Space Vector Pulse Width Modulation with a Arduino UNO Board in the TinkerCAD Program
Main Article Content
Abstract
This research presented the design and simulation of space vector pulse width modulation (SVPWM) using TinkerCAD to generate switching signals for driving the gate of power electronic switch devices in a two-level, three-phase voltage source inverter circuit, which could adjust the frequency of the output voltage. The research included simulating the designed program using TinkerCAD and testing its performance with an Arduino Uno board.
The simulation and examination results showed that TinkerCAD could be used to develop and design space vector pulse width modulation. The simulation results indicated a percentage error of -1.21% in the output voltage frequency, while the examination results showed a percentage error of -0.77% in the output voltage frequency.
Article Details

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
สงวนสิทธิ์ โดย สถาบันการอาชีวศึกษาภาคตะวันออกเฉียงเหนือ 1
306 หมู่ 5 ถนนมิตรภาพ หนองคาย-อุดรธานี ตำบลโพธิ์ชัย อำเภอเมืองหนองคาย จังหวัดหนองคาย 43000
โทร 0-4241-1445,0-4241-1447
ISSN : 3027-6861 (print) ISSN : 3027-687X (online)
References
A. Iqbal, and et al. “Matlab/Simulink Model of Space Vector PWM for Three-Phase Voltage Source Inverter”, Proceedings of the 41st International Universities Power Engineering Conference, United Kingdom, 6-8 Sept. 2006.
S. A. Zulkifli, M. N. Hussin and A. S. Saad, “MATLAB-Arduino as a low cost microcontroller for 3 phase inverter”, 2014 IEEE Student Conference on Research and Development, Penang, Malaysia, 2014, pp. 1-5.
Z. E. A. Kherroubi, and et al. “Real time implementation of space vector pulse width modulation using Arduino DUE board”, IECON 2016 - 42nd Annual Conference of the IEEE Industrial Electronics Society, Florence, Italy, 2016, p.3576-3581.
H. W. van der Broeck, H. . -C. Skudelny and G. V. Stanke, “Analysis and realization of a pulsewidth modulator based on voltage space vectors”, IEEE Transactions on Industry Applications, Vol.24, No.1, Jan.-Feb. 1988, p142-150.
A. Arif, Y. Bekakra, and D. Ben Attous, “Fuzzy Logic Control Using SVPWM to Enhance the Control of the DFIG Driven by a Wind Turbine”, ECTI Transactions on Electrical Engineering, Electronics, and Communications, 20(1), 2022, p39–50.
A. M. Trzynadlowski, and et al. “Random pulse width modulation techniques for converter-fed drive systems-a review”, IEEE Transactions on Industry Applications, vol. 30, no. 5, Sept.-Oct. 1994, p1166-1175,
S. Hossain, and et al. “MOSFET-based Three-Phase Inverter using Arduino - Applicable in Microgrid Systems”, 2021 6th International Conference for Convergence in Technology (I2CT), Maharashtra, India, 2021, pp. 1-5
R. Katman, N. Sisuk, and A. Kaewpoonsuk, “AN EXPERIMENT TO MEASURE THE INTERNAL RESISTANCE OF A MULTIMETER ON THE TINKERCAD PROGRAM”, PSRU Journal of Science and Technology, 7(1),2022, p100-116. (in Thai)
B. Wasuri, B. Hiransing, and A. Jangwanitlert, “7-LEVEL H-BRIDGE CASCADED INVERTER FOR RENEWABLE ENERGY SOURCE”, Journal of Science and Technology Thonburi University, Vol.6, No.2, 2022, p.46-58. (in Thai)
R. Supha, T. Gumjudpai, and N. Khomkham, “Developing Skills and Techniques for Teaching Arduino & Robot with Tinkercad for Mathayomsuksa 5 Students”, The Journal of Research and Academics, Vol.7, No.1, 2024, p.167-182. (in Thai)