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Optymalizacja konstrukcji transformatora obrotowego

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Warianty tytułu
EN
A rotary transformer design optimization
Języki publikacji
PL
Abstrakty
PL
Przedmiotem artykułu jest transformator obrotowy. Służy on do przekazywania energii z części nieruchomej do części wirującej. Umożliwia bezstykowy przekaz energii, dlatego może być zastosowany w maszynie synchronicznej w celu eliminacji szczotek. W artykule przeprowadzono optymalizację, która pozwoli na zaproponowanie takiej konstrukcji z wykorzystaniem do tego celu rdzeni ferrytowych. Transformator obrotowy będzie zasilany napięciem o częstotliwości rzędu kiloherców, do wykonania uzwojeń została zaproponowana lica.
EN
The following paper covers rotary transformer topic. Duty of this device is to deliver energy from stator part to rotary part. This provide contactless energy transfer. Due to it can be used in synchronous machine in accordance to eliminate brushes. In this paper was conducted optimization process which provide to propose such design with use of ferrite cores. It will be supply with square voltage with range of kHz with litz wire winding.
Rocznik
Strony
17--22
Opis fizyczny
Bibliogr. 33 poz., rys., tab., wykr.
Twórcy
autor
  • ABB Sp z o.o., Łódź
Bibliografia
  • [2] Bortis D. 2013. Analysis of Rotary Transformer Concept for High-Speed Applications. Applied Power Electronics Conference and Exposition (APEC). Twenty-Eighth Annual IEEE.
  • [3] Bortis D. 2013. Optimization of Rotary Transformer for High-Speed Applications, 2013 IEEE 14th Workshop on Control and Modeling for Power Electronics (COMPEL).
  • [4] Chacko R. 2014. Magnetic Slip Ring – Rotary Transformer Based Novel Non-Contact Signal Transfer Mechanism for Spacecraft Application. International Conference on Magnetics. Machines&Drives (AICERA-2014 iCMMD).
  • [5] Eskelinen P. Experimental Rotary Transformers For Antenna Power Supplies and Control. Antennas and Propagation Magazine, IEEE. vol. 52, Issue 5.
  • [6] Inoue H. 1991. Finite Element Analysis of crosstalk in a rotary transformer for VCR’ S. IEEE Transactions on magnetics, vol. 27, no. 5.
  • [7] Jephcott C.R. Rotary Transformer for Radio Purposes. Students’ Quarterly Journal. vol. 9, Issue 36.
  • [8] Katalog producenta z charakterystykami materiałowymi, http://www.fdk.co.jp/cyber-e/pdf/ FB-FBE001.pdf. Wejście dnia 11 kwietnia 2015.
  • [9] Konstantinos D. 2005. Contact-less Transfer of Energy by means of a Rotating Transformer, IEEE ISIE 2005, Dubrovnik, Croatia.
  • [10] Konstantinos D. 2007. An Airbone Radar Power Supply With Conctactless Transfer of Energy – Part I: Rotating Transformer. IEEE Transactions on Industrial Electronics. vol. 54, no. 5.
  • [11] Legranger J. 2007. Comparison of Two Optimal Rotary Transformer Designs for Highly Constrained Applications, Electric Machines&Drives Conference. IEMDC ‘07. IEEE International vol. 2.
  • [12] Legranger J. 2007. Design of a Brushless Rotor Supply for a Wound Rotor Synchronous Machine for Integrated Starter Generator. Vehicle Power and Propulsion Conference.
  • [13] Marx S.H. 1971. A Kilowatt Rotary Power Transformer. IEEE Transactions on Aerospace and Electronic Systems, vol. AES-7, no. 6.
  • [14] McLyman Wm. T. 2004. Transformer and inductor design handbook, Marcel Dekker, Inc. New York.
  • [15] Nozawa R. 2014. Excitation System by Contactless Power Transfer System with the Primary Series Capacitor Method. The 2014 International Power Electronics Conference.
  • [16] Rotary Transformers Developed To Replace Slip Rings and Brushes. Electrical Engineering. Vol. 80, Issue 6.
  • [17] Ruviaro M. 2010. Design and Analysis of a Brushless Doubly Fed Induction Machine with Rotary Transformer. XIX International Conference on Electrical Machines – ICEM 2010, Rome.
  • [18] Ruviaro M. 2012. A Brushless Doubly Fed Induction Machine with Flat Plane Rotary Transformers, 2012 XXth International Conference on Electrical Machines (ICEM).
  • [19] Ruviaro M. 2012. Analysis of a Brushless Doubly Fed Induction Machine With Rotary Transformer. IEEE Transactions on Industrial Electronics, vol. 59, no. 6.
  • [20] Shenk W.E.The Forced-Oil-Cooled Rotary Welding Transformer, Power Apparatus and Systems, Part III. Transactions of the American Institute of Electrical Engineers.
  • [21] Smeets J.P.C. 2010. Contactless Power Transfer to a Rotating Disk, IEEE International Symposium on Industrial Electronics (ISIE).
  • [22] Smeets J.P.C. 2010. Comparison of Winding Topologies in a Pot Core Rotating Transformer. 12th International Conference on Optimization of Electrical and Electronic Equipment (OPTIM).
  • [23] Smeets J.P.C. 2010. Optimal Design of a Pot Core Rotating Transformer, Energy Conversion Congress and Exposition (ECCE), IEEE .
  • [24] Stancu C. 2014. Separately Excited Synchronous Motor with Rotary Transformer for Hybrid Vehicle Application, Energy Conversion Congress and Exposition (ECCE), IEEE .
  • [25] Stuart T.A. 1986. Rotary Transformer Design with Fixed Magnetizing and/or Leakage Inductance. IEEE Transactions on Aerospace and Electronic Systems vol. AES-22, no. 5.
  • [26] Studer P.A., Paulkovich J. 1980. Non-contacting power transfer device US 4321572 A. The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration.
  • [27] Trevisan R. 2014. A 1-kW Contactless Energy Transfer System Based on a Rotary Transformer for Sealing Rollers. IEEE transactions on industrial electronics, vol. 61, no. 11.
  • [28] van Vlerken J.J.L.M. 1994. Lumped Modeling of Rotary Transformers, Heads and Electronics for Helical-Scan. Digest of the Magnetic Recording Conference. Signal Processing, 14–17 Aug.
  • [29] van Vlerken J.J.L.M. 1995. Lumped Modeling of Rotary Transformers, Heads and Electronics for Helical-Scan Recording. IEEE Transactions on Magnetics, vol. 31, no. 2.
  • [30] Veszpremi K. 2003. Optimal Operation of the Rotating Transformer Brushless Excitation of Synchronous Machine. Industrial Electronics. ISIE ‘03. 2003 IEEE International Symposium on (vol. 1).
  • [31] Xiao YoungJun. 2012. The Design for Tracking Control System based on Multiple Rotary Transformer. Consumer Electronics. 2012 2nd International Conference on Communications and Networks (CECNet).
  • [32] Zhong H. 2014. Design and Analysis of a Three-phase Rotary Transformer for Doubly Fed Induction Generators. Industry Applications Society Annual Meeting, IEEE .
  • [33] Zhong H. Desing and Analysis of a Three-phase Rotary Transformer for Doubly Fed Induction Generators, Industry Applications. IEEE Transactions on. Vol. PP, Issue 99.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b8904373-0492-4f20-a073-a84aeba1363a
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