Currents Induced on Conducting Rods by Near and Far Zone Sources

L. Tsai, T. Wu, C.R. Longcor, G. Brown
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Abstract

Missies in flight are often immersed in an elec­ tromagnetic environment. Whether desirable or not, this EMC situation may cause undue influences on per­ formance of on-board subsystems. To measure these effects, it invariably becomes necessary to experimen­ tally test real-life systems on an antenna range. To cover all threats, large frequency bands as well as high field intensities are needed. Thus the use of near-zone transmitting antennas are often required. The simulation validity of such a test arrangement is a cause for concern, since in flight, the missile experiences plane wave incidence. Are there then significant differences in system response when caused by the near-zone source fields compared to plane wave fields? More importantly, how far away does the source have to be to achieve valid simulation? Since the cost of the test facility depends directly on the power needed, which in turn depend on the separation distance, the answers to these questions are therefore of cri­ tical concern.
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近区源和远区源在导电棒上感应的电流
飞行中的导弹经常处于电磁环境中。无论是否需要,这种EMC情况都可能对机载子系统的性能造成不适当的影响。为了测量这些影响,总是有必要在天线范围内对实际系统进行实验测试。为了覆盖所有威胁,需要大频段和高场强。因此,通常需要使用近区发射天线。这种试验布置的仿真有效性值得关注,因为导弹在飞行中会经历平面波入射。那么,与平面波场相比,由近区源场引起的系统响应是否存在显著差异?更重要的是,信号源要离我们多远才能实现有效的模拟?由于测试设备的成本直接取决于所需的电力,而所需的电力又取决于分离距离,因此这些问题的答案是至关重要的。
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