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Network Science Approach for Device Discovery in Mobile Device-to-Device Communications

机译:网络科学方法在移动设备到设备通信中的设备发现

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摘要

With the emerging demands for local area services, mobile device-to-device (D2D) communications is conceived as a vital component for next-generation wireless networks to improve spectral reuse, to bring hop gains, and to enhance system capacity. In mobile D2D networks, energy-efficient probing schemes are vital to prolonging the limited battery life of mobile devices. Current solutions mainly focus on optimizing the probing interval during contacts by assumption of exponential distributed contact. However, studies in the area of network science have shown that the contact interval follows a power-law distribution, which indicates that the current solutions are not optimal while, on the other hand, dramatically increasing the difficulty of analyzing this problem. In this paper, we propose a network science approach for adaptive wakeup schedule based on power-law distributed contacts. Our approach requires nodes to stay asleep when a contact is unlikely to happen and to wake up only when the possibility that it successfully contacts another node is relatively high. By predicting node contacts in the future based on network science, our approach significantly reduces energy consumption without degrading the performance of opportunistic networks. Extensive simulations with real-life human and vehicular traces demonstrate the outstanding performance of our approach. The results show that our scheme saves 30% in energy while keeping the same performance in most scenarios, and it enhances the performance in terms of average delivery ratio and delivery delay by over 15%, compared with the existing best wakeup techniques, without considering network science.
机译:随着对局域网服务的新兴需求,移动设备到设备(D2D)通信被认为是下一代无线网络的重要组成部分,以改善频谱重用,带来跃点增益并增强系统容量。在移动D2D网络中,节能探测方案对于延长移动设备有限的电池寿命至关重要。当前的解决方案主要集中在通过假设指数分布接触来优化接触期间的探测间隔。但是,网络科学领域的研究表明,接触间隔遵循幂律分布,这表明当前的解决方案不是最优的,而另一方面,这大大增加了分析此问题的难度。在本文中,我们提出了一种基于幂律分布触点的自适应唤醒计划的网络科学方法。我们的方法要求节点在不太可能发生联系时保持睡眠状态,并且仅在其成功联系到另一个节点的可能性相对较高时才唤醒。通过基于网络科学预测未来的节点联系,我们的方法可在不降低机会网络性能的情况下显着降低能耗。真实的人类和车辆痕迹的大量模拟证明了我们方法的卓越性能。结果表明,在不考虑网络的情况下,与现有最佳唤醒技术相比,我们的方案在大多数情况下可节省30%的能量,同时保持相同的性能,并且在平均传输率和传输延迟方面提高了15%以上的性能。科学。

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