Stability Enhancement of Commercial Boeing Aircraft with Integration of PID Controller

Autor: Misha Urooj Khan, Muhammad Shahzaib Shah, Mehwish Ayub, Muhammad Zulqarnain Haider Ali, Mian Farhan Ullah, Asad Ur Rehman
Rok vydání: 2021
Předmět:
Zdroj: 2021 International Conference on Applied and Engineering Mathematics (ICAEM).
DOI: 10.1109/icaem53552.2021.9547186
Popis: It is critical in aircraft design to analyze the behavior, effectiveness, reliability, and other elements of the systems prior to commercial deployment. To design a stable aviation control system, a strong mathematical model of the system is required so that its behavior can be clearly comprehended and regulated. The state-space model of an autopiloted airplane is developed in this article utilizing MATLAB because this simulation model will help gather knowledge in order to make judgments at all phases of airplane development. We focused solely on stability, emphasizing the system's rapid settling without substantial overshoots. The MATLAB state-space model is effectively developed and simulated with and without a controller. The aircraft angle, pitch rate, and pitch angle are chosen as state variables. With the help of the PID controller, we achieved a settling time of 0.0741s and a rise time of 0.0390s.
Databáze: OpenAIRE