In this work, we provide a global framework analysis of a multi-hop relaying systems wherein the transmitter (TX) communicates with the receiver (RX) through a set of intermediary relays deployed either in series or in parallel. Regenerative based relaying scheme is assumed such as the repetition-coded decoded-and-forward (DF) wherein the decoding is threshold-based. To reflect a wide range of fading, we introduce the generalized $H$-function (also termed as Fox-$H$ function) distribution model which enables the modeling of radio-frequency (RF) fading like Weibull and Gamma, as well as the free-space optic (FSO) such as the Double Generalized Gamma and M\'alaga fading. In this context, we introduce various power and rate adaptation policies based on the channel state information (CSI) availability at TX and RX. Finally, we address the effects of relaying topology, number of relays and fading model, etc, on the performance reliability of each link adaptation policy.
翻译:在这项工作中,我们提供了对多式中继系统的全球框架分析,使发报机(TX)通过一系列或平行部署的中间继电器与接收器(RX)进行通信;假定了以重复编码解码和前向(DF)为起点的重复编码解码和前向(DF)等基于解码;为了反映广泛的淡化,我们采用了通用的H$功能(又称Fox-$(H$)函数)分配模型,该模型使无线电频率(RF)的衰落(RF)能够建模,如Weibull和Gamma,以及自由空间光学(FSO),如双通用伽马和M\'alaga法。在这方面,我们根据TX和RX的频道状态信息(CSI)的提供情况,采用了各种权力和税率调整政策。最后,我们讨论了中继表、中继器数量和淡化模型等对每个链接的适应政策性能可靠性的影响。