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Permanent Magnet Synchronous Generator – Unsymmetrical Point Operation

Authors: P. Pistelok;

Permanent Magnet Synchronous Generator – Unsymmetrical Point Operation

Abstract

{"references": ["Glinka T.: \"Maszyny elektryczne wzbudzane magnesami trwa\u0142ymi\"\nWydawnictwo Politechniki \u015al\u0105skiej, Gliwice 2002.", "Bernatt J.: \"Obwody elektryczne i magnetyczne maszyn elektrycznych\nwzbudzanych magnesami trwa\u0142ymi\" Wydawnictwo KOMEL, Katowice\n2010.", "Pistelok P.,Czaja T.: \"Elektromechaniczna przetwornica cz\u0119stotliwo\u015bci\"\nZeszyty Problemowe Maszyny Elektryczne nr 2/2014 (102),\nWydawnictwo KOMEL, Katowice 2014.", "Rossa R., Kr\u00f3l E.: \"Modern electric machines with permanent magnet\".\nPrzegl\u0105d Elektrotechniczny nr 12/2008.", "Kisielewski P., Antal L.: \"Praca turbogeneratora podczas zwarcia\ndwufazowego\" Przegl\u0105d Elektrotechniczny nr 2b/2013.", "Maljkovi\u0107 Z., \u015barko D., Stipeti\u0107 S.: \"Unsymmetrical load of a threephase\nsynchronous generator \". Przegl\u0105d Elektrotechniczny nr 2b/2013.", "Radwa\u0144ski W., B\u0119dkowski B., Bia\u0142as A., Rossa R. : \"Koncepcja nap\u0119du\nelektrycznego \"e-kit\" dla miejskich samochod\u00f3w osobowych\" Zeszyty\nProblemowe Maszyny Elektryczne nr 4/2012 (97), Wydawnictwo\nKOMEL, Katowice 2012.", "Glinka T., Wolnik T., Kr\u00f3l E.: \"Silnik tarczowy typu torus s-ns\nobliczenia obwodu elektromagnetycznego\" Zeszyty Problemowe\nMaszyny Elektryczne nr 91/2011, Wydawnictwo KOMEL, Katowice\n2011.", "Dukalski P., Bia\u0142as A., Radwa\u0144ski W., B\u0119dkowski B., Fr\u0119chowicz A.:\n\"Koncepcja nap\u0119du z silnikiem BLDC o prze\u0142\u0105czalenej liczbie zwoj\u00f3w w\nnap\u0119dzie samochodu elektrycznego\". Przegl\u0105d Elektrotechniczny\n10.2013.\n[10] Hargreaves P.A., Mecrow B.C., Hall R.: \"Open circuit voltage distortion\nin silent pole synchronous generators with damper windings\" Power\nElectronics, Machines and Drives (PEMD 2010), 5th IET International\nConference on, vol., no., pp.1-6, 19-21 April 2010."]}

The article presents the concept of an electromagnetic circuit generator with permanent magnets mounted on the surface rotor core designed for single phase work. Computation field-circuit model was shown. The spectrum of time course of voltages in the idle work was presented. The cross section with graphically presentation of magnetic induction in particular parts of electromagnetic circuits was presented. Distribution of magnetic induction at the rated load point for each phase was shown. The time course of voltages and currents for each phases for rated power were displayed. An analysis of laboratory results and measurement of load characteristics of the generator was discussed. The work deals with three electromagnetic circuits of generators with permanent magnet where output voltage characteristics versus rated power were expressed.

Keywords

Permanent magnet generator, permanent magnets, asymmetrical three phase work., course of torque, vibration, single phase work

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