Optimization of The Ground Roll Distance of Boeing 747 Aircraft Using Fuzzy Logic Approach

Authors

  • T. Anand  Assistant Professor, Department of Aeronautical Engineering, Adhiyamaan College of Engineering, (Autonomous), Hosur, Tamil Nadu, India
  • R Selva Kumaran  Sudents, Department of Aeronautical Engineering, Adhiyamaan College of Engineering, (Autonomous), Hosur, Tamil Nadu, India
  • M Shalini  Sudents, Department of Aeronautical Engineering, Adhiyamaan College of Engineering, (Autonomous), Hosur, Tamil Nadu, India
  • R Vijayan  Sudents, Department of Aeronautical Engineering, Adhiyamaan College of Engineering, (Autonomous), Hosur, Tamil Nadu, India

Keywords:

Ground Roll Distance, Optimization Technique, Linear Programming, and Fuzzy Decisive Set Method.

Abstract

A new take off method for Boeing 747-400 passenger aircraft is hereby suggested in this paper which is based on a mathematical model using optimization technique. In this paper, the ground roll distance is minimized using linear programming model, and validated by using fuzzy decisive set method [10] with the concept that as the consumption of fuel increases on account of increased thrust could be saved by reduction of distance [1]. It is also show that the total travel time of Boeing 747-400 passenger aircraft may be reduced. To improve the accommodation of air transportation frameworks, Short Take-Off and Landing (STOL) is an advantageous trademark for any size of the plane [9]. Applying fueled high-lift frameworks is a powerful strategy for accomplishing this objective. Notwithstanding, such frameworks normally require plane wings to be furnished with uncommonly planned streamlined fueled gadgets to accomplish the adequate lift [4]. Thus new method has been proposed to decrease ground-run distance using optimization technique.

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Published

2020-03-05

Issue

Section

Research Articles

How to Cite

[1]
T. Anand, R Selva Kumaran, M Shalini, R Vijayan, " Optimization of The Ground Roll Distance of Boeing 747 Aircraft Using Fuzzy Logic Approach, International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011, Volume 5, Issue 5, pp.59-63, March-April-2020.