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Accurate Radiation-Pattern Measurements in a Time-Reversal Electromagnetic Chamber

机译:逆时电磁室中的精确辐射图测量

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摘要

In a recent paper [1], we introduced the concept of the time-reversal electromagnetic chamber (TREC), a new facility for creating coherent wavefronts within a reverberation chamber. This facility, based on the use of time-reversal techniques in a reverberating environment, is shown here to also be a useful tool for the characterization of the field radiated by an antenna under test (AUT). The time-reversal electromagnetic chamber has proven to be capable of providing real-time measurements, with accuracy typically better than fdB over the main Iobes, while-using a limited number of static probe antennas. This performance is made possible by taking advantage of the reflections over the chamber's walls in order to gain access to the field radiated along all directions, with no need to mechanically displace the probes, or to have a full range of electronically switched probes. A two-dimensional numerical validation supported this approach, proving that the proposed procedure allows the retrieval of the free-space radiation pattern of the AUT.
机译:在最近的一篇论文中[1],我们介绍了时间反转电磁室(TREC)的概念,这是一种在混响室内创建相干波前的新设备。在混响环境中基于时间反转技术的使用,该功能在此处也显示出了用于表征被测天线(AUT)辐射场的有用工具。事实证明,时间反向电磁室能够提供实时测量,在使用有限数量的静态探针天线的同时,其精度通常比主要Iobe的fdB好。通过利用腔室壁上的反射来获得此性能,从而可以访问沿所有方向辐射的场,而无需机械移动探针或使用全套电子开关探针。二维数值验证支持这种方法,证明了所提出的程序允许检索AUT的自由空间辐射方向图。

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