先进离散时间RAKE接收机的性能

T. Baykaş, A. Yongaçoğlu
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引用次数: 0

摘要

在本文中,我们研究了几种先进的离散时间RAKE接收机在信道统计估计误差影响下的性能。第一个接收机的名称是去相关离散时间RAKE接收机(D-DTR),它提高了在漫射信道中存在信道估计误差时的性能。第二个接收器是广义RAKE (G-DTR)接收器的离散时间版本。G-DTR已被提出用于相关干扰抑制。最后一种系统是广义去相关离散RAKE接收机(GD-DTR),它结合了D-DTR和G-DTR的优点。文献表明,D-DTR对信道协方差矩阵的估计很敏感。在这项工作中,我们降低了这种灵敏度,根据我们在最坏情况下的结果,D-DTR的性能等于传统的离散时间RAKE接收器(C-DTR)。对于GD-DTR,我们引入了一种非常简单的估计噪声加干扰统计量的方法,并对D-DTR的信道统计量估计方法进行了改进,使其适用于GD-DTR。我们的模拟表明,与C-DTR相比,GD-DTR需要高于某个阈值的估计质量才能获得性能增益
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Advanced Discrete-Time RAKE Receivers
In this paper, we investigate the performance of several advanced discrete-time RAKE receivers under the effect of channel statistics estimation errors. The name of the first receiver is the decorrelating discrete-time RAKE receiver (D-DTR), which improves the performance in the presence of channel estimation errors in diffuse channels. The second receiver is the discrete-time version of the generalized RAKE (G-DTR) receiver. The G-DTR has been proposed for correlated interference mitigation. The last system is the generalized decorrelating discrete-time RAKE receiver (GD-DTR), which combines the benefits of the D-DTR and the G-DTR. In the literature, it is shown that the D-DTR is sensitive to the estimation of the channel covariance matrix. In this work, we reduced this sensitivity and according to our results in worst case scenario the performance of the D-DTR is equal to a conventional discrete-time RAKE receiver (C-DTR). For the case of the GD-DTR, we introduce a very simple method for the estimation of the noise plus interference statistics and we modify the channel statistics estimation method of the D-DTR to be valid for the GD-DTR. Our simulations show that the GD-DTR needs an estimation quality above some threshold for a performance gain compared to the C-DTR
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