MIMO Layer Shifting for LTE-Advanced Uplink

C. Park, D. Hammarwall, George Jöngren
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Abstract

Abstract-In this paper, multiple-input multiple-output (MIMO) layer shifting with cubic metric (CM) preserving precoder and downlink control signal sharing is proposed as a uplink transmission scheme for 3GPP Long Term Evolution (LTE). The design criteria for CM preserving precoder are presented and uplink precoder is designed accordingly. By sharing MCS (modulation and coding scheme) and/or HARQ (hybrid automatic repeat request) among codewords, downlink control signal sharing reduces the control signal overhead at the expense of performance degradation, which motivates this paper. The proposed MIMO layer shifting on a per SC-FDMA (single-carrier frequency division multiple access) symbol basis eliminates the discrepancy of channel quality among codewords, and thus improves the performance in the presence of MCS and/or HARQ sharing. Simulation results show that layer shifting is beneficial to both minimum mean square error (MMSE) and successive interference cancellation (SIC) receivers.
LTE-Advanced上行链路的MIMO层移位
摘要:本文提出了一种多输入多输出(MIMO)层移位、立方度(CM)保持预编码器和下行控制信号共享的3GPP长期演进(LTE)上行传输方案。提出了保CM预编码器的设计准则,并据此设计了上行预编码器。下行控制信号共享通过在码字之间共享MCS(调制和编码方案)和/或HARQ(混合自动重复请求),以降低性能为代价降低控制信号开销,这是本文的研究动机。所提出的基于SC-FDMA(单载波频分多址)符号的MIMO层移位消除了码字之间信道质量的差异,从而提高了在MCS和/或HARQ共享情况下的性能。仿真结果表明,层移对最小均方误差(MMSE)和连续干扰消除(SIC)接收机都是有利的。
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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