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Reliable Finite-Difference Time-Domain Simulations of Reverberation Chambers by Using Equivalent Volumetric Losses

机译:使用等效体积损失的混响室可靠的时差有限域模拟

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A numerical code based on the finite-difference time-domain technique is adopted to simulate a large reverberation chamber including the stirrers and the actual antenna presence in the frequency range 200–1000 MHz. The power of the code lies in the parallelization that allows the execution on high-performance computers. Chamber losses are accounted for by introducing virtual volumetric losses in the hypothesis of ideal conductor walls. The correction that arises from this choice which allows us to speed up the numerical computation is verified by a comparison with the case of wall losses implemented by assuming a finite conductivity. The analysis of the statistics of the chamber field, stirrer uncorrelated positions, Rician K-factor, backscatter, and field uniformity returns overlapping results for the two techniques. The analysis of the spatial field correlation within a spatial grid shows a correlation greater than 0.5 in the whole frequency range and for all stirrer angles, so confirming the equivalence of the two methods to manage losses.
机译:采用基于有限差分时域技术的数字代码来模拟大型混响室,其中包括搅拌器和200-1000 MHz频率范围内的实际天线。代码的功能在于并行化,该并行化可在高性能计算机上执行。通过在理想导体壁的假设中引入虚拟体积损耗来解决腔室损耗。通过与假设有限电导率实现的壁损耗情况进行比较,可以验证这种选择所引起的校正,该校正使我们可以加快数值计算的速度。对腔室场,搅拌器不相关位置,Rician K因子,反向散射和场均匀性的统计分析返回两种技术的重叠结果。对空间网格内空间场相关性的分析显示,在整个频率范围内以及所有搅拌器角度下,相关性均大于0.5,因此确认了两种用于管理损耗的方法的等效性。

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