会议专题

System Identification of the Double Inverted Pendulum Based on Genetic Algorithm

The double inverted pendulum system is a less-driven, multi-parameter, strongly coupled, highly nonlinear system. The precise mathematical model of the system is important to controller design. So establishing precise mathematical model is focused on in this paper. By the Lagrangian mechanics, the mathematical model of the double pendulum system is established initially. In order to identify the solution of the mathematical model with the actual measured data in experiment, the system identification is carried out, based on the improved genetic algorithm. It is taken as the identification destination to minimize the integration of absolute error between the theoretical data and the actual data. The improved genetic strategy is presented, which improves the ability of the global convergence and local search capabilities, enhancing the diversity of the population and avoiding the premature convergence effectively. Experiments show that the improved genetic algorithm can find the optimal value of system parameters effectively and precisely, which makes mathematical model describe the motion characteristics of the actual system more accurately.

Double Inverted Pendulum Lagrangian Mechanics System Identification Improved Genetic Algorithm

Qi Qian Huang wei Zhao Yixin He Qiang Huang Qiaoli Xiao Lin

College of Computer & Information Science,Southwest University No.2,Tiansheng Street Beibei,Chongqing 400715 China

国际会议

The 2nd International Symposium on Systems and Control in Aeronautics and Astronautics(第二届航空航天系统与控制国际会议 ISSCAA 2008)

深圳

英文

1315-1319

2008-12-10(万方平台首次上网日期,不代表论文的发表时间)