Dynamic duty cycle-based Wireless Sensor Network for underground pipeline monitoring

Liming Qiu, K. Wang, Z. Salcic
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引用次数: 2

Abstract

The Wireless Sensor Network (WSN)-based pipeline monitoring systems are expected to have long life time in order to make their deployment cost-effective. In reality, wireless transceivers are considered one of the main consumers of energy in individual sensor nodes of WSNs. The duty cycling technique which puts transceiver module into sleep state for the majority of sensor node's operating time is considered a highly effective method to reduce energy consumption. In this paper we present the use of Wake-on-Radio (WoR) for reduction of used energy and conducted power consumption experiments using CC430-based WSN nodes. The results show promising performance improvement when using WoR in the CC1101 radio transceiver of CC430. Then, an adaptive duty cycle algorithm based on the WoR functionality, which enables sensor nodes to dynamically adjust their WoR duty cycles according to the real-time wireless channel conditions in achieving reduced power consumption, was proposed.
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基于动态占空比的地下管线监测无线传感器网络
基于无线传感器网络(WSN)的管道监测系统被期望具有较长的使用寿命,以使其部署具有成本效益。实际上,无线收发器被认为是无线传感器网络中单个传感器节点的主要能量消耗者之一。占空比技术使收发模块在传感器节点的大部分工作时间处于休眠状态,被认为是一种非常有效的降低能耗的方法。在本文中,我们介绍了使用无线唤醒(WoR)来减少使用的能量,并使用基于cc430的WSN节点进行了功耗实验。结果表明,在CC430的CC1101无线电收发器中使用WoR可以提高性能。然后,提出了一种基于WoR功能的自适应占空比算法,使传感器节点能够根据实时无线信道情况动态调整其WoR占空比,从而达到降低功耗的目的。
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