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A spatial diversity reception of binary signal transmission over Rayleigh fading channels with correlated impulse noise

机译:具有相关脉冲噪声的瑞利衰落信道上二进制信号传输的空间分集接收

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摘要

A Class-A density is well known to model interference, which is impulsive by nature. This model is expressed as a weighted infinite linear combination of Gaussian densities with different variances. The extension of this model for multiple receiving antennas is currently limited to two antennas. An algebraic extension leads to a multivariate Class-A density, which can be used for an arbitrary number of antennas. In this paper, we consider the design of optimum diversity combining for Rayleigh fading channels in the presence of Class-A interference. Since recent studies show a significant level of noise correlation in some wireless systems, we begin with a correlated multivariate Class-A model. Then, we show that the optimum combiner can be approximated by a maximum ratio combiner (MRC) preceded by noise decorrelators, which has a much lower complexity compared with the optimum one. When the interference is uncorrelated, we prove that the conventional MRC approximates the optimum combining.
机译:众所周知,A类密度可以模拟干扰,这种干扰本质上是脉冲性的。该模型表示为具有不同方差的高斯密度的加权无限线性组合。该模型对于多个接收天线的扩展目前仅限于两个天线。代数扩展导致多元A类密度,可用于任意数量的天线。在本文中,我们考虑在存在A类干扰的情况下针对瑞利衰落信道的最佳分集组合设计。由于最近的研究表明在某些无线系统中噪声相关性水平很高,因此我们从相关的多元A类模型开始。然后,我们表明,最佳组合器可以由最大比合并器(MRC)逼近,而最大比合并器之前是噪声解相关器,与最佳解组合器相比,其复杂度要低得多。当干扰不相关时,我们证明了传统的MRC近似于最佳组合。

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