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Successive AF/DF Relaying in the Cooperative DS-CDMA Uplink: Capacity Analysis and Its System Architecture

机译:DS-CDMA协作上行链路中的连续AF / DF中继:容量分析及其系统架构

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摘要

A successive-relaying-aided network (SRAN) is designed for a multiuser spread-spectrum scenario conceived for noncoherent (NC) detection to convert the typical 50% half-duplex relaying induced throughput loss to a potential user-load reduction of the code-division multiple-access (CDMA) system, where the NC allows us to avoid the extra power consumption imposed by channel estimation. We commence by evaluating the NC discrete-input–continuous-output memoryless channel (DCMC) capacity of both the amplify-and-forward-based (AF) and decode-and-forward-based (DF) SRANs in the direct-sequence CDMA (DS-CDMA) uplink (UL). While NC detection has the added benefit of eliminating both the pilot overhead and the power-hungry channel estimation, it tends to form an error floor at high Doppler frequencies. We mitigate this problem using multiple-symbol detection, which increases the detection complexity upon extending the detection window. Finally, a relay-aided soft-input–soft-output multiple-symbol differential sphere detection (SISO-MSDSD) CDMA regime is proposed, which significantly reduces the system's complexity without sacrificing its performance.
机译:连续中继辅助网络(SRAN)专为针对非相干(NC)检测而设计的多用户扩频方案而设计,可将典型的50%半双工中继引起的吞吐量损失转换为潜在的用户代码减少负载。除法多址(CDMA)系统,其中NC使我们避免了信道估计带来的额外功耗。我们首先评估直接序列CDMA中基于放大和转发(AF)和基于解码和转发(DF)SRAN的NC离散输入-连续输出无记忆信道(DCMC)容量(DS-CDMA)上行链路(UL)。尽管NC检测具有消除导频开销和功率消耗信道估计的额外好处,但它往往会在高多普勒频率下形成错误基底。我们使用多符号检测来缓解此问题,这会在扩展检测窗口时增加检测的复杂性。最后,提出了一种中继辅助的软输入-软输出多符号差分球面检测(SISO-MSDSD)CDMA方案,该方案可在不牺牲系统性能的情况下显着降低系统的复杂性。

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