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Energy saving and network connectivity tradeoff in Opportunistic Mobile Networks

机译:机会移动网络中的节能和网络连接权衡

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摘要

In Opportunistic Mobile Networks (OppNets), a large amount of energy is consumed by idle listening, instead of infrequent data exchanging. This makes energy saving become a serious problem in OppNets, as nodes are typically with limited energy supplies. Duty-cycle operation is a promising approach for energy saving in OppNets, however, it may cause the degradation of network connectivity. Therefore, there exists a tradeoff relationship between energy saving and network connectivity in duty-cycle OppNets. In this paper, we propose a model to quantify the contact probability (a metric of connectivity) in duty-cycle OppNets based on the realistic mobility trace. Then the tradeoff between energy saving and the contact probability under different situations is derived and analyzed. Our results show that the duty-cycled nodes can guarantee an energy saving of around 50% without impacting the contact probability if the period meets a certain condition, and higher energy saving can be achieved at the cost of reducing the contact probability. Finally, realistic trace-driven simulations are performed to validate the correctness of our results.
机译:在机会移动网络(OppNets)中,空闲侦听会消耗大量能量,而不是很少进行数据交换。由于节点通常能源供应有限,这使得节能成为OppNets中的一个严重问题。占空比运行是OppNets中节能的一种有前途的方法,但是,它可能会导致网络连接性下降。因此,在占空比OppNet中,节能与网络连接之间存在折衷关系。在本文中,我们提出了一个模型,用于基于实际的移动轨迹来量化占空比OppNets中的接触概率(连接性度量)。然后推导并分析了不同情况下节能与接触概率之间的权衡。我们的结果表明,如果周期满足特定条件,则占空比节点可以确保节能约50%,而不会影响接触概率,并且可以以降低接触概率为代价实现更高的节能效果。最后,执行逼真的跟踪驱动模拟来验证我们结果的正确性。

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