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Diversity detection in non-Gaussian noise employing the generalized approach to signal processing in noise with fading diversity channels

机译:使用渐进分集通道的噪声信号处理的非高斯噪声中的多样性检测

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In this paper, we consider the problem of M-ary signal detection based on the generalized approach to signal processing (GASP) in noise over a single-input multiple-output (SIMO) channel affected by frequency-dispersive Rayleigh distributed fading and corrupted by additive non-Gaussian noise modeled as spherically invariant random process. We derive both the optimum generalized detector (GD) structure based on GASP and a suboptimal reduced-complexity GD applying the low energy coherence approach jointly with the GASP in noise. Both GD structures are independent of the actual noise statistics. We also carry out a performance analysis of both GDs and compare with the conventional receivers. The performance analysis is carried out with reference to the case that the channel is affected by a frequency-selective fading and for a binary frequency-shift keying (BFSK) signaling format. The results obtained through both a Chernoff-bounding technique and Monte Carlo simulations reveal that the adoption of diversity also represents a suitable means to restore performance in the presence of dispersive fading and impulsive non-Gaussian noise. It is also shown that the suboptimal GD incurs a limited loss with respect to the optimum GD and this loss is less in comparison with the conventional receiver.
机译:在本文中,我们认为基于通过频率分散瑞利分布衰落和破坏的单输入多输出(SIMO)信道的信号处理(喘气)信号处理(喘气)的噪声处理(喘气)的噪声处理(喘气)的问题的问题添加剂非高斯噪声以球形不变的随机过程建模。我们从喘气和诸如诸如噪声的喘气中共同施加低能量相干方法的次优不降低复杂性GD的最佳广义探测器(GD)结构。两个GD结构都与实际的噪声统计数据无关。我们还对GDS进行了性能分析,并与传统接收器进行比较。参考信道受到频率选择性衰落的影响和二进制频移键控(BFSK)信令格式的情况进行性能分析。通过削减界限技术和蒙特卡罗模拟获得的结果表明,采用多样性也代表了在存在分散衰落和冲动的非高斯噪声存在下恢复性能的合适手段。还表明,与传统接收器相比,次优GD与最佳GD引起有限的损耗,并且与传统接收器相比,这种损耗较小。

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