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Integrated modeling of air traffic, aviation weather, and communication systems.

机译:空中交通,航空天气和通信系统的集成建模。

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Aviation suffers many delays due to the lack of timely air traffic flow management. These delays are also caused by the uncertainty weather information; and the lack of efficient dissemination of weather products to pilots. It is clear that better models are needed to quantify air traffic flow in three flight regions - en-route, in the terminal, and on the ground, to determine aviation weather information requirements at each region, and to quantify their bandwidth requirements. Furthermore, the results from those models can be used to select alternative future aviation communication systems.;In this research, the 'ITHINK' and 'MATLAB' software packages have been used to develop a lumped Air Traffic Flow Model (ATFM) and an Aviation Weather Information and Bandwidth Requirements Model (AWINBRM). The ATFM model is used to quantify the volume of air traffic in each phase of flight in three flight regions. This model can be used to study navigation, surveillance, and communication requirements. The AWINBRM model is used to study aviation weather information requirements in different flight phases of flight. Existing and potential communication systems used for transmitting aviation weather information are explored in this research. Finally, a usable and practical computer model---Aircraft Impacted and Detour Model (AIDM)---around an aviation weather system is developed. This model is used to compare the costs between detoured flights around a weather system and delayed flights at the airports.;The purpose of this research is to study air traffic flow and aviation weather information and bandwidth requirements through modeling. The ultimate goal of the models described here is to serve as a living laboratory where policies can be tried before implementing them into the real system. Moreover, these computer models can evolve dynamically through time allowing decision makers to exercise policies at various points in time to quantify results with ease.;This research would be a first integrated model for combing air traffic flow and aviation weather requirements and determining the quantity of aviation weather information between pilot and ground service centers. This research would be a guideline for aviation industry to build an efficient and timely aviation weather information transmission system with minimum budget. Consequently, this research will reduce aviation delays and improve aviation safety.
机译:由于缺乏及时的空中交通流量管理,航空遭受了许多延误。这些延误也是由不确定的天气信息引起的;缺乏向飞行员有效分发气象产品的能力。显然,需要更好的模型来量化三个飞行区域(航路,航站楼和地面)的空中交通流量,以确定每个区域的航空天气信息需求,并量化其带宽需求。此外,这些模型的结果可用于选择未来的替代航空通信系统。在本研究中,“ ITHINK”和“ MATLAB”软件包已用于开发集总空中交通流模型(ATFM)和航空天气信息和带宽需求模型(AWINBRM)。 ATFM模型用于量化三个飞行区域中每个飞行阶段的空中交通流量。该模型可用于研究导航,监视和通信需求。 AWINBRM模型用于研究不同飞行阶段的航空天气信息需求。在这项研究中探索了用于传输航空天气信息的现有和潜在的通信系统。最后,围绕航空气象系统开发了一种实用且实用的计算机模型-飞机撞击和De回模型(AIDM)。该模型用于比较天气系统周围的tour回航班与机场的延误航班之间的成本。该研究的目的是通过建模研究空中交通流量和航空天气信息以及带宽需求。这里描述的模型的最终目标是充当一个生活实验室,在将策略实施到实际系统之前可以对其进行尝试。此外,这些计算机模型可以随着时间动态变化,从而使决策者可以在各个时间点上执行政策以轻松量化结果。该研究将是第一个综合模型,用于组合空中交通流量和航空天气需求并确定航空交通量飞行员和地面服务中心之间的航空天气信息。这项研究将为航空业以最小的预算建立高效,及时的航空气象信息传输系统提供指导。因此,这项研究将减少航空延误并提高航空安全性。

著录项

  • 作者

    Quan, Chuanwen.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 327 p.
  • 总页数 327
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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