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基于相关性的加载混响室内的不确定性

Correlation-Based Uncertainty in Loaded Reverberation Chambers.

作者信息

Becker Maria G, Frey Michael, Streett Sarah, Remley Kate A, Horansky Robert D, Senic Damir

机构信息

National Institute of Standards and Technology, Boulder, CO 80305 USA. She is now with the Hastings College, Hastings, NB 68901 USA.

National Institute of Standards and Technology, Boulder, CO 80305 USA.

出版信息

IEEE Trans Electromagn Compat. 2018 Oct;66(10). doi: 10.1109/tap.2018.2860126.

Abstract

When reverberation chambers are loaded to increase the coherence bandwidth for modulated-signal measurements, a secondary effect is decreased spatial uniformity. We show that an appropriate choice of stirring sequence, consisting of a combination of mode-stirring mechanisms such as paddle and antenna-platform stirring, can mitigate the potential for increased uncertainty. We develop a new mode-stirring sample correlation model for uncertainty due to the stirring sequence. In a comparison with an empirical uncertainty analysis, the model is found to have an agreement within 2.5%. Our analysis is demonstrated for four loading cases in each of three reverberation chambers. The model is used to determine an optimal stirring sequence for a given chamber setup directly from correlations associated with each stirring mechanism. The model can also be understood in terms of the entropy of a measurement and it is shown that maximizing the entropy corresponds to a minimized uncertainty. The method presented here not only provides insight into sources of uncertainty but also allows users to determine an optimal mode-stirring sequence with minimized uncertainty for a given chamber setup.

摘要

当混响室被加载以增加用于调制信号测量的相干带宽时,一个次要影响是空间均匀性降低。我们表明,由诸如桨叶搅拌和天线平台搅拌等模式搅拌机制组合而成的适当搅拌序列选择,可以减轻不确定性增加的可能性。我们针对因搅拌序列导致的不确定性开发了一种新的模式搅拌样本相关模型。在与经验不确定性分析的比较中,发现该模型的一致性在2.5%以内。我们针对三个混响室中的每一个的四种加载情况进行了分析。该模型用于直接根据与每种搅拌机制相关的相关性来确定给定腔室设置的最佳搅拌序列。该模型也可以从测量的熵的角度来理解,并且表明最大化熵对应于最小化不确定性。这里提出的方法不仅深入了解了不确定性的来源,还允许用户为给定的腔室设置确定具有最小不确定性的最佳模式搅拌序列。

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本文引用的文献

1
A Significance Test for Reverberation-Chamber Measurement Uncertainty in Total Radiated Power of Wireless Devices.
IEEE Trans Electromagn Compat. 2016 Feb;58(1). doi: 10.1109/temc.2015.2481891.

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