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Rayleigh-normalized Gaussian noise in blind signal fusion

机译:盲信号融合中的瑞利归一化高斯噪声

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This paper builds upon a previously defined fusion process that exploits multichannel receiver diversity to enhance received SNR. This particular diversity combiner aims to enhance SNR under the challenging constraints that channel gains are unknown, there is no direct knowledge of the transmitted signal, and no opportunity to precode the signal into a known waveform. Thus, fusion is blind in the sense that indirect techniques are invoked to intelligently weight each sample during fusion, and to measure the outcome. Having already established a critical threshold that determines whether fusion does or does not enhance SNR, this paper takes the next step by pursuing rigorous analytical development of a statistical noise model for the effects of the combiner. We provide the probability distributions of this noise, termed Rayleigh-normalized Gaussian. With the probability distributions in hand, we apply them to sample sets of various sizes to understand how the combiner behaves with each incremental sample. This allows us to investigate the likelihood that the critical threshold for SNR gain is met, relative to additional samples, as well as the likelihood of meeting arbitrary target SNR gains. We also develop an expression for the average power of the Rayleigh-normalized Gaussian noise variable.
机译:本文在先前定义的融合过程中建立了利用多通道接收器分集来增强所接收的SNR。这种特定的多样性组合器旨在在频道增益未知的具有挑战性的限制下增强SNR,没有直接了解发送信号,并且没有机会将信号预先将信号预先生成已知的波形。因此,在融合期间调用间接技术以智能地重量每个样品的感觉,融合是盲目的,并测量结果。已经建立了确定融合是否融合或不增强SNR的临界阈值,本文通过追求统计噪声模型的严格分析开发来利用用于组合器的效果的统计噪声模型进行下一步。我们提供了这种噪声的概率分布,称为瑞利归一化高斯。通过手中的概率分布,我们将它们应用于各种尺寸的样本,以了解组合器如何与每个增量样本的行为。这使我们能够研究相对于其他样本满足SNR增益的临界阈值的可能性,以及满足任意目标SNR增益的可能性。我们还开发了瑞利归一化高斯噪声变量的平均功率的表达。

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