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Asymptotic Analysis of RZF Over Double Scattering Channels With MMSE Estimation

机译:MMSE估计的双散射通道RZF的渐近分析。

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This paper studies the ergodic rate performance of regularized zero-forcing (RZF) precoding in the downlink of a multi-user multiple-input single-output (MISO) system, where the channel between the base station (BS) and each user is modeled by the double scattering model. This non-Gaussian channel model is a function of both the antenna correlation and the structure of scattering in the propagation environment. This paper makes the preliminary contribution of deriving the minimum-mean-square-error (MMSE) channel estimate for this model. Then under the assumption that the users are divided into groups of common correlation matrices, this paper derives deterministic approximations of the signal-to-interference-plus-noise ratio (SINR) and the ergodic rate, which are almost surely tight in the limit that the number of BS antennas, the number of users, and the number of scatterers in each group grow infinitely large. The derived results are expressed in a closed-form for the special case of multi-keyhole channels. The simulation results confirm the close match provided by the asymptotic analysis for moderate system dimensions. We show that the maximum number of users that can be supported simultaneously, while realizing large-scale MIMO gains, is equal to the number of scatterers.
机译:本文研究了多用户多输入单输出(MISO)系统的下行链路中的正则归零强制(RZF)预编码的遍历速率性能,其中对基站(BS)和每个用户之间的信道进行了建模通过双重散射模型。这种非高斯信道模型是天线相关性和传播环境中散射结构的函数。本文为推导该模型的最小均方误差(MMSE)信道估计做出了初步贡献。然后,在假设将用户划分为通用相关矩阵的组的前提下,本文得出了信号干扰干噪比(SINR)和遍历率的确定性近似值,它们在一定范围内几乎肯定是严格的BS天线的数量,用户的数量以及每组中的散射器数量会无限增加。对于多匙孔通道的特殊情况,得出的结果以封闭形式表示。仿真结果证实了渐进分析为中等系统尺寸提供的紧密匹配。我们显示,在实现大规模MIMO增益的同时,可以同时支持的最大用户数量等于散射体的数量。

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