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通过式和手持式金属探测器周围磁场的特性

Characterization of the magnetic fields around walk-through and hand-held metal detectors.

作者信息

Boivin W, Coletta J, Kerr L

机构信息

U.S. Food and Drug Administration, Winchester Engineering and Analytical Center, 109 Holton Street, Winchester, MA 01890, USA.

出版信息

Health Phys. 2003 May;84(5):582-93. doi: 10.1097/00004032-200305000-00003.

Abstract

Magnetic field strength measurements were made around eight hand-held and 10 walk-through metal detectors. The method was similar to that used in previous research for Electronic Article Surveillance units except a Cartesian rather than cylindrical coordinate system was used. Special magnetic field probes specifically designed for metal detector measurements were used. A non-metallic positioning apparatus was designed and fabricated. Magnetic field strength measurements were collected on one hand-held metal detector in the laboratory. The remaining data were collected at airport terminals, federal and state government buildings, and a local high school. Walk-through metal detectors had considerably higher magnetic field strengths [up to 299 Am(-1) p-p (3,741 mG)] than hand-held metal detectors [up to 6 Am(-1) p-p (76 mG)]. The frequencies of the magnetic field signal for walk-through detectors were between 0.1 kHz and 3.5 kHz while those for hand-held detectors were between 89 kHz and 133 kHz. Waveforms for all hand-held metal detectors were sinusoidal; those for walk-through metal detectors varied with most being saw-toothed or pulsed. Due to their higher field strengths and the pulsed nature of their magnetic fields, walk-through metal detectors likely pose a higher risk for medical device electromagnetic interference than do hand-held units. Root mean squared magnetic field strengths were calculated from the peak-to-peak values and compared to occupational and general public exposure limits. None of these limits were exceeded. Measurement repeatability was examined for one hand-held and two walk-through metal detectors. For the hand-held metal detector measurements at the location of the maximum magnetic field strength, measurements by three individuals had a repeatability (percent standard deviation) of 5.9%. Limited repeatability data were collected for on-site measurements of walk-through detectors. One unit showed repeatability of 0.1 to 4.5%; a multi-zone unit showed repeatability of 2.7 to 67.5%.

摘要

在八个手持式金属探测器和十个通过式金属探测器周围进行了磁场强度测量。该方法与先前用于电子商品监视装置的研究方法类似,只是使用的是笛卡尔坐标系而非圆柱坐标系。使用了专门为金属探测器测量设计的特殊磁场探头。设计并制造了一个非金属定位装置。在实验室中对一个手持式金属探测器进行了磁场强度测量。其余数据在机场候机楼、联邦和州政府大楼以及当地一所高中收集。通过式金属探测器的磁场强度[高达299安每米峰峰值(3741毫高斯)]比手持式金属探测器[高达6安每米峰峰值(76毫高斯)]高得多。通过式探测器的磁场信号频率在0.1千赫兹至3.5千赫兹之间,而手持式探测器的频率在89千赫兹至133千赫兹之间。所有手持式金属探测器的波形都是正弦波;通过式金属探测器的波形各不相同,大多数是锯齿波或脉冲波。由于通过式金属探测器具有更高的场强和磁场的脉冲特性,它们可能比手持式金属探测器对医疗设备电磁干扰构成更高的风险。根据峰峰值计算了均方根磁场强度,并与职业和公众暴露限值进行了比较。这些限值均未被超过。对一个手持式金属探测器和两个通过式金属探测器进行了测量重复性检查。对于在最大磁场强度位置的手持式金属探测器测量,三名人员的测量重复性(标准偏差百分比)为5.9%。收集了有限的通过式探测器现场测量重复性数据。一个单元的重复性为0.1%至4.5%;一个多区域单元的重复性为2.7%至67.5%。

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