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Roving Sources, Simulation and Reciprocity

机译:粗纱来源,模拟和互惠

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Detailed herein is a post-processing method for modeling the fields of a roving source in an inhomogeneous environment. The method invokes the reciprocity theorem and employs the concept of calibration length and area for the antennas of the problem space. Because the reciprocity theorem is a statement about projections, we show why six simulations are needed to obtain the six components of the electromagnetic field. Detailed FDTD simulations are conducted and validated by measured data, as obtained from several experiments conducted at Lake Pend Oreille, Idaho, USA. Other numerical methods (i.e., finite element, Sommerfeld full-wave, quasi-electrostatic) are also considered to provide additional validation. The problem is germane to naval applications, which justifies the use of extremely low frequencies in the experiment and simulations.
机译:本文详细描述了一种用于在非均匀环境中对粗纱源场进行建模的后处理方法。该方法调用互易定理,并为问题空间的天线采用校准长度和面积的概念。因为互易性定理是关于投影的陈述,所以我们说明了为什么需要六个模拟才能获得电磁场的六个分量。通过在美国爱达荷州Pend Oreille湖进行的几次实验获得的实测数据,进行了详细的FDTD模拟并得到了验证。还考虑了其​​他数值方法(即有限元,Sommerfeld全波,准静电)来提供额外的验证。这个问题与海军应用密切相关,后者证明了在实验和模拟中使用极低的频率是合理的。

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