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大藤峡水利枢纽施工区无线网络设计与应用 被引量:4

Design and Application of Wireless Network in the Construction Area of Datengxia Gorge Water Conservancy
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摘要 为满足大藤峡水利枢纽左岸施工区的安全和管理的需求,提出一种适用于水利工程施工区的无线网络设计方案。从无线点位布置,无线网络的覆盖方式、带宽设计、无线设备选型、链路预算等方面对设计的内容进行了介绍。该设计成功应用于大藤峡水利枢纽工程左岸施工区智能监控项目中,骨干网络速率达300 M,支路网络速率达50 M。该网络与光纤、4G通讯方式相比具有建设难度小,成本低,组网方式简单等优势,适合在山区开展建设。 In order to meet the safety and management requirements of the left bank construction area of Datengxia Gorge Water Conservancy, this paper proposeda wireless network design scheme for the construction area of water conservancy projects. This scheme introduced the wireless point configuration,wireless network coverage,bandwidth design,wireless device selection,link budget design,etc.This design had been successfully applied to the intelligent monitoring project in the left bank of Datengxia Gorge Water Conservancy Project. The backbone network rate and the branch network speed had reached 300 M and 50 M, respectively. Compared with optical fiber and 4 G communication, this network had some advantages such as easy construction, low cost and simple networking method. It was suitable for application in mountainous areas.
作者 孙祥鹏 郭阳 牟舵 张飞 SUN Xiangpeng;GUO Yang;MU Duo;ZHANG fei(Guangxi Datengxia Gorge Water Conservancy Development Co.,Ltd.,Nanning 530000,China;Sanmenxia Yellow River Mingzhu Group Co.,Ltd.,Sanmenxia 472000,China;Pearl River Comprehensive Technology Center,PRWRC,Guangzhou 510611,China)
出处 《人民珠江》 2018年第9期79-81,112,共4页 Pearl River
关键词 网络设计 覆盖设计 链路预算 大藤峡水利枢纽 network design;covering design;link budget;Datengxia Gorge Water Conservancy
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  • 1Sundararaman B, Buy U, Kshemkalyani A D. Clock Synchronization in Wireless Sensor Networks: A Survey [J]. AdHoc Networks, 2005(3) :281-323.
  • 2Elson J, Girod L, Est rin D. Fine-grained Network Time Synchronization Using Reference Broadcasts Time Synchronization for Wireless Sensor Networks[C]//Proeeedings of the Fifth Symposium on Operating Systems Design and Im plementation. Boston, 2002 : 147 - 163.
  • 3Noh Kyoung Lae , Chaudhari Qasim, Serpedin Erchin, et al. A nalysis of Clock Off set and Skew Estimation in Tim-ing-sync Protocol for Sensor Networks[C]//Global Telecommunications Conference 2006 GLOBECOM06. IEEE, 2006 : 1 - 5.
  • 4Ping S. Delay Measurement Time Synchronization for Wir lessSensor Networks [J]. Intel Research,2003(6).
  • 5Dennis Cox, Emil Jovanov, Aleksandar Milenkovic. Time synchronization for ZigBee networks[C]//System Theory2005 SSST05. Proceedings of the Thirty-Seventh Southeastern Symposium, 2005:135 - 138.
  • 6Kamin Whitehouse, David Culler. Calibration as Parameter Estimate in Sensor Networks [R]. Atlanta: Workshop on Wireless Sensor Networks and Applications (WSNA),2002.
  • 7IEEE std. 802. 15. 4. Wireless Medium Access Control (MAC) and Physical Layer (PHY) specifications for Low Rate Wireless Personal Area Networks (LR WPAN) [S/ OL]. [ 2010 - 12]. http ://standards. ieee. org/getieeeS02/ download/802.15.4 - 2003. pdf.
  • 8孙立民 李建中 陈渝.无线传感器网络[M].北京:清华大学出版社,2005..
  • 9肖琳,程利娟,王福豹.一种低功耗无线传感器网络时间同步算法[J].计算机研究与发展,2008,45(1):126-130. 被引量:15
  • 10许剑新,冯冬芹.基于本地时钟自校正的无线传感器网络同步方法[J].传感技术学报,2008,21(8):1448-1452. 被引量:5

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