Development of a Motor Speed Controller of Drones Considering Voltage Drop of Battery 


Vol. 44,  No. 6, pp. 601-606, Jun.  2017
10.5626/JOK.2017.44.6.601


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  Abstract

Recently, we have frequently encountered flying drones with the growth of drone industry. However, it is difficult for a driver to stabilize the motor speed of drones, since the voltage of a Lithium polymer battery used in drones may suddenly drop or rise when its power is exhausted. The instability of the motor speed precludes the drone from maintaining a flight altitude, so that the fuselage of a drone performs ascending and descending repeatedly. For solving this problem, existing techniques either add a compensator considering voltage drop of battery or change the control model. Since these techniques use hardware-implemented modules or depend on motor type and experimental results, there is a problem that new suitable modules should be implemented in accordance with the used motor of the fuselage. For solving this problem, in this paper, we implement a motor speed controller in the firmware of drones by considering voltage drop of battery to enhance drone flight stability.


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  Cite this article

[IEEE Style]

S. Lee, B. R. Yun, D. Y. Kim, H. Kim, W. J. Lee, "Development of a Motor Speed Controller of Drones Considering Voltage Drop of Battery," Journal of KIISE, JOK, vol. 44, no. 6, pp. 601-606, 2017. DOI: 10.5626/JOK.2017.44.6.601.


[ACM Style]

Sunghee Lee, Bo Ram Yun, Deok Yeop Kim, Hwangsoo Kim, and Woo Jin Lee. 2017. Development of a Motor Speed Controller of Drones Considering Voltage Drop of Battery. Journal of KIISE, JOK, 44, 6, (2017), 601-606. DOI: 10.5626/JOK.2017.44.6.601.


[KCI Style]

이성희, 윤보람, 김덕엽, 김황수, 이우진, "배터리 전압 강하를 고려한 드론 모터 속도 제어기 개발," 한국정보과학회 논문지, 제44권, 제6호, 601~606쪽, 2017. DOI: 10.5626/JOK.2017.44.6.601.


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