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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Initial and Post-Initial Code Acquisition in the Noncoherent Multiple-Input/Multiple-Output-Aided DS-CDMA Downlink
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Initial and Post-Initial Code Acquisition in the Noncoherent Multiple-Input/Multiple-Output-Aided DS-CDMA Downlink

机译:非相干多输入/多输出辅助DS-CDMA下行链路中的初始和初始代码采集

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摘要

In this paper, we investigate the issues of both initial and post-initial acquisition schemes in the multiple-input/multiple-output (MIMO)-aided direct-sequence code-division multiple-access (DS-CDMA) downlink when communicating over spatially uncorrelated Rayleigh channels. The associated mean acquisition time (MAT) performance trends are characterized as a function of the number of MIMO elements. Furthermore, we characterize both the initial and post-initial acquisition performance as a function of the relevant system parameters. Our findings suggest that increasing the number of transmit antennas in a MIMO-aided CDMA system results in combining the low-energy noise-contaminated signals of the transmit antennas, which ultimately increases the MAT by an order of magnitude when the signal-to-interference-plus-noise ratio (SINR) is relatively low, regardless of whether single- or multipath scenarios are considered. This phenomenon has a detrimental effect on the performance of Rake-receiver-based synchronization schemes when the perfectly synchronized system is capable of attaining its target bit-error-rate performance at reduced SINR values, as a benefit of employing multiple transmit antennas. Based on our analysis justified by information-theoretic considerations, our acquisition design guidelines are applicable to diverse noncoherent (NC) MIMO-assisted scenarios.
机译:在本文中,我们研究了通过空间进行通信时,多输入/多输出(MIMO)辅助的直接序列码分多址(DS-CDMA)下行链路中的初始和初始初始采集方案的问题不相关的瑞利通道。相关的平均获取时间(MAT)性能趋势的特征是MIMO元素数量的函数。此外,我们将初始和初始初始采集性能表征为相关系统参数的函数。我们的发现表明,在MIMO辅助CDMA系统中增加发射天线的数量会导致合并发射天线的低能量噪声污染信号,这最终会在信噪比较高时将MAT提高一个数量级。无论考虑单路径还是多路径方案,加噪声比(SINR)都相对较低。当完全同步的系统能够以降低的SINR值获得其目标误码率性能时,这种现象会对基于Rake接收器的同步方案的性能产生不利影响,这是采用多个发射天线的好处。基于信息理论考虑合理的分析,我们的采集设计指南适用于各种非相干(NC)MIMO辅助方案。

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