Optimizing active and passive magnetic shields of induction heaters by a genetic algorithm
暂无分享,去创建一个
[1] James E. Baker,et al. Reducing Bias and Inefficienry in the Selection Algorithm , 1987, ICGA.
[2] Vellar C. Plantz,et al. Shielding theory and practice , 1988 .
[3] P. Sergeant,et al. High sensitivity 50 Hz-1 MHz probe for B and dB/dt , 2002, 2002 IEEE International Symposium on Electromagnetic Compatibility.
[4] A. Ahlbom. Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz) , 1998 .
[5] Peter P. Silvester,et al. Finite elements for electrical engineers: Finite Elements for Electrical Engineers , 1996 .
[6] Birgitta Floderus,et al. Occupational exposures to high frequency electromagnetic fields in the intermediate range ( >300 Hz-10 MHz). , 2002, Bioelectromagnetics.
[7] David B. Fogel,et al. An introduction to simulated evolutionary optimization , 1994, IEEE Trans. Neural Networks.
[8] L. Dupré,et al. Magnetic field computation for optimized shielding of induction heaters , 2004 .
[9] Gilbert Syswerda,et al. Uniform Crossover in Genetic Algorithms , 1989, ICGA.
[10] Heinz Mühlenbein,et al. Predictive Models for the Breeder Genetic Algorithm I. Continuous Parameter Optimization , 1993, Evolutionary Computation.
[11] M. Nervi,et al. Techniques for the automatic optimisation of active shields , 2001 .
[12] Philip E. Gill,et al. Practical optimization , 1981 .