磁感应层析成像硬件测量中霍尔效应传感器应用的初步结果

Zulkarnay Zakaria, Noor Aqma Hj. Mohd Yazid, N. H. Jaafar, M. F. Jumaah, M. Mansor, R. Abdul Rahim
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引用次数: 4

摘要

磁感应层析成像(MIT)是一种新技术,它补充了其他层析成像方法,如超声波、光学、电容和其他几种方法。这种类型的断层扫描应用磁场来检测要成像的物体的存在。构建磁感应硬件的方法有几种。大多数研究人员都使用线圈作为发射器和接收器,这更复杂,需要更大的空间。霍尔效应传感器(HES)具有取代接收器侧线圈的潜力,因为它具有测量磁场强度值并将其转换为电压值的能力。这个概念与超声层析成像仪器硬件中使用的超声波传感器相同。结果表明,每种材料的8种霍尔效应传感器捕获数据的模式几乎是相同的。这为HES在MIT测量系统中的应用提供了积极的信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Initial results on magnetic induction tomography hardware measurement using hall effect sensor application
Magnetic induction tomography (MIT) is among the new technology that compliment other tomography methods such as ultrasonic, optical, capacitance and several others. This type of tomography applies the magnetic field to detect the existence of the object that is going to image. Several methods are possible in constructing the magnetic induction hardware. Most of the researchers used coils for both transmitter and receiver which are more complicated and need large space. The Hall Effect sensors (HES) have the potential of replacing the coil at the receiver side since it has the ability to measure the value of magnetic field strength and convert it to voltage value. This concept is same as the ultrasonic sensors used in ultrasonic tomography instrumentation hardware. The results have shown that the pattern of capture data by hall effect sensor are almost the same pattern for all 8 sensors for each material used. This have given positive sign that HES is capable to be applied in MIT measurement system.
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