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Strategic Air Traffic Planning Using Eulerian Route Based Modeling and Optimization

机译:基于欧拉路线的建模和优化战略空中交通规划

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摘要

Due to a soaring air travel growth in the last decades, air traffic management has become increasingly challenging. As a consequence, planning tools are being devised to help human decision-makers achieve a better management of air traffic. Planning tools are divided into two categories, strategic and tactical. Strategic planning generally addresses a larger planning domain and is performed days to hours in advance. Tactical planning is more localized and is performed hours to minutes in advance. An aggregate route model for strategic air traffic flow management is presented. It is an Eulerian model, describing the flow between cells of unidirectional point-to-point routes. Aggregate routes are created from flight trajectory data based on similarity measures. Spatial similarity is determined using the Frechet distance. The aggregate routes approximate actual well-traveled traffic patterns. By specifying the model resolution, an appropriate balance between model accuracy and model dimension can be achieved. For a particular planning horizon, during which weather is expected to restrict the flow, a procedure for designing airborne reroutes and augmenting the traffic flow model is developed. The dynamics of the traffic flow on the resulting network take the form of a discrete-time, linear time-invariant system. The traffic flow controls are ground holding, pre-departure rerouting and airborne rerouting. Strategic planning---determining how the controls should be used to modify the future traffic flow when local capacity violations are anticipated---is posed as an integer programming problem of minimizing a weighted sum of flight delays subject to control and capacity constraints. Several tests indicate the effectiveness of the modeling and strategic planning approach. In the final, most challenging, test, strategic planning is demonstrated for the six western-most Centers of the 22-Center national airspace. The planning time horizon is four hours long, and there is weather predicted that causes significant delays to the scheduled flights. Airborne reroute options are computed and added to the route model, and it is shown that the predicted delays can be significantly reduced. The test results also indicate the computational feasibility of the approach for a planning problem of this size.
机译:由于最近几十年来航空旅行的飞速增长,空中交通管理变得越来越具有挑战性。因此,正在设计计划工具来帮助人类决策者更好地管理空中交通。规划工具分为战略和战术两大类。战略规划通常针对更大的规划领域,并且提前几天至几小时执行。战术计划更加本地化,​​并且提前数小时至数分钟执行。提出了一种用于战略空中交通流量管理的集合路径模型。这是一个欧拉模型,描述了单向点对点路由的单元之间的流动。基于相似性度量,从飞行轨迹数据中创建汇总航线。空间相似性是使用弗雷歇距离确定的。总路线近似于实际经过的交通模式。通过指定模型分辨率,可以在模型精度和模型尺寸之间实现适当的平衡。对于特定的计划范围(预计在此期间天气会限制流量),开发了一种用于设计机载路线和增加交通流量模型的程序。最终网络上流量的动态变化采用离散时间,线性时不变系统的形式。交通流量控制包括地面保持,出发前改航和机载改航。战略规划(确定在预期发生本地容量违规时应如何使用控制措施来修改未来的交通流量)构成了整数规划问题,该问题使受控制和容量限制的航班延误的加权总和最小化。多项测试表明了建模和战略计划方法的有效性。在最后的,最具挑战性的测试中,对22中心国家领空的六个最西部中心进行了战略规划。计划时间范围为四小时,并且有天气预报显示,这将大大延迟计划的航班。计算出机载改航选项并将其添加到航线模型中,结果表明可以大大减少预计的延误。测试结果还表明该方法在这种规模的规划问题上的计算可行性。

著录项

  • 作者

    Bombelli, Alessandro.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Aerospace engineering.;Computer science.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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