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Transmit antenna selection with power and rate allocation for spatial multiplexing in distributed antenna systems

机译:具有功率和速率分配的发射天线选择,用于分布式天线系统中的空间复用

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摘要

High spectral efficiency distributed antenna systems (DAS) require vertical Bell-Labs layered space-time (V-BLAST) like spatial multiplexing schemes. However, unlike normal point-to-point multiple input multiple output (MIMO) channels, DAS channels have different large-scale fadings from different transmit antennas, thus making equal power and rate transmission that is feasible in MIMO channels unrealistic in DAS channels. This paper proposes a novel transmit antenna selection scheme with power and rate allocation. The scheme is based on large-scale fading (shadow fading and path loss) and is suitable for VBLAST structures with zero-forcing and successive interference cancellation (ZF-SIC) receivers, ensuring balanced average symbol error rate (SER) performance in each layer. On the receiver side, a fixed detection order is used, which is obtained in the transmit antenna selection process. Simulation results show that the proposed scheme gives good performance gains over equal power and rate transmission systems without antenna selection.
机译:高频谱效率的分布式天线系统(DAS)需要像空间复用方案一样的垂直Bell-Labs分层时空(V-BLAST)。但是,与正常的点对点多输入多输出(MIMO)通道不同,DAS通道具有来自不同发射天线的不同大规模衰落,因此,在MIMO通道中可行的相等功率和速率传输在DAS通道中是不现实的。本文提出了一种具有功率和速率分配的新型发射天线选择方案。该方案基于大规模衰落(阴影衰落和路径损耗),适用于具有零强迫和连续干扰消除(ZF-SIC)接收器的VBLAST结构,从而确保了每层均衡的平均符号误码率(SER)性能。在接收方,使用固定的检测顺序,该顺序在发送天线选择过程中获得。仿真结果表明,该方案在不选择天线的情况下,在相同功率和速率的传输系统上具有良好的性能增益。

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