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Impact of the pulse width modulation on the temperature distribution in the armature of a solenoid valve

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In order to estimate the inductive power set in the armature of the high-speed solenoid valve (HSV) during the open loop control (OLC) using pulse width modulation (PWM) an analytical explicit formula has been derived. The simplifications taken both in the geometry and in the physical behavior of the HSV were described. The inductive power was calculated for different boundary conditions and shown as a function of the frequency of the coil current. The power set in the armature was used as an input to the thermal calculation. The thermal calculation had an objective to estimate the time dependent temperature distribution in the armature of the HSV. All the derivation steps were presented and the influence of different boundary conditions was shown and discussed. The increase of the temperature during the heating with inductive power has been evaluated both in the core and on the side surface of the HSV.
Rocznik
Strony
773--786
Opis fizyczny
Bibliogr. 21 poz., rys., tab., wykr.
Twórcy
autor
  • Paul Gossen Str. 99 91052, Erlangen, GERMANY
Bibliografia
  • [1] Angadi S., Jackson S. and Choe S. (2009): Reliability and life study of hydraulic solenoid valve. Part 1: a multi-physics finite element model. - Engineering Failure Analysis, S. vol.16, No.3, pp.874–887.
  • [2] Bottauscio O., Chiampi M. and Manzin A. (2004): Different finite element approaches for electromechanical dynamics. - IEEE Transactions on Magnetics, S. vol.40, No.2, pp.541–544.
  • [3] Bronstein I.N., Semendjajew K.A., Musiol G. and Mühlig H. (2000): Mathematics pocket-book. - Berlin: Edition Harri Deutsch.
  • [4] Burg K., Haf H. and Wille F. (1994): High Mathematics for Engineers Bd. 4 Vector Analysis and Complex Analysis. - Berlin: Teubner.
  • [5] Conraths H.J. (1992): Diss. Elektromagnetische Feld-und Temperaturverteilung bei induktiver Banderwärmung. Numerische Berechnung und Messung. RWTH Aachen.
  • [6] Dlugosz J. (2005): Complex functions. Theory, examples, tasks. - Wroclaw: Oficyna Wydawnicza GiS.
  • [7] Grigull U. and Sander H. (1990): Wärmeleitung. Berlin: Springer-Verlag.
  • [8] Huber B. and Ulbrich H. (2014): Modeling and experimental validation of the solenoid valve of a common rail diesel injector. - SAE Technical Paper., S. 2014-01-0195.
  • [9] Jackson J.D. (2006): Classical Electrodynamics. - New York: de Gruyter.
  • [10] Krysinski W. and Wlodarski L. (1998): Mathematics Analysis in Tasks. Part 2. - Warsaw: Wydawnictwo Naukowe PWN.
  • [11] Leitner R. and Zacharski J. (1998): Outline of High Mathematics. - Warsaw: Wydawnictwo Naukowo-Techniczne.
  • [12] Lu F., Deng J. and Hu Z. (2014): Impact of control methods on dynamic characteristic of high speed solenoid injectors. - SAE Technical Paper, S. 2014-01-1445.
  • [13] Mrozynski G. (2003): Electromagnetic Field Theory, Collection of Tasks. - Stuttgart, Leipzig, Wiesbaden: B.G. Tuebner.
  • [14] Nielsen N. (1906): Hand-Book of the Theory of Gamma Function. - Leipzig: Teubner.
  • [15] Peng L., Liyun F., Qaisar H., De X., Xiuzhen M. and Enzhe S. (2014): Research on Key Factors and Their Interaction Effects of Electromagnetic Force of High-Speed Solenoid Valve. - he Scientific World Journal. Hindawi Publishing Corporation., Article ID 567242.
  • [16] Rawa H. (2001): Electricity and Magnetism in Technics. - Warsaw: Wydawnictwo Naukowe PWN.
  • [17] Sean Hodgson, Mahdi Tavakoli, Minh Tu Pham and Arnaud Leleve (2015): Nonlinear Discontinuous Dynamics Averaging and PWM-Based Sliding Control of Solenoid-Valve Pneumatic Actuators. - IEEE/ASME TRANSACTIONS ON MECHATRONICS, S. vol.20, No.2, APRIL 2015.
  • [18] Shahroudi K., Peterson D. and Belt D. (2006): Indirect adaptive closed loop control of solenoid actuated gas and liquid injection valves. - SAE Technical Paper, S. 2006-01-0007.
  • [19] Taler J. and Duda P. (2003): Solution of Straight and Reverse Tasks of Heat Transfer. - Warsaw: Wydawnictwo Naukowo Techniczne.
  • [20] Tautz H. (1971): Heat Transfer and Temperature Compensation. - Weinheim: Verlag Chemie GMBH.
  • [21] Wei Ying Lai, Nurfarahin Onn, Collin Howe Hing Tang and Mohamed Hussein (2015): Position Control of Hydraulic Actuators Using Fuzzy Pulse Width Modulation (PWM). - Applied Mechanics and Materials, S. vol.735, pp.294-298.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-777c111b-6705-4989-b20e-f3133373782b
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