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Noise-Minimum Runway-Independent Aircraft Approach Design for Baltimore-Washington International Airport

机译:巴尔的摩-华盛顿国际机场的最小噪声与跑道无关的飞机进场设计

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摘要

Vertical or short takeoff and landing aircraft can increase passenger throughput at major urban airports via the use of vertiports or stub runways. The concept of simultaneous noninterfering operations has been proposed to reduce traffic delays by creating approach and departure corridors that do not intersect existing fixed-wing routes. This paper introduces an optimization technique for segmented three-dimensional simultaneous noninterfering trajectory design based on an incremental search strategy that combines a k-ary tree with Dijkstra's algorithm. Existing fixed-wing traffic corridors are modeled as impenetrable obstacles. The objective function is based on a validated AH-1 rotorcraft noise model as well as terminal area population density data. Flight envelope limits are represented as search-space constraints. Candidate final approach trajectories for Baltimore-Washington International (BWI) Airport are presented, illustrating the effects of population density, entry region, and varied number of trajectory segments on the optimal result. The modeling and optimization technique presented in this paper will provide airport and airspace designers with a host of alterative trajectory options for analysis of potential landing sites, associated traffic procedures, and entry options, as shown by the presented BWI case study.
机译:垂直或短距起降飞机可以通过使用垂直端口或短跑道来提高主要城市机场的旅客吞吐量。提出了同时无干扰运行的概念,以通过创建不与现有固定翼路线相交的进场通道和离场通道来减少交通延误。本文介绍了一种基于增量搜索策略的分段三维同时无干扰轨迹设计优化技术,该策略将k元树与Dijkstra算法相结合。现有的固定翼交通走廊被建模为难以穿透的障碍。目标函数基于经过验证的AH-1旋翼机噪声模型以及终端区域人口密度数据。飞行包线限制表示为搜索空间约束。介绍了巴尔的摩-华盛顿国际(BWI)机场的候选最终进场轨迹,说明了人口密度,进入区域和轨迹段数量变化对最佳结果的影响。本文介绍的建模和优化技术将为机场和空域设计人员提供大量可供选择的轨迹选项,以分析潜在的着陆点,相关的交通程序和进场选项,如当前BWI案例研究所示。

著录项

  • 来源
    《Journal of Aircraft》 |2006年第1期|p.39-51|共13页
  • 作者

    Min Xue; Ella M. Atkins;

  • 作者单位

    University of Maryland, College Park, Maryland 20742;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空;
  • 关键词

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