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Maximizing Surveillance Quality for Barrier Coverage in Rechargeable Sensor Networks

机译:最大化可充电传感器网络中屏障覆盖的监视质量

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Barrier coverage has received much attention in the last decade and has been an import issue in wireless sensor networks. In the previous study, a number of researchers have presented algorithms for coping with the barrier coverage problem. However, these studies consider that sensors are equipped with batteries and the sensing model applies Boolean Sensing Model (BSM). The sensor using battery as its energy source can lead to the battery change problem which is difficult and inconvenient. Unlike previous studies, this work aims to resolve the barrier coverage problem but considers solar-powered sensors and applies the Probabilistic Sensing Model (PSM). A barrier coverage mechanism, called MSQ (Maximizing surveillance quality algorithm), is proposed aiming to maximize boundary surveillance quality. Performance experiments show that the proposed MSQ mechanism outperforms existing studies in terms of surveillance quality.
机译:在过去的十年中,障碍物的覆盖受到了广泛的关注,并且已经成为无线传感器网络中的一个重要问题。在先前的研究中,许多研究人员提出了应对障碍物覆盖问题的算法。但是,这些研究认为传感器配备有电池,并且传感模型采用布尔传感模型(BSM)。使用电池作为其能量源的传感器会导致电池更换问题,这是困难且不便的。与以前的研究不同,这项工作旨在解决障碍物覆盖问题,但考虑了太阳能传感器并应用了概率传感模型(PSM)。为了最大化边界监视质量,提出了一种称为MSQ(最大化监视质量算法)的屏障覆盖机制。性能实验表明,所提出的MSQ机制在监视质量方面优于现有研究。

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