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Towards Energy-Efficiency in Selfish, Cooperative Networks

机译:在自私的合作网络中实现节能

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Cooperative communication has been proven effective in enhancing the performance of wireless networks, anda variety of techniques have been investigated to exploit the spatial diversity gain to provide reliable physical layer communications with multiple quality-of-service (QoS) requirements. In this paper, we propose an adaptive multi-relay selection with power allocation mechanism to offer energy fairness at each node for a cooperative network. Unlike traditional approaches where all nodes are considered to transmit in a collaborative manner, weexplicitly consider the situation where nodes exhibit some degree of selfish behavior. Specifically, we introduce anovel concept of the selfishness index and incorporate it into a utility function which denotes the degree a node can benefit from cooperative transmission. Theoretical analysis and extensive simulation results are supplemented toshow advantages in maximizing the network lifetime and guaranteeing the QoS in realistic wireless environments. We also consider the practical situation when nodes consume energy in mode switching, and carefully study the behavior of inter-cluster relay switching and the trade-off among network lifetime, switching cost and switching frequency.
机译:事实证明,协作通信可以有效地提高无线网络的性能,并且已经研究了多种技术来利用空间分集增益来提供具有多种服务质量(QoS)要求的可靠物理层通信。在本文中,我们提出了一种具有功率分配机制的自适应多中继选择,以为合作网络的每个节点提供能量公平性。与认为所有节点都以协作方式进行传输的传统方法不同,我们明确考虑了节点表现出某种程度的自私行为的情况。具体来说,我们引入自私指数的anovel概念,并将其并入效用函数,该函数表示节点可以从协作传输中受益的程度。对理论分析和广泛的仿真结果进行了补充,以显示出在最大限度地延长网络寿命并在现实的无线环境中保证QoS方面的优势。我们还考虑了节点在模式切换中消耗能量的实际情况,并仔细研究了集群间中继切换的行为以及网络寿命,切换成本和切换频率之间的权衡。

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