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Application of multi-valued weighting logical functions in the analysis of a degree of importance of construction parameters on the example of hydraulic valves

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Języki publikacji
EN
Abstrakty
EN
In the optimization process, changes in the construction parameters value influence the behaviour of functions depending on time. Weighting logical coefficients for the stabilisation time are taken into consideration here, i.e., a shorter (better) stabilisation time has a more important (bigger) value of the weighting coefficient. An example of applying weighting logical functions in the analysis of a degree of importance of construction parameters of a hydraulic valve is presented in the paper.
Rocznik
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539--548
Opis fizyczny
Bibliogr. 14 poz., rys., tab., wykr.
Twórcy
autor
  • Opole University of Technology Faculty of Production Engineering and Logistic 75 Ozimska Str., 45-370 Opole, POLAND
Bibliografia
  • [1] Deptuła A. (2014): Optimization of machine systems using logic equations and graph-structures. - Dissertation- Department of Mechanical Engineering, Technical University of Opole.
  • [2] Deptuła A. (2011): Weighted logic equations design guidelines in discrete optimization of machine systems. - XL Conference on Applications of Mathematics, Zakopane 2011, Institute of mathematics PAN, Warsaw.
  • [3] Deptuła A. and Partyka M.A. (2010): Application of game graphs in optimization of dynamic system structures. - International Journal of Applied Mechanics and Engineering, vol.15, No.3, pp.647-656.
  • [4] Deptuła A. and Partyka M.A. (2012): Solving weight multivalent logic equations describing the design guidelines in discrete optimization of machine systems. - XLI Conference on Applications of Mathematics, Zakopane 2010, Institute of Mathematics PAN, Warsaw 2010.
  • [5] Francis J. and Betts P.L. (1997): Modelling incompressible flow in a pressure relief valve. proceedings of the institution of mechanical engineers. - Part E: Journal of Process Mechanical Engineering, vol.211, No.2, pp.83-93.
  • [6] Giergiel J. (1990): Identification of mechanical systems. - Warsaw: PWN.
  • [7] http://www.mathworks.com/products/simhydraulics.html
  • [8] http://www.kirupa.com/developer/actionscript/depth_breadth_search.html.
  • [9] Kurowski W. (2001): Modelling technical objects. - Manuscript Development, Płock.
  • [10] Partyka M.A. (1984): The Quine - Mc Cluskey minimization algorithm of individual multiple- valued partial functions for digital control systems. - 3rd Inter. Confer. Syst. Engin., Wright State University, Dayton.
  • [11] Smith J. (2003): Parallel mechanisms. - Archive of Mechanisms, vol.2, No.24, pp.113-125, Warsaw.
  • [12] Stępniewski M. (1994): Pomps. - Warsaw: WNT.
  • [13] Suzuki K. and Urata E. (2003): Improvement of cavitation resistive property of a water hydraulic relief valve proc. - The Eighth SICFP, 1, pp.265-276.
  • [14] Żak J. and Stefanowski J. (1994): Determining maintenance activities of motor vehicles using rough sets approach. - Proc. of Euromaintenance’94 Conference, Amsterdam.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7450ec65-447e-499c-9685-f59eab52f710
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