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A new sensor structure for the measurement of an electromagnetic pulse

机译:一种用于测量电磁脉冲的新型传感器结构

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Harry Diamond Laboratories (HDL), Woodbridge, VA, currently uses groundplane version electric- and magnetic-field sensors to measure the electric and magnetic fields produced during a simulated high-altitude electromagnetic pulse (HEMP). These sensors are also used for the measurement of such pulsed fields in the vicinity of metallic enclosures. A new sensor structure has been developed to measure the electric and magnetic fields accurately. The authors have recently fabricated and mounted a hollow metallic cylinder behind the sensor''s 0.218-m (8 1/2 in) ground plane to house a fiber-optic transmitter, amplifiers, and other equipment necessary for data collection. The presence of this metallic cylinder increases (“enhances”) the amplitude of a signal when measured with this new sensor structure geometry (“sensor/cylinder”). The electric- and magnetic-field enhancements caused by the presence of this metallic cylinder were measured in both the frequency and time domains. The enhancement was also calculated numerically using a three-dimensional finite-difference code. To eliminate unwanted field coupling to the sensor''s coaxial signal cable, the output of the sensor is transmitted through fiber-optic cables to remotely located recording equipment. In the frequency domain, the enhancements for both the electric and magnetic field were determined using a large transverse electromagnetic (TEM) cell. In the time domain, the enhancements were determined by comparing simulated HEMP fields measured with this sensor/cylinder to those measured with miniature electric- and magnetic-field sensors. The degree of enhancement of this sensor/cylinder will vary as a function of distance when the sensor/cylinder is placed next to a conducting object, such as a metallic shelter. These enhancements were also determined using miniature electric- and magnetic-field sensors.
机译:弗吉尼亚州伍德布里奇的哈里钻石实验室(HDL)当前使用地平面版本的电场和磁场传感器来测量模拟高空电磁脉冲(HEMP)期间产生的电场和磁场。这些传感器还用于测量金属外壳附近的此类脉冲场。已经开发出一种新的传感器结构来精确地测量电场和磁场。作者最近在传感器的0.218米(8 1/2英寸)接地平面后方制造并安装了一个空心金属圆柱体,以容纳一个光纤发射器,放大器和其他数据收集所需的设备。当使用这种新的传感器结构几何形状(“传感器/圆柱体”)进行测量时,该金属圆柱体的存在会增加(“增强”)信号的幅度。在频域和时域中都测量了由该金属圆柱体引起的电场和磁场增强。还使用三维有限差分代码以数值方式计算了增强效果。为了消除与传感器同轴信号电缆的有害场耦合,传感器的输出通过光纤电缆传输到远程的记录设备。在频域中,使用大型横向电磁(TEM)单元确定电场和磁场的增强。在时域中,通过将使用此传感器/气缸测量的模拟HEMP磁场与使用微型电场和磁场传感器测量的模拟HEMP磁场进行比较来确定增强效果。当将传感器/圆柱体放置在导电物体(例如金属掩体)旁边时,该传感器/圆柱体的增强程度将根据距离而变化。还使用微型电场和磁场传感器确定了这些增强功能。

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