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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Immunity Tests of Implantable Cardiac Pacemaker Against CW and Pulsed ELF Fields: Experimental and Numerical Results
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Immunity Tests of Implantable Cardiac Pacemaker Against CW and Pulsed ELF Fields: Experimental and Numerical Results

机译:植入式心脏起搏器对连续波和脉冲ELF场的免疫测试:实验和数值结果

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摘要

The aim of the present work is to investigate pacemaker (PMK) immunity against high-level extremely low frequency (typically 50 Hz) magnetic fields that can be found in industrial environment where high power machines operate. To that purpose, a test bench has been set up using a Helmholtz coil for producing extremely low frequency magnetic fields and a trunk simulator rightly fed by cardiac signals. A widely used PMK was tested, and results have been reported, under different operating conditions, for both continuous waves and variously pulsed excitations. A numerical tool has also been developed to analyze the realized test bench, based on a proper discretization of a human trunk simulation and on the construction of an equivalent three-dimensional (3-D) network. Numerical results have showed a good agreement with the experimental results.
机译:本工作的目的是研究起搏器(PMK)对高功率极低频率(通常为50 Hz)磁场的抵抗力,这种磁场可在大功率机器运行的工业环境中找到。为了这个目的,已经建立了使用亥姆霍兹线圈的测试台,该线圈用于产生极低频的磁场,并且躯干模拟器正确地由心脏信号馈送。测试了广泛使用的PMK,并已报告了在不同操作条件下连续波和各种脉冲激励的结果。基于人的躯干模拟的适当离散化和等效的三维(3-D)网络的构造,还开发了一种数字工具来分析已实现的测试台。数值结果与实验结果吻合良好。

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