Welcome to Journal of Beijing Institute of Technology
Volume 20Issue 4
.
Turn off MathJax
Article Contents
WANG Tong, WANG Zheng-jie, FAN Ning-jun. Dynamic reconfiguration for en-route airspace[J]. JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2011, 20(4): 445-450.
Citation: WANG Tong, WANG Zheng-jie, FAN Ning-jun. Dynamic reconfiguration for en-route airspace[J].JOURNAL OF BEIJING INSTITUTE OF TECHNOLOGY, 2011, 20(4): 445-450.

Dynamic reconfiguration for en-route airspace

  • Received Date:2010-10-25
  • As the air traffic demand is anticipated to be increased significantly in the near future, dynamic and effective allocation of the airspace resource is becoming a world-wide focus in the research field of air traffic management (ATM). Taking the U.S. targeting the en-route airsapce, a dynamic airspace configuration (DAC) algorithm to reconfigure the airspace in consideration of higher efficiency and safety is presented. First, a modeling technique based on graph theory is proposed to generate a mathematical model for the airspace, and then, the graph model is partitioned into subgraphs for the purpose of sectorizatoin. The final step generates sector configuration with desirable geometry shape. Through analysis on the Cleveland airspace center (ZOB) in the U.S., the algorithm is proved to be robust to time-varying traffic load.
  • loading
  • [1]
    Erzberger H. Transforming the NAS: The next generation of air traffic control system[C]//Proceedings of 24th International Congress of the Aeronautical Sciences, ICAS 2004. Yokohama, Japan:[s.n.], 2004.
    [2]
    Joint Planning and Development Office. Concept of operations for the next generation air transportation system, Version 1.2. [EB/OL].(2007-02-28). http:http://www.iata.org/whatwedo/documents/ nextgenconopsv12.pdf.
    [3]
    Sridhar B, Chatterji G, Grabbe S, et al. Integration of traffic flow management decisions[C]//AIAA Guidance, Navigation, and Control Conference and Exhibit, AIAA Paper 2002-3748. Monterey, CA: AIAA, 2002.
    [4]
    Kopardekar P, Bilimoria K, Sridhar B. Initial concepts for dynamic airspace configuration[C]//7th AIAA Aviation, Technology, Integration and Operations Conference(ATIO), AIAA Paper 2007-7763. Belfast, Northern Ireland:AIAA, 2007.
    [5]
    Masalonis A, Callaham M, Wanke C. Dynamic density and complexity metrics for real time traffic flow management[C]//15th USA/Europe Air Traffic Management Research and Development Seminar, Vol.1. Budapest,Hungary:[s.n.] 2003.
    [6]
    Li J, Wang T, Savai M, et al. A spectral clustering based algorithm for dynamic airspace configuration[C]//9th AIAA Aviation Technology, Integration, and Operations Conference, AIAA Paper 2009-7056. Hilton Head, SC:AIAA, 2009.
    [7]
    Wang T, Li J, Hwang I. A sectorization method for dynamic airspace configuration[C]//Proceedings of the AIAA Guidance, Navigation, and Control Conference, AIAA Paper 2010-8292.Toronto, Canada: AIAA, 2010.
    [8]
    Wang T, Li J, Wei J, et al. Preliminary assessment of operational benefits for a graph-based dynamic airspace configuration algorithm /[C]/Proceedings of the 2010 Integrated Commnuications, Navigation and Surveillance(ICNS) Conference. Herndon, VA:[s.n.],2010.
  • 加载中

Catalog

    通讯作者:陈斌, bchen63@163.com
    • 1.

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (814) PDF downloads(238) Cited by()
    Proportional views
    Related

    /

      Return
      Return
        Baidu
        map