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Uplink MIMO for HSPA

机译:用于HSPA的上行MIMO

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摘要

Multiple-input multiple-output (MIMO) techniques were recently proposed for HSUPA in 3GPP. In this paper, we show that compared to the baseline non-MIMO transmission, the beam-forming closed loop transmission diversity (CLTD) can provide clear UE Tx power saving but sometimes only little throughput gain. Spatial multiplexing can provide substantial throughput gain while the cost in increased UE Tx power can be limited by e.g. adopting rank two transmission only under favorable channel condition. With proper rank adaptation a MIMO transmission supporting spatial multiplexing can provide 15% to 30% throughput gain compared to the baseline nonMIMO transmission for 2 Rx antennas while 20% to 60% throughput gain for 4 Rx antennas. With pure beam-forming CLTD the throughput gain is less than 13.5% for 2 Rx antennas while just 1.5% or less for 4 Rx antennas.
机译:最近针对3GPP中的HSUPA提出了多输入多输出(MIMO)技术。在本文中,我们表明,与基线非MIMO传输相比,波束成形闭环传输分集(CLTD)可以提供清晰的UE Tx功耗节省,但有时只有很少的吞吐量增益。空间多路复用可以提供可观的吞吐量增益,而增加的UE Tx功率中的成本可以受到例如限制。仅在有利的信道条件下采用二级传输。与2个Rx天线的基准非MIMO传输相比,通过适当的秩自适应,支持空间复用的MIMO传输可提供15%至30%的吞吐量增益,而对于4个Rx天线则可提供20%至60%的吞吐量增益。使用纯波束成形CLTD时,对于2个Rx天线,吞吐量增益小于13.5%,而对于4个Rx天线,吞吐量增益仅为1.5%或更低。

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