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混合软件定义无线可充电传感器网络中的节能流量调度

Energy-Saving Traffic Scheduling in Hybrid Software Defined Wireless Rechargeable Sensor Networks.

作者信息

Wei Yunkai, Ma Xiaohui, Yang Ning, Chen Yijin

机构信息

School of Communication and Information Engineering, University of Electronic Science and Technology of China, Chengdu 610051, China.

出版信息

Sensors (Basel). 2017 Sep 15;17(9):2126. doi: 10.3390/s17092126.

Abstract

Software Defined Wireless Rechargeable Sensor Networks (SDWRSNs) are an inexorable trend for Wireless Sensor Networks (WSNs), including Wireless Rechargeable Sensor Network (WRSNs). However, the traditional network devices cannot be completely substituted in the short term. Hybrid SDWRSNs, where software defined devices and traditional devices coexist, will last for a long time. Hybrid SDWRSNs bring new challenges as well as opportunities for energy saving issues, which is still a key problem considering that the wireless chargers are also exhaustible, especially in some rigid environment out of the main supply. Numerous energy saving schemes for WSNs, or even some works for WRSNs, are no longer suitable for the new features of hybrid SDWRSNs. To solve this problem, this paper puts forward an Energy-saving Traffic Scheduling (ETS) algorithm. The ETS algorithm adequately considers the new characters in hybrid SDWRSNs, and takes advantage of the Software Defined Networking (SDN) controller's direct control ability on SDN nodes and indirect control ability on normal nodes. The simulation results show that, comparing with traditional Minimum Transmission Energy (MTE) protocol, ETS can substantially improve the energy efficiency in hybrid SDWRSNs for up to 20-40% while ensuring feasible data delay.

摘要

软件定义的无线可充电传感器网络(SDWRSN)是无线传感器网络(WSN)的必然发展趋势,其中包括无线可充电传感器网络(WRSN)。然而,传统网络设备在短期内无法被完全替代。软件定义设备与传统设备共存的混合式SDWRSN将长期存在。混合式SDWRSN给节能问题带来了新的挑战和机遇,考虑到无线充电器也是可耗尽的,尤其是在一些远离主电源的恶劣环境中,节能问题仍然是一个关键问题。许多针对WSN的节能方案,甚至一些针对WRSN的研究成果,都不再适用于混合式SDWRSN的新特性。为了解决这个问题,本文提出了一种节能流量调度(ETS)算法。ETS算法充分考虑了混合式SDWRSN中的新特性,并利用软件定义网络(SDN)控制器对SDN节点的直接控制能力和对普通节点的间接控制能力。仿真结果表明,与传统的最小传输能量(MTE)协议相比,ETS在确保可行数据延迟的同时,能将混合式SDWRSN中的能量效率大幅提高20%-40%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/340f/5620740/2d8dcf1573b8/sensors-17-02126-g001.jpg

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