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On the Design of Energy Efficient Transmission in Cooperative Networks with Bidirectional Asymmetric Traffic

机译:双向非对称流量协同网络中的节能传输设计

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摘要

Energy efficient transmission has become increasingly important in future green communications. We focus on cooperative networks with multiple Amplify-and-Forward relays deployed in this paper. A joint relay selection and power allocation transmission scheme applicable to both one-way and two-way relay networks is proposed for minimizing the weighted energy consumed per bit transmitted. Close-form analytical results of power allocation are first developed at each relay. Then the relay consuming the least energy or the direct transmission mode is chosen by the sources. Based on the proposed scheme, we characterize the energy consumption for training and power allocation information exchanging between nodes. Besides, the energy efficient cooperating regions are discussed in one-way and two-way relay networks. It is indicated that the shape of the region depends on both the path loss exponent and the asymmetry traffic in the one-way relay network while only lies on the path loss exponent in the two-way relay network. Simulation results demonstrate that the proposed scheme yields considerable reduced energy consumption compared to that of the best worse relay selection scheme when proper number of relays is deployed. It is also shown that the two-way relaying can achieve higher energy efficiency than the one-way relaying.
机译:节能传输在未来的绿色通信中变得越来越重要。我们专注于本文中部署的具有多个放大转发中继的协作网络。提出了一种适用于单向和双向中继网络的联合中继选择和功率分配传输方案,以最小化每比特传输所消耗的加权能量。首先在每个继电器上得出功率分配的近似形式分析结果。然后,由源选择消耗最少能量或直接传输模式的中继。基于提出的方案,我们表征了节点之间交换训练和功率分配信息时的能耗。此外,还讨论了单向和双向中继网络中的节能合作区域。结果表明,区域的形状既取决于路径损耗指数,又取决于单向中继网络中的不对称流量,而仅取决于双向中继网络中的路径损耗指数。仿真结果表明,与部署了适当数量的继电器的最佳最差继电器选择方案相比,该方案可显着降低能耗。还表明,双向中继比单向中继可以获得更高的能量效率。

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