DocumentCode :
114400
Title :
Optimization of EM railgun based on orthogonal design method and harmony search algorithm
Author :
Yan Yan ; Tao Chao ; Ping Ma ; Ming Yang ; Yuwei Hu
Author_Institution :
Control & Simulation Center, Harbin Inst. of Technol., Harbin, China
fYear :
2014
fDate :
7-11 July 2014
Firstpage :
1
Lastpage :
6
Abstract :
The muzzle velocity is a key index to reflect the performance of electromagnetic(EM) railgun. In order to obtain an optimal solution of muzzle velocity accurately and quickly in numerical simulation, an approach of combining orthogonal design method(ODM) and harmony search(HS) algorithm is presented. There are up to 11 factors to be considered in affecting the muzzle velocity, including eight trigger delay times of pulsed power supply (PPS), the operating voltage of PPS, the length of rail and the mass of projectile. By ODM analysis, the best level combinations of these factors are selected and the significant degree of these factors is ordered. Therefore, the varying ranges of these factors are decided and a hierarchical factor optimization model is built. The optimization model is solved by HS algorithm with the penalty function method added to satisfy process constraints, such as the peak of current is bounded under 420KA. Finally, the proposed approach and the simple HS algorithm are compared. The results indicate that, by using the proposed approach, the average of original velocity is increased by 43.53%, and the average of best velocity at last, is increased by 1.34%.
Keywords :
numerical analysis; optimisation; projectiles; pulsed power supplies; railguns; search problems; EM railgun optimization; ODM analysis; current 420 kA; electromagnetic railgun; harmony search algorithm; hierarchical factor optimization model; muzzle velocity; numerical simulation; orthogonal design method; penalty function method; process constraints; projectile mass; pulsed power supply; rail length; trigger delay times; Electromagnetic Railgun; Harmony Search Algorithm; Optimization; Orthogonal Design; Penalty Function;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Launch Technology (EML), 2014 17th International Symposium on
Conference_Location :
La Jolla, CA
Type :
conf
DOI :
10.1109/EML.2014.6920619
Filename :
6920619
Link To Document :
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