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Altitude optimization algorithm for cruise, constant speed and level flight segments

机译:巡航,恒速和水平飞行段的高度优化算法

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摘要

In this thesis, the development of an algorithm is presented. The algorithm determines the optimal cruise altitude for flying an aircraft at a constant speed and altitude on a given segment of the flight route. The optimization criteria corresponds to the minimization of the total costs, and, if possible, fuel consumption, associated with flying the cruise segment. The main objective is the development of a new algorithm, for a functionality of the FMS platform, that will display for the pilots the advisory information on a segment’s cruise altitude yielding the minimal cost.ududThe algorithm, developed in MATLAB, is using a new method for computing the fuel burn, for the level flight cruise segments, based on the aircraft’s performance data. Three aircraft models were considered, one whose cruise modeling uses the center of gravity position, and two that do not use the center of gravity position.ududThe algorithm was developed for normal flight conditions, and does not consider the costs associated with the initial and final changes of altitude, necessary to reach the optimal altitude and, at the end of the segment, needed to return to the initial cruise altitude.ududAlgorithm performances were evaluated on three aircraft models – Airbus A310, Sukhoi RRJ and Lockheed L1011. The validation data were generated based on the information produced on a CMC Electronics – Esterline FMS platform that used an identical aircraft model, and performance data, for identical flight conditions.
机译:本文提出了一种算法的发展。该算法确定用于在飞行路线的给定路段上以恒定速度和高度飞行飞机的最佳巡航高度。优化标准对应于与巡航段的飞行相关的总成本和(如果可能)燃料消耗的最小化。主要目标是针对FMS平台的功能开发一种新算法,该算法将向飞行员显示有关航段巡航高度的咨询信息,从而使成本降至最低。 ud ud在MATLAB中开发的算法正在使用一种基于飞机的性能数据计算水平巡航航段燃油消耗的新方法。考虑了三种飞机模型,一种模型的巡航建模使用重心位置,另外两种模型不使用重心位置。 ud ud该算法是针对正常飞行条件开发的,未考虑与飞行过程相关的成本达到最佳高度所必需的初始和最终高度变化,以及在航段尽头需要返回初始巡航高度。 L1011。验证数据是基于在CMC电子– Esterline FMS平台上产生的信息生成的,该平台使用相同的飞机模型,并针对相同的飞行条件使用性能数据。

著录项

  • 作者

    Dancila Bogdan Dumitru;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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