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Arrival-Time Controllability of Tailored Arrival Subjected to Flight-Path Constraints

机译:受飞行路径约束的量身定做到达时间可控性

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摘要

Recently, the continuous descent approach has been strongly focused because it can drastically reduce noise emission and fuel consumption during approach. The tailored arrival is proposed to facilitate the continuous descent approach at congested terminal airspace. In a tailored arrival operation, each arriving aircraft is provided with a specifically designed arrival path to fly on a continuous descent approach path without any conflict with other aircraft. In this paper, the arrival-time controllability of the tailored arrival paths determined by the top-of-descent and waypoint positions are discussed. A tailored arrival path is designed using the least number of track-to-fix and radius-to-fix legs neglecting the engine thrust. Two types of tailored arrival path are numerically investigated; one is determined by adjusting the waypoint positions with the fixed top of descent, and the other is determined by top-of-descent position with the fixed way points. They are numerically analyzed so as to satisfy a set of appropriate boundary conditions both at the top of descent and landing, and the behavior of the arrival-time difference from the standard continuous descent approach path is explored using a representative set of inputs. The arrival-time controllability is defined as the differences between the fastest and the slowest arrival time. Through several series of arrival-time analyses, it is found that the tailored arrival paths determined by changing the waypoint positions can achieve the larger arrival-time controllability compared with those determined by changing the top-of-descent position. It is also suggested that it is possible to compose an arrival path with the maximum arrival-time controllability without any additional fuel consumption.
机译:近来,连续下降方法已经成为人们关注的焦点,因为它可以大大降低进近过程中的噪声排放和燃料消耗。提出量身定制的进场以促进在拥挤的终端空域的连续下降方法。在量身定制的到达操作中,每个到达的飞机都具有专门设计的到达路径,可以在连续下降的进场路径上飞行,而不会与其他飞机发生冲突。在本文中,讨论了由下降顶部和航路点位置确定的定制到达路径的到达时间可控性。使用最少的履带固定点和半径固定腿来设计定制的到达路径,而忽略发动机推力。对两种类型的定制到达路径进行了数值研究:一个是通过固定下降点的顶部调整航路点位置确定的,另一个是通过固定路径点的下降位置的顶部确定。对它们进行了数值分析,以便在下降和降落的顶部都满足一组适当的边界条件,并使用一组代表性的输入来探索与标准连续下降进场路径的到达时间差的行为。到达时间可控性定义为最快和最慢到达时间之间的差异。通过一系列的到达时间分析,发现与通过更改下降顶部位置确定的路径相比,通过更改路点位置确定的定制到达路径可以实现更大的到达时间可控性。还建议可以构成具有最大到达时间可控性的到达路径,而没有任何额外的燃料消耗。

著录项

  • 来源
    《Journal of Aircraft》 |2010年第6期|p.2021-2029|共9页
  • 作者

    Noboru Takeichi; Daigo Inami;

  • 作者单位

    Nagoya University, Aichi 464, Japan;

    Nagoya University, Aichi 464, Japan;

  • 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
  • 关键词

  • 入库时间 2022-08-18 02:30:27

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