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Smirnov V. A. Povishenie kachestva kontrolya texnicheskogo sostoyaniya tokopriemnikov elektricheskogo podvijnogo sostava magistral’nix jeleznix dorog. [Improving the quality of control of the technical condition of pantograph of electric rolling stock of main railways], dis. kand. tex. nauk: 05.22.07, V. A. Smirnov, Omsk: OmGUPS, 2007, 128 p.
Abduraxmanov B.B. Kontrol’ sostoyaniya tokoprovodyashix vstavok elektrovozov VL80S [Monitoring the state of contact strips of VL80S electric locomotives]. B.B. Abduraxmanov, A.P. Zelenchenko. Transport: problemi, idei, perspektivi: sbornik trudov LXXVI Vserossiyskoy nauchno-texnicheskoy konferensii studentov, aspirantov i molodix uchenix. – SPb.: FGBOU VO PGUPS, 2016, pp. 9-12.
Abduraxmanov B.B. Metod diagnostiki tokoprovodyashix vstavok tokopriemnikov elektrovozov [Method for diagnostics of contact strips of pantograph of electric locomotive]. B.B. Abduraxmanov, A.P. Zelenchenko. Transport: problemi, idei, perspektivi: sbornik trudov LXXVII Vserossiyskoy nauchno-texnicheskoy konferensii studentov, aspirantov i molodix uchenix. – SPb.: FGBOU VO PGUPS, 2017, pp. 13-18.
Yang H. J. Effect of the Vibration on Friction and Wear Behavior between the Carbon Strip and Copper Contact Wire Pair. H.J. Yang, G.X. Chen, S.D. Zhang, W.H. Zhang, Proceedings of the Institution of Mechanical Engineers – Part J: Journal of Engineering Tribology, 226, 2012. pp. 722-728.
Zelenchenko A.P. Opredelenie sostoyaniya tokoprovodyashix vstavok tokopriemnikov elektrovozov [Determination of the state of contact strips of electric locomotive pantograph]. A.P. Zelenchenko, B.B. Abduraxmanov. Prorivnie texnologii elektricheskogo transporta. Materiali devyatogo mejdunarodnogo simpoziuma “Eltrans-2017”, posvyashennogo 130-letiyu osnovaniya G.K. Merchingom elektrotexnicheskoy shkoli v Rossii 18-20 oktyabrya 2017 goda. – SPb.: FGBOU VO PGUPS, 2019, pp. 171-176.
Usuda T. Method for detecting step-shaped wear on contact strips by measuring catenary vibration. T. Usuda, M. Ikeda, Y. Yamashita. Quarterly report of RTRI, 2011, vol. 52 issue 4 pages pp. 237-243.
Viyavlenie defektov podshipnikov kacheniya s pomosh’yu analiza vibrasii. [Identification of rolling bearing defects using vibration analysis] Daniel Lynn, Manager, Training, Computational Systems, Inc. (CSI) / Per.s angliyskogo I.R. Sheynyak; Pod red. V.A. Smirnova. [Elektronniy resurs] 24.01.05. Available at: http://www.vibration.ru/v_defekt.shtml
Berent V.Ya. Svoystva tokos’emnix elementov polozov tokopriemnikov elektropodvijnogo sostava i oblasti ix rasional’nogo ispol’zovaniya [The properties of the contact strips of the skids of the pantograph of the electric rolling stock and the area of their rational use]. V. Ya. Berent, Texnologiya, 1998, no 3-4, pp. 32-41.
Efimov D.A. Sovershenstvovanie tokopriemnikov na osnove modelirovaniya ix vzaimodeystviya s kontaktnimi podveskami [Improvement of pantographs based on modeling their interaction with overhead catenaries]: dis. kand. tex. nauk: 05.22.07. D.A. Yefimov. – Yekaterinburg: UrGUPS, 2015, 162 p.
Li V.N. O mexanizmax razrusheniya ugol’nix vstavok tokopriemnikov [About the mechanisms of destruction of carbon strips of pantographs] / V.N. Li, S.N. Ximuxin. Mir Transporta, 2005, no 3, pp. 80-82.
Markvardt K.G. Kontaktnaya set’. [Contact network] Uchebnik dlya vuzov j.-d. trans. / K.G. Markvardt. Moscow, Transport, 1994, 335 p.
Plaks A.V. Issledovanie vzaimodeystviya tokopriemnika i kontaktnoy seti pri visokix skorostyax dvijeniya. A.V. Plaks. Sb. nauch. tr. LIIJTa, 1959, no 167, pp. 68-76.
Frayfel’d A.V. Proektirovanie kontaktnoy seti [Contact network design]. A.V. Frayfel’d, G.N. Brod, Moscow, Transport, 1991, 335 p.
Aydin I., Karakose M., Akin E. Monitoring of pantograph-catenary interaction by using particle swarm based contact wire tracking. Systems Signals and Image Processing (IWSSIP) 2014, International Conference on, 2014, pp. 23-26.
Bocciolone M., Bucca G., A. Collina A., Comolli L. Pantograph-catenary monitoring by means of fibre Bragg grating sensors: Results from tests. Mechanical Systems and Signal Processing, vol. 41, 2013, no 1-2, pp. 226-238.
Bucca G.A Procedure for the Wear Prediction of Collector Strip and Contact Wire in Pantograph–Catenary System. G. Bucca, A. Collina. Wear, 266(1–2), 2009, pp. 46-59.
Collina A. Numerical simulation of pantograph-overhead equipment interaction. A. Collina, S. Bruni, Vehicle System Dynamics 38 (4), 2002, pp. 261-291.
Judek S., Skibicki J., Visual method for detecting critical damage in railway contact strips. Measurement Science and Technology, vol. 29, no. 5, 2018.
Klapas D. Simulation of wear in overhead current collection systems. D. Klapas, F.A. Benson, R. Hackam. Review of Scientifi c Instruments 56, 1985, pp. 1820-1828.
Yamashita Y., et al. A basic study on the method for detecting step-shaped wear on contact stripes. Condition monitoring and diagnostic engineering management, 2010, pp. 305-312.