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Full-Wave Analysis of Field-to-Line Coupling Effects Using 1D FDTD Method under Exciting Source with Different Bandwidths

机译:在带宽不同的激励源下使用一维FDTD方法进行场-线耦合效应的全波分析

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With the aim to analyze field-to-line coupling effects based on energy spectrum, parallel finite-difference time-domain (FDTD) method is applied to calculate the induced voltage on overhead lines under high-power electromagnetic (HPEM) environment. Firstly, the energy distribution laws of HEMP (IEC 61000-2-9), HEMP (Bell Laboratory), HEMP (Paulino et al., 2010), and LEMP (IEC61000-4-5) are given. Due to the air-earth stratified medium, both the absorbing boundary and the connecting boundary applied to scattering by finite-length objects are separately set in aerial and underground parts. Moreover, the influence of line length on induced voltage is analyzed and discussed. The results indicate that the half-peak width is wider with the increase of the line length. But the steepness of induced voltage on the overhead line is invariable. There is no further increase in the peak of induced voltage especially when the line length increases to be equivalent to the wavelength of the frequency bands with the maximum energy.
机译:为了分析基于能谱的场对线耦合效应,在高功率电磁(HPEM)环境下,采用并行有限差分时域(FDTD)方法计算架空线上的感应电压。首先,给出了HEMP(IEC 61000-2-9),HEMP(贝尔实验室),HEMP(Paulino等,2010)和LEMP(IEC61000-4-5)的能量分布规律。由于是空地分层介质,在空中和地下部分分别设置了由有限长度物体散射的吸收边界和连接边界。此外,分析并讨论了线长对感应电压的影响。结果表明,半峰宽随着线长的增加而变宽。但是架空线上感应电压的陡度是不变的。感应电压的峰值不再增加,尤其是当线长增加到等于具有最大能量的频带的波长时。

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