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Performance and design of SIC receiver for downlink NOMA with open-loop SU-MIMO

机译:开环SU-MIMO的下行链路NOMA的SIC接收机的性能与设计

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This paper investigates the performance and design of successive interference cancellation (SIC) receiver for downlink non-orthogonal multiple access (NOMA) combined with 2-by-2 open-loop single-user (SU)-MIMO. Compared to NOMA with 1-by-2 SIMO (Single Input Multiple Output), for NOMA with 2-by-2 SU-MIMO we have to deal with both inter-user and interstream interference at the receiver of each user. Therefore, we introduce different weight generation schemes for both before SIC and after SIC according to the transmission rank combination between the user equipment (UEs), while taking into account inter-user interference. In addition, we compare the performance of different SIC receivers; specifically, codeword level SIC (CWIC), symbol level SIC (SLIC), and ideal SIC. Assuming LTE (Long Term Evolution) Transmission Mode 3 (TM3), link-level simulations are conducted under different allocated transmit powers, rank combinations, and modulation and coding schemes (MCS). The link-level simulation results showed that the CWIC receiver achieves higher performance compared to SLIC and achieves almost the same performance compared to ideal SIC when the power ratio of cell-center UE is below 0.35, and the MCS of cell-center UE and cell-edge UE are 16QAM (R = 0.49) and QPSK (R = 0.49), respectively.
机译:本文调查了连续干扰消除(SIC)接收器的性能和设计,用于下行链路非正交多址(NOMA)与2×2开环单用户(SU)-Mimo组合。与带有1-BY-2 SIMO(单输入多个输出)的NOMA相比,对于带有2×2 SU-MIMO的NOMA,我们必须处理每个用户的接收器的用户间和Interstream干扰。因此,根据用户设备(UE)之间的传输等级组合,我们在SIC和之后引入不同的权重生成方案,同时考虑用户设备(UE)之间的传输等级。此外,我们比较不同SiC接收器的性能;具体而言,码字级SIC(CWIC),符号级SIC(SLIC)和理想的SIC。假设LTE(长期演进)传输模式3(TM3),在不同分配的发射功率,等级组合和调制和编码方案(MCS)下进行链路电平模拟。链路级仿真结果表明,与斜线相比,CWIC接收器与斜角相比,与理想的SiC相比,当单元中心UE的功率比率低于0.35时,与理想的SiC相比,实现了几乎相同的性能,以及单元中心UE和单元的MCS -Edge UE分别是16QAM(r = 0.49)和QPSK(r = 0.49)。

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