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A New Ordered Decision Feedback Equalization Algorithm For Spatial Multiplexing Systems In Mimo Channel

机译:Mimo通道中空间复用系统的一种新的有序决策反馈均衡算法

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In rich scattering environments, multiple antenna systems designed to accomplish spatial multiplexing have enormous potential of lifting the capacity of corresponding multiple input multiple output channels. In this paper, we present a new low complexity algorithm for decision feedback equalization detector in the SM scheme. The basic idea is to reduce the joint optimization problem to separate optimization problems to achieve better performance-complexity tradeoffs. Concretely, we separately optimize the detection order and the detector filters so that the complexity of the entire signal detection task is reduced. The new order search rule approximates the optimal Bell Labs layered space time (BLAST) approach from a geometrical perspective, and the detector filters arc derived using a Cholesky based QR decomposition. The new algorithm is able to switch from zero forcing to minimum mean square error without additional operations and the computational effort is a small fraction of that in the optimal BLAST algorithm. Despite its low complexity, the error performance of new detector closely approximates that of the standard BLAST.
机译:在丰富的散射环境中,设计用于完成空间复用的多天线系统具有巨大的潜力来提升相应的多输入多输出信道的容量。在本文中,我们提出了一种新的低复杂度算法,用于SM方案中的判决反馈均衡检测器。基本思想是减少联合优化问题,以分离优化问题,以实现更好的性能-复杂度折衷。具体而言,我们分别优化了检测顺序和检测器滤波器,从而降低了整个信号检测任务的复杂性。新的顺序搜索规则从几何角度近似最佳的Bell Labs分层时空(BLAST)方法,并且检测器过滤器使用基于Cholesky的QR分解导出。新算法能够从零强制切换到最小均方误差,而无需其他操作,并且计算量仅占最佳BLAST算法的一小部分。尽管它的复杂度很低,但是新检测器的错误性能却非常接近标准BLAST。

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