节点文献
Dynamic Simulations of Nonlinear Multi-Domain Systems Based on Genetic Programming and Bond Graphs
【摘要】 A dynamic simulation method for non-linear systems based on genetic programming(GP) and bond graphs(BG) was developed to improve the design of nonlinear multi-domain energy conversion systems.The genetic operators enable the embryo bond graph to evolve towards the target graph according to the fitness function.Better simulation requires analysis of the optimization of the eigenvalue and the filter circuit evolution.The open topological design and space search ability of this method not only gives a more optimized convergence for the operation,but also reduces the generation time for the new circuit graph for the design of nonlinear multi-domain systems.
【Abstract】 A dynamic simulation method for non-linear systems based on genetic programming(GP) and bond graphs(BG) was developed to improve the design of nonlinear multi-domain energy conversion systems.The genetic operators enable the embryo bond graph to evolve towards the target graph according to the fitness function.Better simulation requires analysis of the optimization of the eigenvalue and the filter circuit evolution.The open topological design and space search ability of this method not only gives a more optimized convergence for the operation,but also reduces the generation time for the new circuit graph for the design of nonlinear multi-domain systems.
【Key words】 genetic programming(GP); bond graph(BG); evolutionary computation; system simulation;
- 【文献出处】 Tsinghua Science and Technology ,清华大学学报(自然科学版)(英文版) , 编辑部邮箱 ,2009年05期
- 【分类号】TP13
- 【被引频次】2
- 【下载频次】55