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The first half-turn of an inertial vibrator

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Języki publikacji
EN
Abstrakty
EN
The paper concerns the starting of an inertial vibrator which, due to a high value of static unbalance, is unable to perform the first half-turn in the gravitational field of force. The problem plays an essential role in the selection of driving units for the wide class of over-resonance machines. On the basis of the Pontryagin's Maximum Principle the problem was formulated in terms of a dynamie optimisation. Thus, the driving moment performs the function of control - which is being looked for - while eąuations of motion and start-end conditions related to the position of a vibrator, act as constrains eąuations and boundary conditions. The possible simplifications in description of the motion of the vibrator, as well as the influence of the variable asynchronous motor driving moment on the optimal solutions, are discussed in the paper. On the basis of the work-energy equivalence principle, the minimum values of the driving moment - which warrants the performance of the first half-turn of the vibrator at a given number of the moment switch-overs - were determined. The problem of thermal loads of the motor during the first half-turn was also considered. The theoretical results were confirmed by the computer simulations.
Słowa kluczowe
Rocznik
Strony
25--42
Opis fizyczny
Bibliogr. 9 poz., rys., tab., wykr.
Twórcy
autor
  • AGH University of Science and Technology Department of Mechanics and Vibroacoustics Al. Mickiewicza 30, 30-059 Kraków, Poland
Bibliografia
  • 1. M. ATHANS, P. FALB, Optimal Control. An Introduction to the Theory and Its Applications, WNT, Warsaw 1966.
  • 2. T. BANASZEWSKI, Screens, Publ. Śląsk, 1990.
  • 3. I. GELFAND, S. FOMIN, Calculus of Variations, PWN, Warsaw 1975.
  • 4. H. GÓRECKI, Optimization of Dynamical Systems, PWN, Warsaw 1993.
  • 5. J. ŁAWRYNOWICZ, Calculus of Variations with an Introduction to the Mathematical Programming, WNT, Warsaw 1977.
  • 6. Numerical Recipes in C The Art of Scientific Computing, Cambridge University Press, New York 1992.
  • 7. A. JAGIEŁŁO, Non-Holonomic Transformations in the Electric Machines Theory, PWN, Warsaw 2002.
  • 8. J. MICHALCZYK, Vibratory Machines. Dynamical Calculations, Vibrations, Noise, WNT, Warsaw 1995.
  • 9. W. PASZEK, Transient States of Alternating Current Electric Machines, WNT, War-saw 1986.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0033-0002
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