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Performance of Zero-forcing and Block-Diagonalization methods for cooperative MIMO Downlink base stations in the presence of channel estimation errors

机译:在信道估计误差存在下,在存在信道估计错误中的合作MIMO下行链路基站的零强制和块对角化方法的性能

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In this paper, we consider the transmission coordination among multiple cell sites, namely the Coordinated MultiPoint (CoMP) transmission scheme, where several Base Stations (BSs) cooperate to serve a set of Mobile Stations (MSs) and both BSs and MSs are equipped with multiple antennas. We model this multicell cooperative system under the presence of channel estimation errors that can significantly influence the obtained results. We derive the exact sum rate expression of the multicell cooperative system in the presence of channel estimation errors and we evaluate the performance of the Block-Diagonalization (BD) and Zero-forcing (ZF) beamforming approaches. Furthermore, we investigate a power allocation policy that maximizes the system sum rate in the presence of channel estimation errors. We show that in the multicell cooperative system, the performance of the BD or ZF beamforming approaches in terms of the maximization of the system sum rate, depends essentially on the system configuration parameters (i.e., number of antennas per BS and per MS). Simulation results are given to support our claims.
机译:在本文中,我们考虑多个小区站点之间的传输协调,即协调的多点(COMP)传输方案,其中几个基站(BS)配合用于服务一组移动站(MSS),并且BSS和MSS都配备了多个天线。我们在存在通道估计误差的情况下模拟该多用途协作系统,这可以显着影响获得的结果。我们在信道估计误差存在下导出多单元合作系统的精确总和速率表达,并且我们评估块对角线化(BD)和零强制(ZF)波束成形方法的性能。此外,我们调查了在存在信道估计错误的情况下最大化系统和速率的功率分配策略。我们显示在MultiCell协作系统中,在系统和速率的最大化方面,BD或ZF波束成形方法的性能基本上取决于系统配置参数(即,每个BS的天线数和每毫秒)。仿真结果得到了支持我们的索赔。

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