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Regularized Lattice Reduction-Aided Ordered Successive Interference Cancellation for MIMO Detection

机译:用于MIMO检测的正则化格减少辅助有序连续干扰消除

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Lattice reduction-aided ordered successive interference cancellation (LRA-OSIC) detection is capable of achieving optimal diversity orders for multiple-input multiple-output (MIMO) communications. When the number of antennas is large, however, there can still be a significant gap between the performance achievable with the LRA-OSIC detector and the maximum likelihood detector (MLD). This paper introduces a regularization approach to enhance the performance of LRA-OSIC detectors. Multiple approximate models for the same MIMO channel are generated and a standard LRA-OSIC detector is then constructed for each model. The best detector is determined for each instantaneous received symbol, using a residual-based method. The search can be terminated using a stopping criterion. Simulation results show that significant performance enhancements can be achieved by the proposed design at only a moderate increase of complexity1.
机译:晶格减少辅助有序连续干扰消除(LRA-OSIC)检测能够实现多输入多输出(MIMO)通信的最佳分集阶数。但是,当天线数量很大时,LRA-OSIC检测器和最大似然检测器(MLD)所能达到的性能之间仍然会有很大的差距。本文介绍了一种正则化方法来增强LRA-OSIC检测器的性能。生成用于相同MIMO信道的多个近似模型,然后为每个模型构建标准的LRA-OSIC检测器。使用基于残差的方法,为每个瞬时接收符号确定最佳检测器。可以使用停止条件终止搜索。仿真结果表明,所建议的设计仅在适度增加复杂性的情况下即可实现显着的性能增强 1

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