具有不可控移动sink的传感器网络的QoS生命周期优化

Francesco Restuccia, Sajal K. Das
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引用次数: 14

摘要

在过去的文献中,已经证明了移动接收器(MSs)的使用大大增加了无线传感器网络(wsn)的寿命。在以人类、动物或运输系统为主体的应用中,主体的移动性通常是随机和不可预测的,这意味着需要能够处理主体移动性的巨大不确定性的新颖和特定算法。在本文中,我们定义了一个尚未解决的问题,即在不可控和随机的接收器移动存在QoS约束的情况下优化WSN的生存期。然后,我们提出了一种新的基于群体智能的传感器选择算法(SISSA),该算法优化了网络生存期并满足预定义的QoS约束。接下来,我们对SISSA进行数学分析,并推导出能量消耗、交换消息数量和收敛时间的分析界。在一个由40个传感器组成的实验平台上,对SISSA的效率和模型的精度进行了实验评估,并将SISSA提供的网络寿命与理想方案进行了比较。实验和分析结果表明,SISSA具有很高的可扩展性和高能效,在所有考虑的网络参数集中,SISSA的平均寿命是理想方案的56%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lifetime optimization with QoS of sensor networks with uncontrollable mobile sinks
In past literature, it has been demonstrated that the use of mobile sinks (MSs) increases dramatically the lifetime of wireless sensor networks (WSNs). In applications where the MSs are humans, animals, or transportation systems, the mobility of the MS is often random and unpredictable, implying the necessity of novel and specific algorithms able to deal with large uncertainty on the MS mobility. In this paper, we define the yet unsolved problem of optimizing the lifetime of a WSN in the presence of uncontrollable and random sink mobility with QoS constraints. Then, we present a novel Swarm-Intelligence-based Sensor Selection Algorithm (SISSA), which optimizes network lifetime and meets pre-defined QoS constraints. Next, we mathematically analyze SISSA and derive analytical bounds on energy consumption, number of messages exchanged, and convergence time. The efficiency of SISSA and the accuracy of the model are experimentally evaluated with a testbed composed by 40 sensors, and the network lifetime provided by SISSA is compared to that by an ideal scheme. Experimental and analytical results conclude that SISSA is highly scalable and energy-efficient, and provides on the average the 56% of the lifetime provided by the ideal scheme in all the considered network parameter sets.
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