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《ESAIM-CONTROL OPTIMISATION AND CALCULUS OF VARIATIONS》杂志封面

《ESAIM-CONTROL OPTIMISATION AND CALCULUS OF VARIATIONS》中科院JCR分区

  • 2025年3月升级版:
  • 大类小类学科Top综述期刊
    数学 3区
    AUTOMATION & CONTROL SYSTEMS
    自动化与控制系统
    3区
    MATHEMATICS, APPLIED
    应用数学
    3区

  • 2023年12月升级版:
  • 大类小类学科Top综述期刊
    数学 3区
    AUTOMATION & CONTROL SYSTEMS
    自动化与控制系统
    3区
    MATHEMATICS, APPLIED
    应用数学
    3区

    《ESAIM-CONTROL OPTIMISATION AND CALCULUS OF VARIATIONS》期刊简介:

    ESAIM: COCV strives to publish rapidly and efficiently papers and surveys in the areas of Control, Optimisation and Calculus of Variations.

    Articles may be theoretical, computational, or both, and they will cover contemporary subjects with impact in forefront technology, biosciences, materials science, computer vision, continuum physics, decision sciences and other allied disciplines.

    Targeted topics include:

    in control: modeling, controllability, optimal control, stabilization, control design, hybrid control, robustness analysis, numerical and computational methods for control, stochastic or deterministic, continuous or discrete control systems, finite-dimensional or infinite-dimensional control systems, geometric control, quantum control, game theory;
    in optimisation: mathematical programming, large scale systems, stochastic optimisation, combinatorial optimisation, shape optimisation, convex or nonsmooth optimisation, inverse problems, interior point methods, duality methods, numerical methods, convergence and complexity, global optimisation, optimisation and dynamical systems, optimal transport, machine learning, image or signal analysis;
    in calculus of variations: variational methods for differential equations and Hamiltonian systems, variational inequalities; semicontinuity and convergence, existence and regularity of minimizers and critical points of functionals, relaxation; geometric problems and the use and development of geometric measure theory tools; problems involving randomness; viscosity solutions; numerical methods; homogenization, multiscale and singular perturbation problems.

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