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Low-complexity space-time processor for DS-CDMA communications

机译:用于DS-CDMA通信的低复杂度时空处理器

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摘要

A novel wideband beamforming technique for cellular CDMA systems is presented in this paper. The proposed algorithm asymptotically provides the maximum SINR estimate of the signal with the desired code (SDC) by optimally combining desired signals from different paths and canceling strong multiuser access interference (MUAI). A two-dimensional (2-D) matched filter structure is used where not only different temporal samples of the matched filter output are processed but where those from matched filters connected to different antennas are processed as well. In contrast to previously proposed techniques, an exact code synchronization for the SDC is not required. The algorithm presented herein asymptotically provides the arrival time of the multipaths within a bit period and the optimum beamformers for extracting each of them. Space-time filters for combining the fingers across both space and time while canceling the MUAIs are constructed correspondingly. The instrumental property exploited by this technique is the fact that although the respective spectra of the SDC and MUAI components at the matched filter output are statistically identical, the respective spectra of their squared values differ. A simplified RAKE structure-based receiver is also proposed. The 2-D RAKE receiver considerably decreases the computations but requires a coarse SDC code synchronization. A technique to achieve coarse SDC code synchronization is also proposed.
机译:本文提出了一种用于蜂窝CDMA系统的新型宽带波束成形技术。所提出的算法通过最佳地组合来自不同路径的期望信号并消除强多用户访问干扰(MUAI),渐近地提供具有期望代码(SDC)的信号的最大SINR估计。使用二维(2-D)匹配滤波器结构,不仅要处理匹配滤波器输出的不同时间样本,还要处理来自连接到不同天线的匹配滤波器的时间样本。与先前提出的技术相反,不需要用于SDC的精确代码同步。本文提出的算法渐近地提供了多径在一个比特周期内的到达时间,以及用于提取每个路径的最佳波束形成器。相应地构造了用于在消除MUAI的同时组合手指在空间和时间上的时空滤波器。通过该技术利用的仪器特性是这样的事实,即尽管在匹配的滤波器输出处,SDC和MUAI分量的各自频谱在统计上是相同的,但其平方值的各自频谱却不同。还提出了一种简化的基于RAKE结构的接收机。 2-D RAKE接收机大大减少了计算量,但需要粗略的SDC码同步。还提出了一种实现粗略SDC码同步的技术。

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