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Lifetime maximization via cooperative nodes and relay deployment in wireless networks

机译:通过协作节点和无线网络中的中继部署实现终生最大化

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Extending lifetime of battery-operated devices is a key design issue that allows uninterrupted information exchange among distributed nodes in wireless networks. Cooperative communications has recently emerged as a new communication paradigm that enables and leverages effective resource sharing among cooperative nodes. In this paper, a general framework for lifetime extension of battery-operated devices by exploiting cooperative diversity is proposed. The framework efficiently takes advantage of different locations and energy levels among distributed nodes. First, a lifetime maximization problem via cooperative nodes is considered and performance analysis for M-ary PSK modulation is provided. With an objective to maximize the minimum device lifetime under a constraint on bit-error-rate performance, the optimization problem determines which nodes should cooperate and how much power should be allocated for cooperation. Since the formulated problem is NP hard, a closed-form solution for a two-node network is derived to obtain some insights. Based on the two-node solution, a fast suboptimal algorithm is developed for multi-node scenarios. Moreover, the device lifetime is further improved by a deployment of cooperative relays in order to help forward information of the distributed nodes in the network. Optimum location and power allocation for each cooperative relay are determined with an aim to maximize the minimum device lifetime. A suboptimal algorithm is developed to solve the problem with multiple cooperative relays and cooperative nodes. Simulation results show that the minimum device lifetime of the network with cooperative nodes improves 2 times longer than the lifetime of the non-cooperative network. In addition, deploying a cooperative relay in a proper location leads up to 12 times longer lifetime than that of the non-cooperative network
机译:延长电池供电设备的使用寿命是一个关键的设计问题,它允许在无线网络中的分布式节点之间进行不间断的信息交换。协作通信最近已成为一种新的通信范式,它可以实现并利用协作节点之间的有效资源共享。本文提出了一种利用协作分集来延长电池供电设备寿命的通用框架。该框架有效地利用了分布式节点之间的不同位置和能级。首先,考虑了通过协作节点的寿命最大化问题,并提供了针对M元PSK调制的性能分析。为了在误码率性能受到限制的情况下最大化最小设备寿命,优化问题决定了哪些节点应协作以及应分配多少功率进行协作。由于提出的问题是NP难题,因此得出了两节点网络的闭式解决方案以获得一些见识。基于两节点解决方案,针对多节点场景开发了一种快速的次优算法。此外,通过协作中继的部署进一步改善了设备寿命,以帮助转发网络中分布式节点的信息。确定每个协作继电器的最佳位置和功率分配,目的是使最小设备寿命最大化。提出了一种次优算法来解决具有多个协作中继和协作节点的问题。仿真结果表明,具有协作节点的网络的最小设备生存期比非协作网络的生存期延长了2倍。此外,在适当的位置部署协作中继的寿命是非协作网络的十二倍

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