Journal Article

·2017

Symbolic pole assignment of 2DoF conventional helicopter

Tarık Veli Mumcu YTU , Kutluhan Kursat Candir YTU , İlker Üstoğlu YTU

2017 International Artificial Intelligence and Data Processing Symposium (IDAP)

Abstract

Unmanned air vehicles and their control is a popular research field. The next decade will determine the control perfection of this vehicles and their role in our daily lives will increase. The major advantages of the unmanned rotor systems can be given as their ability to hang on a particular altitude and their manoeuvre agility to move and escape. Whereas there are many studies of control of drones, quadrotors or conventional helicopter as well as full rank state feedback method, the studies considering combination of these methods are rare. Even in symbolic case it is either not detailed so that it can easily be followed and applied or missing. This study aims to assign the poles of two degree of freedom conventional helicopter. The pole placement method used here is full rank state feedback. Thus, the helicopter model for multi input multi output systems is explained, the stages of the control method are described and they are simulated with in Mathematica. The outputs and stability analysis illustrates the effectiveness of the study.

Keywords

Rank (graph theory) Drone Computer science Control theory (sociology) Field (mathematics) State (computer science) Stability (learning theory) Rotor (electric) Control (management) Control engineering Full state feedback Engineering Artificial intelligence Mathematics Algorithm

Subject Areas

Adaptive Control of Nonlinear Systems ·Control and Systems Engineering ·Physical Sciences
Guidance and Control Systems ·Aerospace Engineering ·Physical Sciences
Control and Dynamics of Mobile Robots ·Control and Systems Engineering ·Physical Sciences

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