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Energy efficient and scalable D2D architecture design for public safety network

机译:公共安全网络的节能和可扩展D2D架构设计

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In cellular networks, the introduction of device-to device (D2D) technology could promote cell coverage and expand user experience. In this paper, we consider the scenario of relay assisted D2D communications, and developed an adaptive architecture for D2D communications to be used in emergency conditions. Such events are difficult to predict. Therefore, their situations are accompanied by uncertainty. The experiences of various emergency situations and the related research strongly indicate that reliable and robust communications could facilitate the much needed flow of information, and consequently help to reduce risk in decision making in emergency situations. This paper analyses some of the significant requirements, technology challenges, and solution approaches that must be in place in order to enable disaster networks and in particular, D2D communications, to meet public safety network requirements. In particular, we propose a clustering-procedure-based approach to the design of a system that integrates cellular and D2D operation modes depending on the availability of infrastructure nodes. Furthermore, we simulated the outage probability of the D2D enhanced network by quantifying energy parameters and Base station densities affect the performance of D2D enhanced network. Results shows that a low complexity threshold based clustering scheme can balance between energy consumption, coverage and formation speed.
机译:在蜂窝网络中,设备到设备(D2D)技术的引入可以促进细胞覆盖率并扩大用户体验。在本文中,我们考虑中继辅助D2D通信的场景,并开发了用于在紧急情况下使用的D2D通信的自适应架构。这些事件很难预测。因此,他们的情况伴随着不确定性。各种紧急情况和相关研究的经验强烈表明,可靠和强大的通信可以促进所需的信息流,因此有助于降低紧急情况下的决策风险。本文分析了必须到位的一些重要要求,技术挑战和解决方案方法,以便能够实现灾害网络,特别是D2D通信,以满足公共安全网络要求。特别是,我们提出了一种基于集群的方法,用于根据基础设施节点的可用性集成蜂窝和D2D操作模式的系统的设计。此外,我们通过量化能量参数和基站密度影响D2D增强网络的性能来模拟D2D增强网络的停电概率。结果表明,基于低复杂度阈值的聚类方案可以在能量消耗,覆盖和形成速度之间平衡。

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