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3D magnetic sparse inversion using an interior-point method

机译:3D使用内部点法的磁稀痕反演

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摘要

Rock susceptibility measurements are sometimes taken on outcrop and borehole rocks, and they provide valuable information for constraining magnetic data inversion. We have developed two approaches for 3D magnetic sparse inversion that effectively take advantage of the rock susceptibility information. Both approaches minimize a total objective function subject to bound constraints using an interior-point method. The first approach directly minimizes an l(1)-norm of the susceptibility model by keeping the bounds positive, in which case the objective function is differentiable in the feasible region. The second approach minimizes a more generalized l(p)-like-norm (0 = p = 1) of the susceptibility model by approximating the l(p)-like-norm inversion as an iteratively reweighted least-squares problem. Moreover, this approach allows the model values to be either positive or negative. We also revealed the equivalence of our approaches and the binary inversion. The recovered models of both approaches are characterized by sharp boundaries. However, the credibility of recovered boundaries depends on the accuracy and validity of the user-specified upper and lower bounds. Our approaches are tested on the synthetic data and field data acquired over a copper-nickel deposit.
机译:有时在露头和钻孔岩石上进行岩石敏感度测量,并且它们提供了用于约束磁数据反转的有价值的信息。我们开发了两种用于3D磁稀疏反演的方法,有效利用岩石敏感性信息。两种方法使用内部点方法最小化受限约束的总目标函数。第一方法通过保持阳性的界限直接最小化易感模型的L(1)-norm,在这种情况下,客观函数在可行区域中可分离。第二种方法通过近似L(P) - 尺码反转作为迭代重复最小二乘问题。此外,这种方法允许模型值是正的或负的。我们还透露了我们的方法和二进制反演的等价。两种方法的恢复模型都是尖锐的边界的特征。但是,恢复边界的可信度取决于用户指定的上限和下限的准确性和有效性。我们的方法在通过铜镍沉积物上获得的合成数据和现场数据进行了测试。

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