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Synergetic Control of Magnetic Bearings in Artificial Heart Ventricle Rotor

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Biomedical Engineering Aims and scope

This article reviews the problem of centering the rotor of an axial pump of the artificial heart ventricle (AHV) in a magnetic suspension. The small gap of the flowing part, high rotor speed, necessary service life of the AHV device, and its reliability and functionality introduce high demands on the control system of the rotor with magnetic bearings. This article proposes a synthesis of the control laws of the AHV with magnetic bearings based on the ADAR method (analytical design of aggregated regulators) of synergetic control theory and presents possibilities and prospects of applying the proposed control scheme.

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References

  1. Cardiovascular Diseases. WHO: http://www.who.int/media-centre/ factsheets/fs317/ru/ (reference date: 19-Aug-2015).

  2. Chernyavskii A.M. et al., Klin. Eksperim. Khir. Zhur. Akad. Petrovskogo, No. 2, 25-34 (2014).

  3. Bogdanova Yu.V., Gus’kov A.M., Nauk. Obrazov., No. 3, 170-187 (2014).

  4. Banin E.P., Gus’kov A.M., Sorokin F.D., Nauk. Obrazov., No. 2, 250-268 (2014).

  5. Research Report 2001/2002, Inst. Biomed. Tech., Aachen University (2002).

  6. Banin E.P., Gus’kov A.M., Sorokin F.D., Proc. XXVI ICYSS-2014, 352-356 (2015).

  7. Gomez A.D. Control of a Magnetically Levitated Ventricular Assist Device: Dissertation for the Degree of Master of Science in Mechanical Engineering, Rochester Institute of Technology (2009).

  8. Weinberg D.M., Vereshchagin V.P., Trudy VNIIEM., 89, 12-19 (1989).

    Google Scholar 

  9. Zhuravlev Yu.N., Active Magnetic Bearings: Theory, Calculation, Application [in Russian], Politekhnika, St. Petersburg (2003).

  10. Schweizer G., Maslen E.H., Magnetic Bearings. Theory, Design and Application to Rotating Machinery, Springer-Verlag (2009).

  11. Kolesnikov A.A., Synergetic Control Theory [in Russian], Energoatomizdat, Moscow (1994).

  12. Kolesnikov A.A., Synergetic Methods of System Control: Mechanical and Electromechanical Systems [in Russian, ed. Kolesnikov A.A.], LIBROKOM, Moscow (2013).

  13. Modern Applied Control Theory. Part II. Synergetic Approach to Control Theory [in Russian], TSURE, Taganrog (2000).

  14. Kuz’menko A.A. et al., Synergy-cybernetic Approach to Nonlinear Adaptive Control of Power System Hydrogene-rator, VSPU-2014, Moscow (2014).

  15. Bezuglov A. et al., Synergetic Control Theory Approach for Solving Systems of Nonlinear Equations, Earth Sciences Resources Institute, Univ. S. Carolina Columbia, USA.

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Correspondence to Yu. V. Bogdanova.

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Translated from Meditsinskaya Tekhnika, Vol. 50, No. 3, May-Jun., 2016, pp. 5-8.

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Bogdanova, Y.V., Guskov, A.M. Synergetic Control of Magnetic Bearings in Artificial Heart Ventricle Rotor. Biomed Eng 50, 152–156 (2016). https://doi.org/10.1007/s10527-016-9608-0

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  • DOI: https://doi.org/10.1007/s10527-016-9608-0

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