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Use of the impedance method for ICNIRP-related compliance testing of electronic article surveillance devices

机译:阻抗方法在电子商品监视设备的ICNIRP相关符合性测试中的用途

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Electronic article surveillance (EAS) systems based on the use of alternating magnetic fields at frequencies up to 10-20 MHz are being rapidly introduced into society to prevent unauthorized removal of items from stores, libraries, and hospitals. The EAS systems may take the form of one or two-sided panels of current-carrying loops or pillars at or near the exit door, and loops hidden in the ceiling and/or the mat on the floor. Another manifestation is the magnetic tag deactivation systems that are mounted as checkout counter top devices. The net result is that an individual passing through or standing close to these devices is exposed to nonuniform vector magnetic fields emanating from these EAS systems. Limits of induced current densities in the human body have been prescribed in the IEEE and ICINIRP standards that may not be exceeded for exposure of the general public or for occupational situations. Computational methods using heterogeneous anatomically-based models of the human body are acceptable to show compliance of new EAS devices. For the present paper, we have used the widely accepted 3-D impedance method to calculate the currents induced in the human body for some representative EAS devices. Since the purpose of the paper is to illustrate the approach and the kind of results that one may expect, the geometrical configurations, the ampere turns and the frequencies have been altered from those used in commercial devices.
机译:基于在高达10-20 MHz的频率上使用交变磁场的电子商品监视(EAS)系统正在迅速引入社会,以防止未经授权从商店,图书馆和医院搬走物品。 EAS系统可以采取在出口门处或附近的载流回路或支柱的一侧或两侧面板的形式,以及隐藏在天花板和/或地板上的回路的回路。另一个体现是安装为结帐柜台顶部设备的磁性标签停用系统。最终结果是,穿过或靠近这些设备的人会受到这些EAS系统发出的不均匀矢量磁场的影响。 IEEE和ICINIRP标准已经规定了人体感应电流密度的极限,对于普通大众或职业场合,不得超过这些极限。使用显示基于人体解剖学的异构模型的计算方法是可以接受的,以表明新的EAS设备的合规性。对于本文,我们已经使用了广泛接受的3-D阻抗方法来计算一些代表性EAS设备在人体中感应的电流。由于本文的目的是说明这种方法以及人们可能期望得到的结果,因此与商用设备中使用的几何形状,安培匝数和频率相比,它们已经发生了变化。

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