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Network-Coded Cooperative Systems With Generalized User-Relay Selection

机译:具有广义用户中继选择的网络编码协作系统

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摘要

We consider a network-coded cooperative (NCC) system that consists of N >= 2 sources, M >= 1 decodeand-forward (DF) relays, and a single destination. The relays perform network coding (NC) on the received sources' symbols using maximum distance separable (MDS) codes. For this system, we propose the most generalized user-relay selection (GURS) scheme in the literature that selects any arbitrary subsets of K users and any arbitrary subsets of L relays subject to practical constraints such as load balancing conditions and scheduling policy. Our analytical results and design guidelines generalize and subsume all existing results as special cases. To this end, we derive a new closed-form outage probability (OP) expression, assuming non-identically and independently distributed (n.i.i.d.) Rayleigh fading channels. The asymptotic outage expression at high signal-to-noise ratio (SNR) regime is further derived, based on which, the achievable diversity order and coding gain are quantified. The theoretical derivations are also validated through Monte-Carlo simulation.
机译:我们考虑由n> = 2源,m> = 1解码 - 前进(df)继电器和单个目的地组成的网络编码协作(NCC)系统。继电器使用最大距离可分离(MDS)代码在接收的源'符号上执行网络编码(NC)。对于该系统,我们提出了文献中的最广泛的用户中继选择(Gurs)方案,其选择了K用户的任何任意子集和由L中的任何任意子集进行的,其中L继电器的任何任意子集受到诸如负载平衡条件和调度策略的实际约束。我们的分析结果和设计指南概括并征收所有现有结果作为特殊情况。为此,我们推出了一种新的闭合性中断概率(OP)表达式,假设非相同且独立地分布(N.I.I.D.)瑞利衰落通道。基于此进一步推导出高信噪比(SNR)制度处的渐近中断表达式,可实现可实现的分集顺序和编码增益。通过Monte-Carlo仿真验证了理论衍生。

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