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Joint Power Allocation and Routing in Full-Duplex Relay Network: An Outage Probability Approach

机译:全双工中继网络中的联合功率分配和路由:断电概率方法

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摘要

In this paper a power optimal routing is investigated in fading wireless channels. The fading distribution of the channel is modeled by Nakagami-m, and the outage capacity of full-duplex decode-and-forward (FD-DF) relaying is taken as QoS constraint. In this QoS routing algorithm, the weighted power sum of relay nodes is minimized while the end-to-end link outage probability is kept below a threshold. Firstly, the weighted power sum minimization problem for a static multi-hop route is formulated and solved in closed form for low outage probability. Then a routing metric is extracted from the minimized power sum of a static route which results in optimal routing method, implemented by dynamic programming algorithms like Bellman Ford. The proposed power optimal routing is evaluated by comparing its performance to other strategies with Monte Carlo simulations.
机译:本文研究了衰落无线信道中的功率最佳路由。 Nakagami-m对信道的衰落分布进行了建模,并将全双工解码转发(FD-DF)中继的中断容量作为QoS约束。在此QoS路由算法中,将中继节点的加权功率总和最小化,同时将端到端链路中断概率保持在阈值以下。首先,提出了静态多跳路由的加权总和最小化问题,并以封闭形式解决了该问题,从而降低了停电概率。然后,从静态路由的最小功率和中提取路由度量,从而得出最佳路由方法,该方法由动态编程算法(如Bellman Ford)实现。通过将其性能与其他策略与蒙特卡洛模拟进行比较,可以评估所建议的电源最佳路由。

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