gTBS:一种基于绿色任务的高能效无线传感器网络传感技术

Abdullah Alhalafi, Lokman Sboui, R. Naous, B. Shihada
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引用次数: 22

摘要

无线传感器网络(WSN)广泛用于不同目的和不同区域内的物理状况的感知和测量。然而,由于传感器能量来源的寿命有限,人们为设计节能的无线传感器网络做出了许多努力。因此,为了提高无线传感器网络的寿命,文献中提出了许多技术,如功率适应、睡眠和唤醒、调度等。这些技术分别介绍,并显示在能源效率方面实现了一些增益。在本文中,我们提出了一种节能的WSN跨层设计,我们称之为“绿色任务传感”(gTBS)方案。gTBS设计是一种基于任务的传感方案,不仅可以防止在不必要的信令中浪费功率,而且还采用了多种技术来实现可靠和节能的WSN。提出的gTBS结合了功率适应和睡眠和唤醒技术,允许非活动节点睡眠。此外,它采用了面向梯度的单播方式,克服了同步问题,最大限度地减少了网络流量障碍,并显著降低了网络的整体功耗。我们在测试平台上实现了gTBS,结果表明,与传统TBS相比,gTBS的功耗降低了20%-55%。它还减少了54%-145%的延迟,提高了24%-73%的交货率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
gTBS: A green Task-Based Sensing for energy efficient Wireless Sensor Networks
Wireless sensor networks (WSN) are widely used to sense and measure physical conditions for different purposes and within different regions. However due to the limited lifetime of the sensor's energy source, many efforts are made to design energy efficient WSN. As a result, many techniques were presented in the literature such as power adaptation, sleep and wake-up, and scheduling in order to enhance WSN lifetime. These techniques where presented separately and shown to achieve some gain in terms of energy efficiency. In this paper, we present an energy efficient cross layer design for WSN that we named “green Task-Based Sensing” (gTBS) scheme. The gTBS design is a task based sensing scheme that not only prevents wasting power in unnecessary signaling, but also utilizes several techniques for achieving reliable and energy efficient WSN. The proposed gTBS combines the power adaptation with a sleep and wake-up technique that allows inactive nodes to sleep. Also, it adopts a gradient-oriented unicast approach to overcome the synchronization problem, minimize network traffic hurdles, and significantly reduce the overall power consumption of the network. We implement the gTBS on a testbed and we show that it reduces the power consumption by a factor of 20%-55% compared to traditional TBS. It also reduces the delay by 54%-145% and improves the delivery ratio by 24%-73%.
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