The adjoint Newton algorithm (ANA) is based on the first-and second-order adjoint techniques allowing one to obtain the ''Newton line search direction'' by integrating a ''tangent linear model'' backward in time (with negative time steps). Moreover, the ANA provides a new technique to find Newton line search direction without using gradient information. The error present in approximating the Hessian (the matrix of second-order derivatives) of the cost function with respect to the control variables in the quasi-Newton-type algorithm is thus completely eliminated, while the storage problem related to storing the Hessian no longer exists since the explicit Hessian is not required in this algorithm. The ANA is applied here, for the first time, in the framework of 4D variational data assimilation to the adiabatic version of the Advanced Regional Prediction System, a threedimensional, compressible, nonhydrostatic storm-scale model. The purpose is to assess the feasibility and efficiency of the ANA as a large-scale minimization algorithm in the setting of 4D variational data assimilation.
No takes yet. Share an insight, caveat, or question.
Wang et al. (1997) studied this question.
Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context: