Research on Optimization of Aircraft Climb Trajectory considering Environmental Impact

Author:

Liu Fangzi12,Hu Minghua1,Lv Wenying1,Zhang Honghai1ORCID

Affiliation:

1. College of Civil Aviation, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China

2. Air Traffic Management Bureau of Civil Aviation Administration of China, Beijing 100000, China

Abstract

Trajectory-based operation is a new technology that will be developed in the next generation of air traffic management. In order to clarify the optimization space of fuel consumption and emission impact on the environment under the specific operation limitation of air traffic management in the process of aircraft climb, an aircraft climb performance parameter optimization model considering the environmental impact is established. First, the horizontal and vertical climb models are established for the aircraft climb process, and then the optimization objectives are constructed by considering the impact of fuel consumption, exhaust emissions on air temperature, and the convenience of the flight process. Finally, the multiobjective model is solved by genetic algorithm. The B737-800 civil aviation aircraft is selected for simulation experiment to analyze the impact of speed change on the optimization target. The results show that with the change of speed, the fuel consumption and temperature rise are different, and the climb performance parameters of the aircraft are affected by the maximum RTA. By optimizing the flight parameters of the aircraft, it can effectively reduce the impact of flight on the environment and provide theoretical support for the sustainable development of civil aviation.

Funder

National Key R&D Program of China

Publisher

Hindawi Limited

Subject

Strategy and Management,Computer Science Applications,Mechanical Engineering,Economics and Econometrics,Automotive Engineering

Reference22 articles.

1. Analysis of properties and delay propagation of air traffic based on complex network;X. Wu;Acta Aeronautica et Astronautica Sinica,2017

2. Aircraft trajectory prediction based on SDTHE algorithm;J. Zhang;System Engineering Theory and Practice,2014

3. An optimization framework for route design and allocation of aircraft to multiple departure routes

4. Integrated design and allocation of optimal aircraft departure routes

5. Optimization of Noise Abatement Departure Trajectories

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