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Air traffic control resource management strategies and the small aircraft transportation system: A system dynamics perspective.

机译:空中交通管制资源管理策略和小型飞机运输系统:系统动力学的观点。

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摘要

The National Aeronautics and Space Administration (NASA) is leading a research effort to develop a Small Aircraft Transportation System (SATS) that will expand air transportation capabilities to hundreds of underutilized airports in the United States. Most of the research effort addresses the technological development of the small aircraft as well as the systems to manage airspace usage and surface activities at airports. The Federal Aviation Administration (FAA) will also play a major role in the successful implementation of SATS, however, the administration is reluctant to embrace the unproven concept.; The purpose of the research presented in this dissertation is to determine if the FAA can pursue a resource management strategy that will support the current radar-based Air Traffic Control (ATC) system as well as a Global Positioning Satellite (GPS)-based ATC system required by the SATS. The research centered around the use of the System Dynamics modeling methodology to determine the future behavior of the principle components of the ATC system over time.; The research included a model of the ATC system consisting of people, facilities, equipment, airports, aircraft, the FAA budget, and the Airport and Airways Trust Fund. The model generated system performance behavior used to evaluate three scenarios. The first scenario depicted the base case behavior of the system if the FAA continued its current resource management practices. The second scenario depicted the behavior of the system if the FAA emphasized development of GPS-based ATC systems. The third scenario depicted a combined resource management strategy that supplemented radar systems with GPS systems.; The findings of the research were that the FAA must pursue a resource management strategy that primarily funds a radar-based ATC system and directs lesser funding toward a GPS-based supplemental ATC system. The most significant contribution of this research was the insight and understanding gained of how several resource management strategies and the presence of SATS aircraft may impact the future US Air Traffic Control system.
机译:美国国家航空航天局(NASA)正在进行一项研究工作,以开发小型飞机运输系统(SATS),该系统将把航空运输能力扩展到美国数百个未充分利用的机场。大多数研究工作都针对小型飞机的技术开发以及管理机场空域使用和地面活动的系统。联邦航空管理局(FAA)在SATS的成功实施中也将发挥重要作用,但是,政府不愿接受未经证实的概念。本文提出的研究目的是确定FAA是否可以采用一种资源管理策略来支持当前基于雷达的空中交通管制(ATC)系统以及基于全球定位卫星(GPS)的ATC系统SATS要求。该研究围绕使用系统动力学建模方法来确定ATC系统主要组件随时间的未来行为。该研究包括一个由人员,设施,设备,机场,飞机,FAA预算以及机场和航空信托基金组成的ATC系统模型。该模型生成了用于评估三种情况的系统性能行为。第一种情况描述了如果FAA继续其当前的资源管理实践,则系统的基本情况行为。第二种情况描述了FAA强调开发基于GPS的ATC系统时系统的行为。第三种方案描述了一种组合的资源管理策略,该策略用GPS系统补充了雷达系统。该研究的发现是,联邦航空局必须采取一种资源管理策略,该策略主要为基于雷达的ATC系统提供资金,而将较少的资金用于基于GPS的辅助ATC系统。这项研究的最重要贡献是对几种资源管理策略和SATS飞机的存在如何影响未来的美国空中交通管制系统的见解和理解。

著录项

  • 作者

    Galvin, James J., Jr.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Industrial.; Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 246 p.
  • 总页数 246
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;航空、航天技术的研究与探索;
  • 关键词

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