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Convex constrained optimization for the seismic reflection tomography problem

机译:地震反射层析成像问题的凸约束优化

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The nonlinear seismic reflection tomography problem consists on minimizing the function g(p)=parallel to T-f(p)parallel to(2)(2) where p is a vector containing the velocity model parameters and depth position of the reflectors, Tcontains the travel time of the rays, and f(p) is a nonlinear function that depends on the velocity of the subsurfaces. Recently a new approach, based on the spectral gradient method, was applied to find unconstrained local minimizers of g(p). This new idea requires very low storage and computational cost, but it presents an erratic behavior when applied to ill-conditioned problems. In this work, we combine the new low cost iterative technique with the recently proposed spectral projected method for convex constrained optimization to improve the convergence of the process, and to avoid the erratic behavior by imposing regularity into the optimization problem. Preliminary numerical experiments are also presented on synthetic data sets to illustrate the advantages of the new combined scheme. (c) 2006 Elsevier B.V All rights reserved.
机译:非线性地震反射层析成像问题在于最小化函数g(p)=平行于Tf(p)平行于(2)(2),其中p是包含速度模型参数和反射器深度位置的矢量,T包含行进光线的时间,f(p)是一个非线性函数,它取决于子表面的速度。最近,一种基于谱梯度方法的新方法被用于寻找g(p)的无约束局部极小值。这个新想法需要非常低的存储和计算成本,但是当应用于病态问题时,它表现出不稳定的行为。在这项工作中,我们将新的低成本迭代技术与最近提出的用于凸约束优化的频谱投影方法相结合,以改善过程的收敛性,并通过在优化问题中施加规律性来避免不稳定的行为。还对合成数据集进行了初步的数值实验,以说明新组合方案的优势。 (c)2006 Elsevier B.V保留所有权利。

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