Abstract:
The objective of this paper is to propose an intelligent robust controller to control the sun seeker system which is mounted on a space vehicle. The control objective is ...Show MoreMetadata
Abstract:
The objective of this paper is to propose an intelligent robust controller to control the sun seeker system which is mounted on a space vehicle. The control objective is to maximize the amount of current produced by the photo-voltaic cells which are mounted on the sun seeker system. The PV cells produce electric current proportional to the amount of the sun light incident over them. Thus the aim is to control the position of the sun seeker system such that the position of the PV cells enables them to produce maximum current. The result of the proposed controller is then compared for robustness with the classical proportional integral derivative (PID) controller and the modern pole placement technique (PPT) based controller. The simulated results using MATLAB clearly indicate that the proposed controller is more robust as compared to the other controllers.
Date of Conference: 05-07 December 2014
Date Added to IEEE Xplore: 04 June 2015
ISBN Information:
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- IEEE Keywords
- Index Terms
- Robust Control ,
- Intelligent Control ,
- Attitude Control System ,
- Simulation Results ,
- Solar Cells ,
- Proportional-integral-derivative ,
- Position Of The Sun ,
- Pole Placement ,
- Control Strategy ,
- Objective Function ,
- Optimal Strategy ,
- Rule-based ,
- Solar Energy ,
- Block Diagram ,
- Closed-loop System ,
- Rise Time ,
- Transient Response ,
- Fuzzy Logic ,
- Settling Time ,
- Gain Values ,
- Fuzzy Control ,
- Hybrid Algorithm ,
- Transfer Function Of System ,
- Ant Colony Optimization Algorithm ,
- Renewable Energy Resources ,
- Heuristic Information ,
- Linear Time-invariant ,
- Amount Of Electricity ,
- Steady-state Error
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Robust Control ,
- Intelligent Control ,
- Attitude Control System ,
- Simulation Results ,
- Solar Cells ,
- Proportional-integral-derivative ,
- Position Of The Sun ,
- Pole Placement ,
- Control Strategy ,
- Objective Function ,
- Optimal Strategy ,
- Rule-based ,
- Solar Energy ,
- Block Diagram ,
- Closed-loop System ,
- Rise Time ,
- Transient Response ,
- Fuzzy Logic ,
- Settling Time ,
- Gain Values ,
- Fuzzy Control ,
- Hybrid Algorithm ,
- Transfer Function Of System ,
- Ant Colony Optimization Algorithm ,
- Renewable Energy Resources ,
- Heuristic Information ,
- Linear Time-invariant ,
- Amount Of Electricity ,
- Steady-state Error
- Author Keywords