DYNAMICS OF SYSTEMS WITH ONE-SIDED DIFFERENTIAL CONSTRAINTS

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详细

A dynamical system with constraints in the form of linear differential inequalities is considered. It is proved that in the general case, in the presence of such connections, the motion is shockless. The possibility of realizing such bonds by viscous friction forces is shown. An example of a nonholonomic system is given, for which, using numerical simulation, it is shown how, with an increase in the degree of anisotropy, the transition from a system with anisotropic viscous friction to a system with one-sided differential constraints occurs.

作者简介

T. Salnikova

Lomonosov Moscow State University

编辑信件的主要联系方式.
Email: tatiana.salnikova@gmail.com
Russian Federation, Moscow

E. Kugushev

Lomonosov Moscow State University

编辑信件的主要联系方式.
Email: kugushevei@yandex.ru
Russian Federation, Moscow

A. Demidov

Lomonosov Moscow State University

编辑信件的主要联系方式.
Email: ademich8@gmail.com
Russian Federation, Moscow

参考

  1. Аппель П. Теоретическая механика. т. 2. М., Физматгиз, 1960. 487 с.
  2. Жуковский Н.Е. Теоретическая механика. М., Л., Гостехиздат, 1952. С. 812.
  3. Березинская С.Н., Кугушев Е.И., Сорокина О.В. О движении механических систем с односторонними связями. Вестник московского университета, сер. 1, математика, механика. 2005. Т. 3. С. 18–24.
  4. Kozlov V.V. On the dynamics of systems with one-sided non-integrable constraints, Theor. Appl. Mech. 2019. T. 46. Bып. 1. C. 1–14.
  5. Kozlov V.V. Integral Analogue of the Gauss Principle University of Nis, The scientific journal Facta Universitatis, Series: Mechanics, Automatic Control and Robotics. 2000. V. 2. № 10. P. 1055–1060.
  6. Kozlov V.V. Gauss Principle and Realization of Constraints, Regul. Chaotic Dyn. 2008. V. 13. № 5. P. 431–434.
  7. Иосида К. Функциональный анализ. М., Мир, 1967. С. 624.

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版权所有 © Т.В. Сальникова, Е.И. Кугушев, А.А. Демидов, 2023

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