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物联网环境下HTTP与MQTT通讯协议比较探究 被引量:7

Comparative Study of HTTP and MQTT under Internet of Things Environment
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摘要 在物联网环境下分析HTTP和MQTT协议,对比其在通信模式、通信带宽需求、服务端性能需求、协议开销方面的差异,从而得出在物联网低能耗、低带宽、高延时的通信环境中,MQTT通讯协议更具优势,并给出了在实际应用中更好发挥MQTT性能的建议。 The paper did comparative studies of HTTP and MQTT in IoT. It compared their differences incommunication mode, required bandwidth, required resources in server side and protocol overhead. The conclusionwas that MQTT is better for IoT communication environment. At last the paper gave some suggestions to improveMQTT performance in applications.
作者 周超 陈建辉 骆绍烨 ZHOU Chao;CHEN Jianhui;LUO Shaoye(School of Information Engineering, Putian University, Putian Fujian 351100, China)
出处 《莆田学院学报》 2017年第5期57-60,共4页 Journal of putian University
基金 福建省激光精密加工工程技术研究中心开放课题(2016JZA013) 福建省教育厅资助省属高校专项课题(JK2015042) 莆田市科技计划项目(2015G2014)
关键词 物联网 HTTP MQTT M2M 协议开销 IoT HTTP MQTT M2M protocol overhead
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  • 1CROTTI M, DUSI M, GRINGOLI F, et al. Traffic classification through simple statistical fingerprinting[J]. ACM SIGCOMM Computer Communication Review, 2007, 37(1): 7-16.
  • 2ZANDER S, NGUYEN T, ARMITAGE G Automated traffic classification and application identification using machine learning[C)//IEEE Conference on Local Computer Networks (LCN 2005) 30th. Sydney, NSW: IEEE, 2005: 250-257.
  • 3MOORE A W, ZUEV D. Internet traffic classification using bayesian analysis techniques[C)//ACM SIGMETRICS Performance Evaluation Review. Banff, Canada: ACM Press, 2005.
  • 4KARAGIANNIS T, PAPAGIANNAKI K, FALOUTSOS M. BLINC: multilevel traffic classification in the dark[C)// Proceedings of the Special Interest Group on Data Communication Conference (SIGCOMM). Philadelphia (USA): ACM Press, 2005.
  • 5WILLIAMS N, ZANDER S, ARMITAGE G A preliminary performance comparison of five machine learning algorithms for practical IP traffic flow classification[J]. ACM SIGCOMM Computer Communication Review, 2006, 36(5): 5-16.
  • 6BERNAILLE L, TEIXEIRA R, AKODKENOU I, et at. Traffic classification on the fly[J]. ACM. Sigcomm Computer Communication Review, 2006, 36(2): 23-26.
  • 7ERMAN J, ARLITT M, MAHANTI A. Traffic classification using clustering algorithms[C)/!Proceedings of the 2006 SIGCOMM Workshop on Mining Network Data. New York: ACM,2006.
  • 8ROUGHAN M, SEN S, SPATSCHECK 0, et al. Class of service mapping for QoS: a statistical signature-based approach to IP traffic classification[C]/!Proceedings of the 4th ACM SIGCOMM Conference on Internet Measurement. New York: ACM Press, 2004.
  • 9PARNIEWICZ D, STASIAK M, ZWIERZYKOWSKI P. Traffic engineering for multicast connections in multiservice cellular networks[J]. IEEE Transactions on Industrial Informatics, 2013, 9(1): 262-270.
  • 10JEONG J, JANG H, KIM Y, et at. Network traffic reduction through smart network[C)//lnternational Conference on Information Networking (ICOIN). Bangkok: IEEE Press, 2013: 686-689.

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