38992

Автор(ы): 

Автор(ов): 

3

Параметры публикации

Тип публикации: 

Доклад

Название: 

Methods for predicting unsteady takeoff and landing trajectories of the aircraft

ISBN/ISSN: 

978-0-7354-1464-8

DOI: 

10.1063/1.4972734

Наименование конференции: 

  • 11th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences (ICNPAA World Congress 2016, La Rochelle)

Наименование источника: 

  • Proceedings of the 11th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences (ICNPAA World Congress 2016, La Rochelle)

Обозначение и номер тома: 

Vol. 1798, Issue 1

Город: 

  • La Rochelle

Издательство: 

  • AIP Publishing

Год издания: 

2017

Страницы: 

020142-1--020142-10
Аннотация
Informational and situational awareness of the aircrew greatly affects the probability of accidents, during takeoff and landing in particular. For the purpose of assessing the current and predicting the future states of an aircraft the energy approach to the flight control is used. Key energy balance equation is generalized to the ground phases. The equation describes the process of accumulating of the total energy of the aircraft along the entire trajectory, including the segment ahead. This segment length is defined by the required terminal energy state. For the takeoff phase the predict algorithm calculates the aircraft position on a runway after which it is possible to accelerate up to the speed of steady level flight and to reach the altitude sufficient for overcoming the high-rise obstacles. For the landing phase the braking distance length is determined. For increasing the likelihood of predicting the correction of the algorithm is introduced. The results of modeling many takeoffs and landings of passenger liner with different weights with the ahead obstacle and the engine failure are given. Working availability of the algorithm correction is shown.

Библиографическая ссылка: 

Шевченко А.М., Павлов Б.В., Начинкина Г.Н. Methods for predicting unsteady takeoff and landing trajectories of the aircraft / Proceedings of the 11th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences (ICNPAA World Congress 2016, La Rochelle). La Rochelle: AIP Publishing, 2017. Vol. 1798, Issue 1 . С. 020142-1--020142-10.