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首页> 外文期刊>Pure and Applied Geophysics >Full Waveform Modeling of Transient Electromagnetic Response Based on Temporal Interpolation and Convolution Method
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Full Waveform Modeling of Transient Electromagnetic Response Based on Temporal Interpolation and Convolution Method

机译:基于时间插值和卷积法的瞬态电磁响应全波形建模

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摘要

Quantitative modeling of the transient electromagnetic (TEM) response requires consideration of the full transmitter waveform, i.e., not only the specific current waveform in a half cycle but also the bipolar repetition. In this paper, we present a novel temporal interpolation and convolution (TIC) method to facilitate the accurate TEM modeling. We first calculate the temporal basis response on a logarithmic scale using the fast digital-filter-based methods. Then, we introduce a function named hamlogsinc in the framework of discrete signal processing theory to reconstruct the basis function and to make the convolution with the positive half of the waveform. Finally, a superposition procedure is used to take account of the effect of previous bipolar waveforms. Comparisons with the established fast Fourier transform method demonstrate that our TIC method can get the same accuracy with a shorter computing time.
机译:瞬态电磁(TEM)响应的定量建模需要考虑完整的发射器波形,即,不仅是半周期中的特定电流波形,而且是双极重复。 在本文中,我们提出了一种新的时间内插值和卷积(TIC)方法,以促进精确的TEM建模。 我们首先使用快速数字滤波器的方法计算对数标度的时间基础响应。 然后,我们在离散信号处理理论的框架中介绍一个名为Hamlogsinc的函数,以重建基础函数并使卷积与波形的正半成一半。 最后,使用叠加过程来考虑先前双极波形的效果。 与已建立的快速傅里叶变换方法的比较表明,我们的TIC方法可以获得相同的准确性,计算时间较短。

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