Title :
Research of the Resistance Model in Solid Armature Railgun
Author :
Yuanchao Hu ; Jiangjun Ruan ; Yadong Zhang ; Junpeng Liao ; Yujiao Zhang ; Tao Huang
Author_Institution :
Sch. of Electr. Eng., Wuhan Univ., Wuhan, China
Abstract :
During the past few decades, various calculation models have been introduced into studying solid armature railgun. In this paper, four models, including constant resistance, speed resistance, current resistance, and multifactor resistance, were studied in detail. To verify their validity, experimental and simulation methods were adopted in both low- and high-velocity cases. By conducting a 3-D eddy current electromagnetic field simulation with the finite-element numerical method, the self-inductance gradient (L ´r) was got. The control equations of these different resistance models can be solved by the Runge-Kutta method. Comparisons of experimental and simulation results of these different resistance models indicated that an appropriate resistance model according to the experimental condition can improve the accuracy of simulation analysis. The friction coefficient resistance model can describe armature resistance during the movement process in both low- and high-velocity cases.
Keywords :
Runge-Kutta methods; eddy current testing; finite element analysis; railguns; 3-D eddy current electromagnetic field simulation; Runge-Kutta method; calculation models; constant resistance; current resistance; finite-element numerical method; multifactor resistance; resistance model; solid armature railgun; speed resistance; Force; Friction; Mathematical model; Railguns; Rails; Resistance; Solid modeling; Constant resistance force model; current resistance force model; friction coefficient resistance force model; resistance force model; solid armature railgun; speed resistance force model;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2013.2245149