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Napęd silnika bezszczotkowego z ulepszoną charakterystyką wyjściową
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Abstrakty
A brushless DC (BLOC) motor controI based on rotor position sensing scheme is discussed in this paper. A PIC microcontrolIer is employed to generate pulse width modulation (PWM) signals for driving the power inverter bridge. Parameters required for power PWM generations have been programmed, which provide flexible and online source code modifications in accordance with the motor and circuit requirements. Hardware implementation and simulation results show the effectiveness of the developed motor drive. The flexibility offered by the developed motor controI and drive enables the implementation of difference controI algorithms for improving the output characteristics of the BLDC motor.
W artykule przedstawiono sterowanie silnikiem bezszczotkowym OC bazujące na czujnikach pozycji wimika. Mikrokontroler jest wykorzystywany do wytwarzania sygnału PWM zasilającego przekształtnik. Parametry wymagane do generacji sygnału PWM są programowane w zależności od wymagań silnika i napędu. Badania modelu i symulacje pokazują skuteczność zaproponowanej metody.
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Czasopismo
Rocznik
Tom
Strony
258--261
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
Bibliografia
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- [2] A. Emadi and J. C. Andreas, Energy-efficient electric motors. New York: Marcel Dekker, 2005.
- [3] Y. S. Lai, et al., "Efficiency comparison of PWM-controlled and AM-controlled sensorless BLDCM drives for refrigerator applications," in Conference Record - lAS Annual Meeting (IEEE Industry Applications Society), 2007, pp. 268-273.
- [4] S. Jianwen, et al., "A novel microcontroller-based sensorless brushless DC (BLDC) motor drive for automotive fuel pumps,", IEEE Transactions on Industry Applications, vol. 39, pp. 1734- 1740,2003.
- [5] T. Hemanand and T. Rajesh, "Speed control of brushless DC motor drive employing hard chopping PWM technique using DSP," in India International Conference on Power Electronics, IICPE 2006, 2006, pp. 393-396.
- [6] L. Yen-Shin, et al., "Novel pulse-width modulation technique with loss reduction for smali power brushless DC motor drives," in Industry Applications Conference, 2002. 37th lAS Annual Meeting, pp. 2057-2064, vol.3.
- [7] K. Oka, et al., "A novel PWM technique with switching-Ioss reduction in five-Ieg inverter for independent drives of two three-phase AC motors," The IEEE Energy Conversion Congress and Exposition, ECCE 2009, pp. 877-884.
- [8] Microchip 2006 Product Line Card, [web: www.michrochip.com. accessed 2009].
- [9] K. Cheung, "Microchip Ranks First in 8-bit Microcontroller Revenue," [web: http://edageek.com/2007/04/16/microchip-gartner-dataquest/], accessed 2008.
- [10] C. Rui Hong, e~al., "Project-Based Lab Teaching for Power Electronics and Drives", IEEE Transactions on Education, vol. 51, pp. 108-113,2008.
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- [12] International Rectifier AN990, Application Characterization of 1GBTs, International Rectifier, http://www.irf.com.
- [13] E. Mese, "Project-oriented adjustable speed motor drive course for undergraduate curricula," IEEE Transactions on Education, vol. 49, pp. 236-246, 2006.
- [14] W. Brown, "Brushless DC Motor Control Made Easy," Application Note AN857, 9/12/20022002.
- [15] P. Pillay and R. Krishnan, "Modeling, simulation, and analysis of permanent-magnet motor drives. II. The brushless DC motor drive," IEEE Transactions on Industry Applications, vol. 25, pp. 274-279, 1989.
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Bibliografia
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bwmeta1.element.baztech-article-BPS3-0021-0021