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Multiuser detection of DS-CDMA signals using partial parallel interference cancellation in satellite communications

机译:多用户检测DS-CDMA信号在卫星通信中使用部分并行干扰消除

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Multiuser detection (MUD) using parallel interference cancellation (PIC) technique provides a good complexity, latency, and performance compromise. This technique is suitable for satellite systems using either code-division multiple-access (CDMA) or a combination of time-division multiple-access (TDMA) and CDMA. We offer a new scheme that is a combination of soft and hard PIC detectors whose performance is superior to that of the other famous suboptimal detectors. In soft partial parallel interference cancellation (PPIC), in the first few stages, when the performance is still poor, the accurate knowledge of power and phase cannot be of much use. However, in the following stages, accurate power and phase estimation can improve the performance. This coincides with the time when the decisions are reliable enough to be used for parameter estimation. In our scheme, after a few stages of soft interference cancellation (IC), estimation of the parameters will start. Having these estimates, in the subsequent stages hard IC is performed. The complexity of this scheme grows linearly with the number of users. Moreover, this scheme is much faster than other receivers such as successive interference cancellation (SIC). PIC detectors are usually studied in equal-power case, i.e., a perfect power control scheme is assumed. In this paper, PIC detector in a near-far condition where user signals arrive at the receiver with different power levels is also investigated.
机译:使用并行干扰消除(PIC)技术的多用户检测(MUD)提供了良好的复杂性,延迟和性能妥协。该技术适用于使用代码分割多址(CDMA)的卫星系统或时分多址(TDMA)和CDMA的组合。我们提供了一种新的计划,它是软和硬皮探测器的组合,其性能优于其他着名的次优探测器。在柔软的部分平行干扰取消(PPIC)中,在前几个阶段,当性能仍然差,功率和阶段的准确知识不能很多。但是,在下列阶段,准确的功率和相位估计可以提高性能。这与决策可靠可用于参数估计的时间一致。在我们的方案中,经过几个软干扰消除(IC)的阶段,将开始估计参数。具有这些估计,在随后的阶段进行硬IC。该方案的复杂性与用户数量线性增长。此外,该方案比其他接收器(如连续干扰消除(SIC))快得多。 PIC检测器通常在相等的电源外壳中研究,即,假设完美的功率控制方案。在本文中,还研究了在近距离条件下的PIC检测器,其中用户信号到达具有不同功率水平的接收器。

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