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Minimum-noise-variance beamformer with an electromagnetic vector sensor

机译:带有电磁矢量传感器的最小噪声方差波束形成器

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摘要

We study the performance of the minimum-noise-variance beamformer employing a single electromagnetic (EM) vector sensor that is capable of measuring the complete electric and magnetic fields induced by EM signals at one point. Two types of signals are considered: one carries a single message, and the other carries two independent messages simultaneously. The state of polarization of the interference under consideration ranges from completely polarized to unpolarized. We first obtain explicit expressions for the signal to interference-plus-noise ratio (SINR) in terms of the parameters of the signal, interference, and noise. Then, we discuss some physical implications associated with the SINR expressions. These expressions provide a basis for effective interference suppression as well as generation of dual-message signals of which the two message signals have minimum interference effect on one another. We also analyze the characteristics of the main-lobe and side-lobe of the beampattern of an EM vector sensor and compare them with other types of sensor arrays.
机译:我们研究了采用单个电磁(EM)矢量传感器的最小噪声方差波束形成器的性能,该传感器能够在某一点测量由EM信号感应的完整电场和磁场。考虑两种类型的信号:一种承载单个消息,另一种同时承载两个独立的消息。考虑中的干扰的极化状态从完全极化到非极化。我们首先根据信号,干扰和噪声的参数获得信噪比(SINR)的明确表达式。然后,我们讨论与SINR表达式相关的一些物理含义。这些表述为有效的干扰抑制以及双消息信号的产生提供了基础,其中两个消息信号对彼此的干扰影响最小。我们还分析了EM矢量传感器的波束图案的主瓣和旁瓣的特征,并将它们与其他类型的传感器阵列进行比较。

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