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Improved diagonal tensor approximation (DTA) and hybrid DTA/BCGS-FFT method for accurate simulation of 3D inhomogeneous objects in layered media

机译:改进的对角张量逼近(DTA)和混合DTA / BCGS-FFT方法,可精确模拟分层介质中的3D不均匀物体

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This paper presents an improved diagonal tensor approximation (DTA) and its hybridization with the stabilized biconjugate-gradient fast Fourier transform (BCGS-FFT) algorithm to solve a volume integral equation for three-dimensional (3D) objects in layered media. The improvement in DTA is obtained for lossy media through a higher-order approximation. The interaction between the dyadic Green's function and the contrast source is efficiently evaluated by the (FFT) algorithm through the convolution and correlation theorems. For the hybrid implementation, the DTA solution is used as an initial estimate and a preconditioner in the BCGS-FFT algorithm in order to solve the forwards modelling problem accurately with fewer iterations than the conventional BCGS-FFT algorithm. The accuracy and convergence of the DTA, BCGS-FFT and hybrid DTA/BCGS-FFT methods are compared extensively with several numerical examples. Numerical results show that (a) the improved DTA formulation enhances the accuracy and (b) the DTA/BCGS-FFT method can produce results as accurate as the conventional BCGS-FFT but with fewer iterations if the contrast is moderate. For very high contrasts, the hybrid method does not seem to improve further on the BCGS-FFT iteration convergence.
机译:本文提出了一种改进的对角张量逼近(DTA)及其与稳定的双共轭梯度快速傅立叶变换(BCGS-FFT)算法的混合算法,用于求解分层介质中三维(3D)对象的体积积分方程。 DTA的改进是通过高阶近似来获得有损耗介质的。 (FFT)算法通过卷积和相关定理有效地评估了二进格林函数与对比度源之间的相互作用。对于混合实现,DTA解决方案在BCGS-FFT算法中用作初始估计值和前置条件,以便以比常规BCGS-FFT算法更少的迭代次数准确地解决正向建模问题。 DTA,BCGS-FFT和DTA / BCGS-FFT混合方法的准确性和收敛性与几个数值示例进行了广泛比较。数值结果表明,(a)改进的DTA公式可提高准确性,并且(b)DTA / BCGS-FFT方法可产生与常规BCGS-FFT一样准确的结果,但如果对比度适中,则迭代次数更少。对于非常高的对比度,混合方法在BCGS-FFT迭代收敛上似乎没有进一步改善。

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