hybridized battery ultracapacitor combinations. The objective of this paper is to infer, for the first time, the moving charge distribution inside the battery volume by measuring the magnetic field resulting from the moving charge. Empirical tests are reported which show the current distribution as a function of increasing distance down the plate away from the terminal is highly likely to be exponential in nature, with most current flowing in the uppermost portion of the battery.ud
机译:本文提出了一种新颖的仪器系统,用于对稳态和慢时变磁场进行空间分辨测量。仪器系统具有400毫米×200毫米的测量区域,该区域由256个磁性像素组成,每个磁性像素将与像素区域中心交叉的磁场作为三个正交矢量进行测量。我们选择的传感器的指定最小分辨率约为1.0×10-7 T,指定的最大可测量磁场为8.0×10-4T。磁场数据可以大约每秒一帧的速度记录。本文还报告了该仪器系统在铅酸电池和混合电池超级电容器组合测量中的应用。本文的目的是通过测量运动电荷产生的磁场,首次推断出电池体积内的运动电荷分布。报告了经验测试,结果表明,电流分布是随着平板距离端子板距离的增加而增加的,实际上,该分布很可能是指数的,大部分电流流向电池的最上部。

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