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The Spectral Efficiency of Successive Cancellation With Linear Multiuser Detection for Randomly Spread CDMA

机译:随机扩频CDMA线性多用户检测相继抵消的频谱效率

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We consider the problem of multiuser detection for randomly spread direct-sequence (DS) code-division multiple access (CDMA) over flat fading channels. The analysis focuses on the case of many users, and large spreading sequences such that their ratio, which is the system load, is kept fixed. Spectral efficiency of practical linear detectors such as match-filter and decorrelator employing successive interference cancellation (SIC) at the receiver is derived. This is used to extend the notion of strongest users detectors for SIC receivers. The strongest users detectors system design relies on an outage approach where each user transmits in a single layer (fixed rate), and only users experiencing good channel conditions may be reliably decoded, while the other users are in outage, i.e., not decoded. In this scheme, iterative SIC decoding is studied, and it is shown that for equal power users, the optimal rate allocation, for maximizing the expected spectral efficiency, is equal rates for all users. This outage approach analysis is extended for multilayer coding broadcast approach per user. The expected sum-rate, under iterative decoding with linear multiuser detectors, is optimized, and the optimal layering power distribution is obtained. For small system loads, the achievable spectral efficiency with the continuous broadcast approach and a linear matched filter detector exhibits significant gains over the single layer coding approach.
机译:我们考虑了在平坦衰落信道上随机扩展直接序列(DS)码分多址(CDMA)的多用户检测问题。该分析着重于许多用户的情况,并且较大的扩展序列使他们的比率(即系统负载)保持固定。得出了在接收器处采用连续干扰消除(SIC)的实际线性检测器(例如匹配滤波器和解相关器)的频谱效率。这用于扩展SIC接收器的最强用户检测器的概念。最强的用户检测器系统设计依赖于中断方法,其中每个用户在单个层中传输(固定速率),只有经历良好信道条件的用户才能可靠地解码,而其他用户处于中断(即不解码)状态。在该方案中,研究了迭代SIC解码,结果表明,对于相等功率的用户,用于最大化预期频谱效率的最佳速率分配对于所有用户而言都是相等的速率。中断方法分析已扩展为每个用户的多层编码广播方法。在使用线性多用户检测器进行迭代解码的情况下,对期望的总速率进行了优化,并获得了最佳的分层功率分布。对于较小的系统负载,连续广播方法和线性匹配滤波器检测器可实现的频谱效率比单层编码方法显着提高。

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