This research work introduces an efficient hybrid control methodology through combining the traditional proportional-integral-derivative (PID) controller and linear quadratic regulator (LQR) optimal controlher. The proposed hybrid control approach is adopted to design three degree of freedom (3DOF) stabilizing system for helicopter. The gain parameters of the classic PID controller are determined using the elements of the LQR feedback gain matrix. The dynamic behaviour of the LQR based PID controller, is modeled in state space form to enable utlizing state feedback controller technique. The performance of the proposed LQR based LQR controller is improved by using Genetic Algorithm optimization method which are adopted to obtain optimum valu...
In this paper, a novel analytical tuning methodology for PID gains, based on Linear Quadratic Regula...
A three degree of freedom (3-DOF) bench-top helicopter is a simplified aerial vehicle which is used ...
This paper presents an analysis and performance of a LQR control algorithm for quadrotor helicopters...
This research work presents an efficient hybrid control methodology through combining the traditiona...
In this project an attempt has been made to adopt an LQR controller design approach for PITCH axis s...
Proportional Integral Derivative (PID) is the most popular controller that is commonly used in wide ...
In this article, LQR based PID controller design for 3DOF helicopter system is investigated. The 3-D...
Purpose – This paper aims to present the design of a stability augmentation system (SAS) in the long...
Purpose – This paper aims to present the design of a stability augmentation system (SAS) in the long...
The scope of this report is the development of a mathematical model and a control system for a three...
The scope of this report is the development of a mathematical model and a control system for a three...
The main thematic of this paper is controlling the main manoeuvers of a tilt rotor UAV airplane in s...
Nowadays, quadcopter motion control has become a popular research topic because of its versatile abi...
Helicopter instability represents a key issue in non-linear applications that should be addressed. A...
Research on unmanned aerial vehicle (UAV) became popular because of remote flight access and cost-ef...
In this paper, a novel analytical tuning methodology for PID gains, based on Linear Quadratic Regula...
A three degree of freedom (3-DOF) bench-top helicopter is a simplified aerial vehicle which is used ...
This paper presents an analysis and performance of a LQR control algorithm for quadrotor helicopters...
This research work presents an efficient hybrid control methodology through combining the traditiona...
In this project an attempt has been made to adopt an LQR controller design approach for PITCH axis s...
Proportional Integral Derivative (PID) is the most popular controller that is commonly used in wide ...
In this article, LQR based PID controller design for 3DOF helicopter system is investigated. The 3-D...
Purpose – This paper aims to present the design of a stability augmentation system (SAS) in the long...
Purpose – This paper aims to present the design of a stability augmentation system (SAS) in the long...
The scope of this report is the development of a mathematical model and a control system for a three...
The scope of this report is the development of a mathematical model and a control system for a three...
The main thematic of this paper is controlling the main manoeuvers of a tilt rotor UAV airplane in s...
Nowadays, quadcopter motion control has become a popular research topic because of its versatile abi...
Helicopter instability represents a key issue in non-linear applications that should be addressed. A...
Research on unmanned aerial vehicle (UAV) became popular because of remote flight access and cost-ef...
In this paper, a novel analytical tuning methodology for PID gains, based on Linear Quadratic Regula...
A three degree of freedom (3-DOF) bench-top helicopter is a simplified aerial vehicle which is used ...
This paper presents an analysis and performance of a LQR control algorithm for quadrotor helicopters...