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   Pareto Optimal Design of Decoupled Sliding Mode Control Based on A New Multi-Objective Particle Swarm Optimization Algorithm  
   
نویسنده Bisheban M ,Mahmoodabadi M.J
منبع Aut Journal Of Modeling And Simulation - 2013 - دوره : 45 - شماره : 2 - صفحه:31 -40
چکیده    One of the most important applications of multi-objective optimization is adjusting parameters of practical engineering problems in order to produce a more desirable outcome. in this paper, the decoupled sliding mode control technique (dsmc) is employed to stabilize an inverted pendulum which is a classic example of inherently unstable systems. furthermore, a new multi-objective particle swarm optimization (mopso) algorithm is implemented for optimizing the dsmc parameters in order to decrease the normalized angle error of the pole and normalized distance error of the cart, simultaneously. the results of simulation are presented which consist of results with and without disturbances. the proposed pareto front for the dsmc problem demonstrates that the ingenious-mopso operates much better than other multi-objective evolutionary algorithms.
کلیدواژه Decoupled Sliding Mode Control ,Multi-Objective Algorithm ,Particle Swarm Optimization ,Inverted Pendulum System
آدرس School Of Mechanical And Aerospace Engineering, The George Washington University, Washington Dc, Usa., School Of Mechanical And Aerospace Engineering, The George Washington University, Washington Dc, Usa , ایران, Sirjan University Of Technology, Department Of Mechanical Engineering, Sirjan University Of Technology, Sirjan, Iran , ایران
پست الکترونیکی mahmoodabadi@sirjantech.ac.ir
 
     
   
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