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Retransmission Diversity in Large CDMA Random Access Systems

机译:大型CDMA随机接入系统中的重传分集

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This paper considers a large CDMA random access system where users randomly access a basestation through a common CDMA channel. The number of users and spreading gain tend to infinity with their ratio converging to a constant. An approach to exploitation of retransmission diversity (RD) is proposed that first eliminates the interference signals caused by the previously successfully detected packets and then jointly utilizes all received signals in packet detection. Performance of two schemes is analyzed: (i) random spreading with RD exploitation and (ii) randomly selected but fixed spreading for each packet with RD exploitation, and compared with the conventional scheme that RD is not exploited. Lower bounds on the limit signal-to-interference ratios (SIRs) of the two schemes are obtained. Throughput, packet delay, transmission time, and waiting time as well as spectral efficiency in the limit system are obtained as a function of medium access control. The analytical results are confirmed by simulations. Other schemes that increase RD by changing order of transmitted packets are also discussed. Optimization of media access control (MAC) is studied. In terms of maximization of spectral efficiency and simplicity of MAC, scheme (i) is the most favorable out of all the schemes.
机译:本文考虑了一个大型CDMA随机接入系统,其中用户通过公共CDMA信道随机接入基站。用户数量和扩展增益趋于无穷大,其比率收敛到一个常数。提出了一种利用重传分集(RD)的方法,该方法首先消除由先前成功检测到的分组引起的干扰信号,然后在分组检测中联合利用所有接收到的信号。分析了两种方案的性能:(i)使用RD利用的随机扩展和(ii)使用RD利用的每个数据包随机选择但固定的扩展,并将其与不使用RD的常规方案进行比较。获得两种方案的极限信号干扰比(SIR)的下限。限制系统中的吞吐量,数据包延迟,传输时间和等待时间以及频谱效率取决于媒体访问控制。分析结果通过模拟得到证实。还讨论了通过更改传输数据包的顺序来增加RD的其他方案。研究了媒体访问控制(MAC)的优化。就频谱效率的最大化和MAC的简单性而言,方案(i)是所有方案中最有利的。

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