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Performance of nonlinear detectors in spatial multiplexing for spatially correlated channels

机译:非线性检测器在空间相关通道的空间复用中的性能

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摘要

Spatial multiplexing is used in multiple input multiple output (MIMO) wireless systems to increase the data rate. Some nonlinear detectors, such as minimum mean square error (MMSE) Vertical Bell laboratories layered space-time (VBLAST), Maximum A-Posteriori (MMSE VBLAST MAP), and MMSE Improved VBLAST detectors are used in place of a over more complex detector, such as maximum likelihood detector or singular value decomposition based detector. We have presented simulation results of MIMO symbol error rate versus average SNR for MMSE VBLAST MAP and MMSE Improved VBLAST schemes assuming spatially correlated channels for M-ary QAM. We have observed that the performance of MMSE VBLAST MAP and MMSE Improved VBLAST detectors is almost identical in spatially uncorrelated channels. However, in the case of spatially correlated channels, MMSE Improved VBLAST outperforms MMSE VBLAST MAP. We have also seen that complexity of the Improved VBLAST algorithm is higher than the complexity of VBLAST MAP algorithm.
机译:在多输入多输出(MIMO)无线系统中使用空间复用来提高数据速率。某些非线性检测器(例如最小均方误差(MMSE)垂直贝尔实验室分层时空(VBLAST),最大后验概率(MMSE VBLAST MAP)和MMSE改进的VBLAST检测器)被用来代替过于复杂的检测器,例如最大似然检测器或基于奇异值分解的检测器。我们已经给出了MMSE VBLAST MAP和MMSE改进VBLAST方案的MIMO符号误码率与平均SNR的仿真结果,并假定了Mary QAM的空间相关信道。我们已经观察到,在空间不相关的通道中,MMSE VBLAST MAP和MMSE改进的VBLAST检测器的性能几乎相同。但是,在空间相关通道的情况下,MMSE改进的VBLAST优于MMSE VBLAST MAP。我们还看到,改进的VBLAST算法的复杂度高于VBLAST MAP算法的复杂度。

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