The improvement of S-MAC based on dynamic duty cycle in wireless sensor network

Haigang Hu, Jie Min, Xiaodong Wang, Yu Zhou
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引用次数: 9

Abstract

Wireless sensor network is formed by a great deal of sensor nodes, which are generally battery-powered and may not recharge easily. Consequently, how to prolong the lifetime of the nodes is an important issue when designing protocol in wireless sensor network. However, lowering the energy consumption may result in higher latency. To address on such tradeoff, this paper proposes ADC-SMAC to improve S-MAC. ADC-MAC adjusts duty cycle dynamically based on utilization, average sleeping delay, the upper and lower bound of duty cycle. The experiment results show that our proposed ADC-SMAC saves energy about 43% and reduce latency by 65% from S-MAC in a chain topology. In the cross topology, ADC-SMAC also achieves 32%energy saving and 45%latency reduction from S-MAC.
无线传感器网络中基于动态占空比的S-MAC改进
无线传感器网络由大量传感器节点组成,这些节点一般由电池供电,不易充电。因此,如何延长节点的生存期是无线传感器网络协议设计中的一个重要问题。但是,降低能耗可能会导致更高的延迟。为了解决这种权衡,本文提出了ADC-SMAC来改进S-MAC。ADC-MAC根据利用率、平均睡眠延迟、占空比上界和下界动态调整占空比。实验结果表明,在链式拓扑下,我们提出的ADC-SMAC比S-MAC节能43%,时延降低65%。在交叉拓扑下,ADC-SMAC比S-MAC节能32%,时延降低45%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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