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首页> 外文期刊>IEICE Transactions on Communications >Decision Feedback Chip-Level Maximum Likelihood Detection for DS-CDMA in a Frequency-Selective Fading Channel
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Decision Feedback Chip-Level Maximum Likelihood Detection for DS-CDMA in a Frequency-Selective Fading Channel

机译:选频衰落信道中DS-CDMA的决策反馈芯片级最大似然检测

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摘要

In direct sequence code division multiple access (DS-CDMA), variable rate transmission can be realized by simply changing the spreading factor SF for the given chip rate. In a frequency-selective fading channel, the transmission performance can be improved by using rake combining. However, when a very low SF is used for achieving a high transmission rate, error floor is produced due to insufficient suppression of inter-chip interference (ICI). In this paper, decision feedback chip-level maximum likelihood detection (DF-CMLD) is proposed that can suppress the ICI. An upper-bound for the conditional bit error rate (BER) is theoretically derived for the given spreading sequence and path gains. The theoretical average BER performance is numerically evaluated by Monte-Carlo numerical computation using the derived conditional BER. The numerical computation results are confirmed by computer simulation of DS-CDMA signal transmission with DF-CMLD.
机译:在直接序列码分多址(DS-CDMA)中,可以通过简单地改变给定码片速率的扩展因子SF来实现可变速率传输。在频率选择衰落信道中,可以通过使用瑞克组合来提高传输性能。但是,当使用非常低的SF来实现高传输速率时,由于无法充分抑制芯片间干扰(ICI),会产生错误基底。本文提出了可以抑制ICI的决策反馈芯片级最大似然检测(DF-CMLD)。对于给定的扩展序列和路径增益,理论上得出条件误码率(BER)的上限。使用推导的条件BER,通过蒙特卡洛数值计算对理论平均BER性能进行数值评估。数值计算结果通过采用DF-CMLD的DS-CDMA信号传输的计算机仿真得到了证实。

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