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Timing Synchronization in Decode-and-Forward Cooperative Communication Systems

机译:解码转发协同通信系统中的时序同步

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摘要

Cooperative communication systems have attracted much attention recently due to their desirable performance gain while using single antenna terminals. This paper addresses the joint timing and channel estimation problem, and furthermore the resynchronization of multiple timing offsets in a cooperative relay system. The estimations of timing and channel are conducted in two phases and the associated Cramer-Rao bounds (CRB) are derived for both phases. It is demonstrated that the conventional CRB is not valid for timing parameters under fading conditions, and a new bound called Weighted Bayesian CRB is proposed. With the timing and channel estimates, a general framework of the resynchronization filter design is developed in order to compensate the multiple timing offsets at the destination. The proposed methods are applied to different scenarios with varying degrees of timing misalignment and are numerically shown to provide excellent performances that approach the perfectly synchronized case.
机译:协作通信系统最近引起了人们的广泛关注,因为它们在使用单天线终端时具有理想的性能增益。本文解决了联合定时和信道估计问题,并进一步解决了协作继电器系统中多个定时偏移的再同步问题。时序和信道的估计分两个阶段进行,并推导了两个阶段的相关Cramer-Rao边界(CRB)。结果表明,传统的CRB对衰落条件下的时序参数无效,并提出了一种新的边界,称为加权贝叶斯CRB。根据时序和信道估计,开发了再同步滤波器设计的一般框架,以补偿目的地的多个时序偏移。所提方法适用于不同时序失调的不同场景,并从数值上显示出接近完美同步情况的优异性能。

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