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Investigation of Multiuser Detection Schemes for Multiple Transmit/Multiple Receive Antenna Aided OFDM-SDMA Systems

机译:多传输/多个接收天线辅助OFDM-SDMA系统的多用户检测方案的研究

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Multiple Transmit-Multiple Receive (MTMR) Orthogonal Frequency-Division Multiplexing/Space-Division Multiple Access (OFDM-SDMA) systems have recently attracted significant interests among researchers and developers because of its potentials for realizing spectrally-efficient wireless services at low complexity and costs. However, in multiuser MTMR systems, multiuser detection (MUD) techniques become more challenging, owing to the increased number of independent transmitter-receiver links, especially with multiple antennas at both ends. This paper investigates the performance of adaptive beamforming schemes suitable for multiuser MTMR OFDM-SDMA systems where both mobile users and base stations employ multiple transmit antennas. Using performance criteria such as mean-squared error (MSE) and signal-to-interference-plus noise ratio (SINR), we evaluate the performance of MTMR maximum ratio combining (MTMR-MRC) and the MTMR minimum mean-squared error (MTMR-MMSE) systems. In both schemes, it is shown that the level of interference dominates the detection of users' signal causing high error floor at low SINR and imposing restrictions on the number of transmit antennas.
机译:多发射,多接收(MTMR)正交频分复用/空分多址(OFDM-SDMA)系统最近吸引了,因为它的潜力在低复杂度和成本,实现频谱效率的无线服务的研究人员和开发人员之间的显著利益。然而,在多用户系统MTMR,多用户检测(MUD)技术变得更具挑战性,因为独立的发射机 - 接收机链路的数目增加,尤其是在两端具有多个天线。本文研究适合于其中两个移动用户和基站使用多根发射天线的多用户OFDM MTMR-SDMA系统自适应波束形成方案的性能。使用性能标准,如均方误差(MSE)以及信号对干扰加噪声比(SINR),我们评估的MTMR最大比合并(MTMR-MRC)和MTMR最小均方误差的性能(MTMR -MMSE)系统。在这两种方案中,示出的是干扰水平支配用户的信号在低SINR引起高错误地板和上的发射天线的数目施加限制的检测。

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