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首页> 外文期刊>International Journal of Distributed Sensor Networks >Time-Independent Data Collection Protocol in Mobility-Assistant Wireless Sensor Networks with Duty Cycles
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Time-Independent Data Collection Protocol in Mobility-Assistant Wireless Sensor Networks with Duty Cycles

机译:具有占空比的移动辅助无线传感器网络中与时间无关的数据收集协议

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Mobility-assistant sensor networks comprise mobile elements, and static sensors are established for the purpose of solving the serious problems such as overlapping or energy holes in wireless sensor networks (WSNs). In such systems, most of the energy is consumed when the radios are on, waiting for a mobile sink (MS) to arrive. Sleep/wake scheduling is an effective mechanism to prolong the lifetime of these energy-constrained wireless sensors. However, sleep/wake scheduling could result in substantial discovery delays because the sensor needs time to receive the beacon-ID signals when MS entered its communication range. In this paper, we first study on the MS discovery mechanism and the factors which affect the efficiency of data collection. Based on these results, we then provide a solution to the control problem of how to optimally adjust the system parameters of the sleep/wake scheduling protocol to maximize the network lifetime, subject to a constraint on the expected residual contact time. Our numerical results indicate that the proposed solution can balance the network consumption, especially in sparse sensor networks.
机译:辅助移动传感器网络包括移动元件,并且建立静态传感器的目的是解决严重的问题,例如无线传感器网络(WSN)中的重叠或能量孔。在这样的系统中,无线电打开时,等待移动接收器(MS)到达时,大部分能量将被消耗。睡眠/唤醒调度是延长这些能量受限的无线传感器寿命的有效机制。但是,睡眠/唤醒计划可能会导致大量的发现延迟,因为当MS进入其通信范围时,传感器需要时间来接收信标ID信号。在本文中,我们首先研究了质谱仪的发现机制以及影响数据收集效率的因素。基于这些结果,我们然后提供一个控制问题的解决方案,该问题是如何在预期的剩余接触时间受到限制的情况下,最佳地调整睡眠/唤醒调度协议的系统参数以最大化网络寿命。我们的数值结果表明,提出的解决方案可以平衡网络消耗,尤其是在稀疏传感器网络中。

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