TY - JOUR
T1 - Sensitivity Analysis of Conductivity Models in Simulation of High-Altitude Electromagnetic Pulse
AU - Li, Ya
AU - Wang, Jianguo
AU - Zuo, Yinghong
AU - Niu, Shengli
AU - Zhu, Jinhui
AU - Ouyang, Xiaoping
N1 - Publisher Copyright:
© 2022 IEEE.
PY - 2022/12/1
Y1 - 2022/12/1
N2 - The reasonable conductivity model and parameters are important for the accurate simulation of high-altitude electromagnetic pulse. While in most public literature, the fitting formulas of the conductivity parameters are given directly without discussion of their physical meaning. In addition, few investigations were carried out in systematic analysis on the parameter sensitivity of the air conductivity model. In this article, the sensitivity of the parameters in the equilibrium ohmic model is analyzed, indicating that electron mobility is the most sensitive conductivity parameter. The law of the peak electric field with the electron mobility under different conditions of observation direction, burst height, yield, gamma energy, and gamma pulse waveform is systematically explored. It is concluded that a reasonable mobility fitting formula should consider the effects of air density, electric field intensity, and nonequilibrium effect, and the fitting result should be as close as possible to the credible measurement value.
AB - The reasonable conductivity model and parameters are important for the accurate simulation of high-altitude electromagnetic pulse. While in most public literature, the fitting formulas of the conductivity parameters are given directly without discussion of their physical meaning. In addition, few investigations were carried out in systematic analysis on the parameter sensitivity of the air conductivity model. In this article, the sensitivity of the parameters in the equilibrium ohmic model is analyzed, indicating that electron mobility is the most sensitive conductivity parameter. The law of the peak electric field with the electron mobility under different conditions of observation direction, burst height, yield, gamma energy, and gamma pulse waveform is systematically explored. It is concluded that a reasonable mobility fitting formula should consider the effects of air density, electric field intensity, and nonequilibrium effect, and the fitting result should be as close as possible to the credible measurement value.
KW - Air conductivity
KW - conduction electron
KW - high-altitude electromagnetic pulse (HEMP)
KW - sensitivity analysis
UR - https://www.scopus.com/pages/publications/85139529803
U2 - 10.1109/TEMC.2022.3208428
DO - 10.1109/TEMC.2022.3208428
M3 - 文章
AN - SCOPUS:85139529803
SN - 0018-9375
VL - 64
SP - 2094
EP - 2103
JO - IEEE Transactions on Electromagnetic Compatibility
JF - IEEE Transactions on Electromagnetic Compatibility
IS - 6
ER -