A MIMO parameter estimation model taking Ricean fading channel and stochastically uncorrelated signals into account. Part I. Inherent accuracy limitations

Bamrung Tau Sieskul, S. Jitapunkul
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引用次数: 2

Abstract

In this paper, a MIMO channel model accounted for Ricean fading and stochastically uncorrelated signals is proposed for the problem of estimating three important parameters of wireless channel, such as the nominal direction, the angular spread and the Ricean factor. Although such a problem formulation captures so many physical scattering features into a parametric channel model, we elaborate the second-order statistic in such a way that the array covariance matrix depends on five parameters. To inspect the achievable performance of parameter estimation, we derive all necessary derivatives of complex gradient matrix to compute the inherent accuracy limitation based on the Cramer-Rao bound. Herein, the estimation possibility and theoretical analysis are pictorially illustrated and therefore able to reflect various relationships.
考虑Ricean衰落信道和随机不相关信号的MIMO参数估计模型。固有的精度限制
针对无线信道标称方向、角扩展和Ricean因子三个重要参数的估计问题,提出了一种考虑Ricean衰落和随机不相关信号的MIMO信道模型。尽管这样的问题公式将如此多的物理散射特征捕获到参数通道模型中,但我们以这样一种方式阐述二阶统计量,即阵列协方差矩阵依赖于五个参数。为了检验参数估计的可实现性能,我们推导了基于Cramer-Rao界的复梯度矩阵的所有必要导数来计算固有的精度限制。在这里,估计的可能性和理论分析是图解说明,因此能够反映各种关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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