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    A Direct Method for Parabolic PDE Constrained Optimization Problems

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    Date
    2014
    Author
    Potschka, Andreas
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    Abstract
    Andreas Potschka discusses a direct multiple shooting method for dynamic optimization problems constrained by nonlinear, possibly time-periodic, parabolic partial differential equations. In contrast to indirect methods, this approach automatically computes adjoint derivatives without requiring the user to formulate adjoint equations, which can be time-consuming and error-prone. The author describes and analyzes in detail a globalized inexact Sequential Quadratic Programming method that exploits the mathematical structures of this approach and problem class for fast numerical performance. The book features applications, including results for a real-world chemical engineering separation problem.
    URI
    https://lib.hpu.edu.vn/handle/123456789/26134
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