10 citations to https://www.mathnet.ru/rus/zvmmf10071
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Daniela Lera, Maria Chiara Nasso, Mikhail Posypkin, Yaroslav D. Sergeyev, “Determining solution set of nonlinear inequalities using space-filling curves for finding working spaces of planar robots”, J Glob Optim, 2024
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Lera D. Posypkin M. Sergeyev Ya.D., “Space-Filling Curves For Numerical Approximation and Visualization of Solutions to Systems of Nonlinear Inequalities With Applications in Robotics”, Appl. Math. Comput., 390 (2021), 125660
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Р. В. Ефремов, “Сложность методов аппроксимации выпуклых компактных тел многогранниками двойного описания и ее оценки для гипершара”, Ж. вычисл. матем. и матем. физ., 59:7 (2019), 1264–1274 ; R. V. Efremov, “Complexity of methods for approximating convex compact bodies by double description polytopes and complexity bounds for a hyperball”, Comput. Math. Math. Phys., 59:7 (2019), 1204–1213
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E V Gaponenko, D I Malyshev, L Behera, “Approximation of the parallel robot working area using the method of nonuniform covering”, J. Phys.: Conf. Ser., 1333:5 (2019), 052005
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George K. Kamenev, Lecture Notes in Computational Science and Engineering, 131, Numerical Geometry, Grid Generation and Scientific Computing, 2019, 157
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L. A. Rybak, E. V. Gaponenko, D. I. Malyshev, Mechanisms and Machine Science, 73, Advances in Mechanism and Machine Science, 2019, 741
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Yu. Evtushenko, M. Posypkin, L. Rybak, A. Turkin, “Approximating a solution set of nonlinear inequalities”, J. Glob. Optim., 71:1, SI (2018), 129–145
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Ю. Г. Евтушенко, М. А. Посыпкин, Л. А. Рыбак, А. В. Туркин, “Отыскание множеств решений систем нелинейных неравенств”, Ж. вычисл. матем. и матем. физ., 57:8 (2017), 1248–1254 ; Yu. G. Evtushenko, M. A. Posypkin, L. A. Rybak, A. V. Turkin, “Finding sets of solutions to systems of nonlinear inequalities”, Comput. Math. Math. Phys., 57:8 (2017), 1241–1247
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Г. К. Каменев, “Эффективность метода уточнения оценок при аппроксимации многомерных шаров многогранниками”, Ж. вычисл. матем. и матем. физ., 56:5 (2016), 756–767 ; G. K. Kamenev, “Efficiency of the estimate refinement method for polyhedral approximation of multidimensional balls”, Comput. Math. Math. Phys., 56:5 (2016), 744–755
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Г. К. Каменев, “Асимптотические свойства метода уточнения оценок при аппроксимации многомерных шаров многогранниками”, Ж. вычисл. матем. и матем. физ., 55:10 (2015), 1647–1660 ; G. K. Kamenev, “Asymptotic properties of the estimate refinement method in polyhedral approximation of multidimensional balls”, Comput. Math. Math. Phys., 55:10 (2015), 1619–1632