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一种工业无线自适应退避竞争接入方法的研究 被引量:2

Study on an adaptive keeping-off competition access method of industrial wireless networks
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摘要 在工业网络中,无线通信已经成为一个研究热点。传统的轮询方法具有可靠、稳定的优点,但对于子节点猝发的异常数据不能做到实时监测。设计一种保证工业异常数据实时接入信道的自适应退避竞争调度方法,该方法以轮询方式作为基础通信方式,并设计超帧结构以提供数据接入时隙,同时采用自适应退避竞争的方法避免信道碰撞。实验结果表明,异常数据以此方式接入信道具有较高的实时性和可靠性,满足工业对异常数据传输的苛刻要求。 Wireless communication has become a hot research topic in the industrial network.The traditional polling methodhas the advantages of high stability and reliability,but it cannot provide real-time monitoring for abnormal data of subnodes.Amethod of adaptive keeping-off competition scheduling to guarantee abnormal data′s real-time access to the channel is designedin this paper.In this method,the polling mode is adopted as the basic communication mode,superframe structure is designedto provide the slot time for data access,and the adaptive keeping-off competition method is adopted to avoid channel collisions.The experimental results show that the method of accessing abnormal data to the channel has high real-time performance andreliability,which can satisfy the strict requirements for abnormal data transmission in industry.
作者 王宝珠 李蓬勃 齐存康 郭志涛 WANG Baozhu;LI Pengbo;QI Cunkang;GUO Zhitao(School of Electronic and Information Engineering,Hebei University of Technology,Tianjin 300400,China;School of Aviation,Aerospace and automobile,Tianjin Sino-German University of Applied Sciences,Tianjin 300400,China)
出处 《现代电子技术》 北大核心 2017年第19期28-32,共5页 Modern Electronics Technique
基金 河北省自然科学基金资助项目(F2016202214) 天津市科技特派员项目(16JCTPJC50200)
关键词 竞争间隙 异常数据 自适应退避竞争 数据接入 数据传输 competition gap abnormal data adaptive keeping-off competition data access data transmission
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  • 1Yick J, Mukherjee B, and Ghosal D. Wireless sensor network survey[J]. Computer Networks, 2008, 52(12): 2292-2330.
  • 2Higaki H. NeBuST: low-latency congested sensor data transmission protocol[C]. Proc. of International Conference on Communications and Information Technology, Aqaba, Jordan, March 29-31, 2011: 36-42.
  • 3Bhuiyan M M, Gondal I, and Kamruzzaman J. CODAR: congestion and delay aware routing to detect time critical events in WSNs[C]. Proc. of International Conference on Information Networking (ICOIN'11), Kuala Lumpur, Malaysia, Jan. 26-28, 2011: 357-362.
  • 4Tao L Q and Yu F Q. ECODA: enhanced congestion detection and avoidance for multiple class of traffic in sensor networks[J]. IEEE Transactions on Consumer Electronics, 2010, 56(3): 1387-1394.
  • 5Liang L, Gao D, Qin Y, et al.. An adaptive congestion-aware MAC protocol for wireless sensor networks[C]. Proc. of IEEE IC-BNMT- Beijing- China, Oct. 26-28- 2010: 1074-1078.
  • 6Wang C G, Sohraby k, Lawrence V, et al.. Priority-based congestion control in wireless sensor networks[C]. IEEE SUTC'06, Taipei, June 5-7, 2006: 22-31.
  • 7Hull B, Jamieson k, and congestion in wireless sensor International Conference on Balakrixhnan H. Mitigating networks[C]. Proe of the 2nd Embedded Networked Sensor Systems(SenSys'04), Baltimore, MD, USA, Nov. 3-5, 2004 134-147.
  • 8Sridharan A and Krishnamachari B. Explicit and precise rate control for wireless sensor networks[C]. Proc of the 7th International Conference on Embedded Networked Sensor Systems (SenSys'09), Berkeley, California, USA, Nov. 4-6, 2009: 29-42.
  • 9Bhuiyan M M, Gondal I, and Kamruzzaman J. CAM: congestion avoidance and mitigation in wireless sensor networks[C]. Proc. of IEEE Vehicular Technology Conference (VTC 2010-Spring), Taipei, May 16-19, 2010: 1-5.
  • 10Yaghmaee M H and Adjeroh D. Priority-based rate control for service differentiation and congestion control in wireless multimedia sensor networks[J]. Computer Networks, 2009, 53(11): 1798-1811.

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