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arxiv: 1803.02290 · v3 · pith:NOB36NCTnew · submitted 2018-03-06 · 🧮 math.NA · math.OC

Bouligand-Landweber iteration for a non-smooth ill-posed problem

classification 🧮 math.NA math.OC
keywords mappingforwarditerationnon-smoothproblemanalysisateauxbouligand
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This work is concerned with the iterative regularization of a non-smooth nonlinear ill-posed problem where the forward mapping is merely directionally but not G\^ateaux differentiable. Using a Bouligand subderivative of the forward mapping, a modified Landweber method can be applied; however, the standard analysis is not applicable since the Bouligand subderivative mapping is not continuous unless the forward mapping is G\^ateaux differentiable. We therefore provide a novel convergence analysis of the modified Landweber method that is based on the concept of asymptotic stability and merely requires a generalized tangential cone condition. These conditions are verified for an inverse source problem for an elliptic PDE with a non-smooth Lipschitz continuous nonlinearity, showing that the corresponding Bouligand--Landweber iteration converges strongly for exact data as well as in the limit of vanishing data if the iteration is stopped according to the discrepancy principle. This is illustrated

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