TY - JOUR
T1 - Modeling methods for the main switch of high pulsed-power facilities based on transmission line code
AU - Hu, Yixiang
AU - Zeng, Jiangtao
AU - Sun, Fengju
AU - Wei, Hao
AU - Yin, Jiahui
AU - Cong, Peitian
AU - Qiu, Aici
PY - 2014/9/1
Y1 - 2014/9/1
N2 - Based on the transmission line code (TLCODE), a circuit model is developed here for analyses of main switches in the high pulsed-power facilities. With the structure of the ZR main switch as an example, a circuit model topology of the switch is proposed, and in particular, calculation methods of the dynamic inductance and resistance of the switching arc are described. Moreover, a set of closed equations used for calculations of various node voltages are theoretically derived and numerically discretized. Based on these discrete equations and the Matlab program, a simulation procedure is established for analyses of the ZR main switch. Voltages and currents at different key points are obtained, and comparisons are made with those of a PSpice L-C model. The comparison results show that these two models are perfectly in accord with each other with discrepancy less than 0.1%, which verifies the effectiveness of the TLCODE model to a certain extent.
AB - Based on the transmission line code (TLCODE), a circuit model is developed here for analyses of main switches in the high pulsed-power facilities. With the structure of the ZR main switch as an example, a circuit model topology of the switch is proposed, and in particular, calculation methods of the dynamic inductance and resistance of the switching arc are described. Moreover, a set of closed equations used for calculations of various node voltages are theoretically derived and numerically discretized. Based on these discrete equations and the Matlab program, a simulation procedure is established for analyses of the ZR main switch. Voltages and currents at different key points are obtained, and comparisons are made with those of a PSpice L-C model. The comparison results show that these two models are perfectly in accord with each other with discrepancy less than 0.1%, which verifies the effectiveness of the TLCODE model to a certain extent.
KW - Dynamic inductance
KW - Dynamic resistance
KW - Main switch
KW - Transmission line code (TLCODE)
UR - https://www.scopus.com/pages/publications/84907209330
U2 - 10.1088/1009-0630/16/9/12
DO - 10.1088/1009-0630/16/9/12
M3 - 文章
AN - SCOPUS:84907209330
SN - 1009-0630
VL - 16
SP - 873
EP - 877
JO - Plasma Science and Technology
JF - Plasma Science and Technology
IS - 9
ER -