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1702713 Vol 4 · Issue 11 Download Paper

Speed Control Strategy of Brushless DC Motor using Asymmetric Bridge Converter Topology

SRIRANJANI. M BALAMURUGAN. K POOJITHA. S SNEGAPRIYA. S

Subject area: Science,Engineering and Technology  ·  Area of research: Electric Machines

Abstract

Power electronic devices with front-end rectifier and it is mostly used for industry, commerce and transportation, which result in low PF. The proposed system of this paper is controlled the speed of Brushless DC motor using asymmetric bridge converter because the Brushless DC motor is widely used in industrial application. It has different advantage over other conventional motor such as better speed and torque characteristics, better dynamic response, high efficiency, high speed range, no noise operation. The main objective of this project is controlling speed of BLDC motor by asymmetrical methodology in that PWM signal is given to MOSFET to produce 3 phases. Brushless Direct Current motors (BLDC), also known as permanent magnet motors and it has wide applications in many industries due to their higher performance, reliability and ease of control. This paper proposed a hardware model for speed control of BLDC drive by using prototype hardware. The speed control results obtained from hardware are satisfactory. The benefit of good modelling for implementation of hardware has been shown in this project. And this project when vary the potentiometer knob to control the level of speed. Thus, prototype development of hardware model for speed control strategy using asymmetric bridge converter topology of BLDC drive is successfully implemented in this paper.

Keywords

BLDC Motor, MOSFET, PWM, Potentiometer

References

[1] A. Bhattacharjee, G. Ghosh, V. Kumar Tayal and P. Choudekar, "Speed control of BLDC motor through mobile application via secured Bluetooth," 2017 Recent Developments in Control, Automation & Power Engineering (RDCAPE), 2017, pp. 203-206, doi: 10.1109/RDCAPE.2017.8358267.

[2] M. Aghaee and A. A. Jalali, "BLDC Motor Speed Control Based on MPC Sliding Mode Multi-Loop Control Strategy – Implementation on Matlab and Arduino Software," Electrical Engineering (ICEE), Iranian Conference on, 2018, pp. 795-800, doi: 10.1109/ICEE.2018.8472464.

[3] J. Molnár, D. Drabiščák, P. Jacko, M. Guzan and M. Maliakova, "Design of motor speed controller of electronic commutation," 2017 International Conference on Modern Electrical and Energy Systems (MEES), 2017, pp. 276-279, doi: 10.1109/MEES.2017.8248909.

[4] H. F. Prasetyo, A. S. Rohman and M. R. A. R. Santabudi, "Implementation of model predictive control using Algorithm-3 on Arduino Mega 2560 for speed control of BLDC motor," 2017 3rd International Conference on Science in Information Technology (ICSITech), 2017, pp. 642-647, doi: 10.1109/ICSITech.2017.8257192.

[5] H. S. Hameed, "Brushless DC motor controller design using MATLAB applications," 2018 1st International Scientific Conference of Engineering Sciences - 3rd Scientific Conference of Engineering Science (ISCES), 2018, pp. 44-49, doi: 10.1109/ISCES.2018.8340526.

[6] M. Vlad, P. Popov and D. Vasile, "Simulation of Arduino Mega 2560 board controlling a variable frequency converter driving a BLDC motor," 2020 7th International Conference on Energy Efficiency and Agricultural Engineering (EE&AE), 2020, pp. 1-4, doi: 10.1109/EEAE49144.2020.9278996.

[7] W. Khan-Ngern, W. Keyoonwong, N. Chatsiriwech, P. Sangnopparat, P. Mattayaboon and P. Worawalai, "High Performance BLDC Motor Control for Electric Vehicle," 2018 International Conference on Engineering, Applied Sciences, and Technology (ICEAST), 2018, pp. 1-4, doi: 10.1109/ICEAST.2018.8434499.

[8] R. Sam, Mohd Nor Md Tan and Mohamad Safari Ismail, "Quad-copter using ATmega328 microcontroller," 2013 International Conference on Electrical Machines and Systems (ICEMS), 2013, pp. 566-570, doi: 10.1109/ICEMS.2013.6754500.

[9] V. M. Varatharaju, B. L. Mathur and K. Udhyakumar, "Speed control of PMBLDC motor using MATLAB/Simulink and effects of load and inertia changes," 2010 International Conference on Mechanical and Electrical Technology, 2010, pp. 543-548, doi: 10.1109/ICMET.2010.5598420.

[10] Ling Xu, Jian-Guo Song and Qiang-Qiang Lin, "Brushless DC motor speed control system Simulink simulation," 2016 IEEE International Conference on Power and Renewable Energy (ICPRE), 2016, pp. 62-66, doi: 10.1109/ICPRE.2016.7871173.

[11] R. Arulmozhiyal and R. Kandiban, "An intelligent speed controller for Brushless DC motor," 2012 7th IEEE Conference on Industrial Electronics and Applications (ICIEA), 2012, pp. 16-21, doi: 10.1109/ICIEA.2012.6360690.

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[13] Ebin Joseph T and Sreethumol M V, "Speed control of BLDC motor drive under Direct Torque Control scheme with modified integrator," 2015 IEEE International Conference on Electrical, Computer and Communication Technologies (ICECCT), 2015, pp. 1-5, doi: 10.1109/ICECCT.2015.7225931.

[14] A. Shyam and Febin Daya J L, "A comparative study on the speed response of BLDC motor using conventional PI controller, anti-windup PI controller and fuzzy controller," 2013 International Conference on Control Communication and Computing (ICCC), 2013, pp. 68-73, doi: 10.1109/ICCC.2013.6731626.

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How to cite this paper

SRIRANJANI. M, BALAMURUGAN. K, POOJITHA. S, SNEGAPRIYA. S "Speed Control Strategy of Brushless DC Motor using Asymmetric Bridge Converter Topology" Iconic Research And Engineering Journals Volume 4 Issue 11 2021 Page 114-118
SRIRANJANI. M, BALAMURUGAN. K, POOJITHA. S, SNEGAPRIYA. S "Speed Control Strategy of Brushless DC Motor using Asymmetric Bridge Converter Topology" Iconic Research And Engineering Journals, vol. 4, no. 11, May. 2021
SRIRANJANI. M, BALAMURUGAN. K, POOJITHA. S, SNEGAPRIYA. S (2021). Speed Control Strategy of Brushless DC Motor using Asymmetric Bridge Converter Topology. Iconic Research And Engineering Journals, 4(11).
SRIRANJANI. M, BALAMURUGAN. K, POOJITHA. S, SNEGAPRIYA. S "Speed Control Strategy of Brushless DC Motor using Asymmetric Bridge Converter Topology" Iconic Research And Engineering Journals, vol. 4, no. 11, May. 2021.
@article{1702713,
      author = {SRIRANJANI. M, BALAMURUGAN. K, POOJITHA. S, SNEGAPRIYA. S},
      title = {Speed Control Strategy of Brushless DC Motor using Asymmetric Bridge Converter Topology},
      journal = {Iconic Research And Engineering Journals},
      year = {2021},
      volume = {4},
      number = {11},
      pages = {114-118},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1702713.pdf},
      abstract = {Power electronic devices with front-end rectifier and it is mostly used for industry, commerce and transportation, which result in low PF. The proposed system of this paper is controlled the speed of Brushless DC motor using asymmetric bridge converter because the Brushless DC motor is widely used in industrial application. It has different advantage over other conventional motor such as better speed and torque characteristics, better dynamic response, high efficiency, high speed range, no noise operation. The main objective of this project is controlling speed of BLDC motor by asymmetrical methodology in that PWM signal is given to MOSFET to produce 3 phases. Brushless Direct Current motors (BLDC), also known as permanent magnet motors and it has wide applications in many industries due to their higher performance, reliability and ease of control. This paper proposed a hardware model for speed control of BLDC drive by using prototype hardware. The speed control results obtained from hardware are satisfactory. The benefit of good modelling for implementation of hardware has been shown in this project. And this project when vary the potentiometer knob to control the level of speed.  Thus, prototype development of hardware model for speed control strategy using asymmetric bridge converter topology of BLDC drive is successfully implemented in this paper.},
      keywords = {BLDC Motor, MOSFET, PWM, Potentiometer},
      month = {May},
  }