EFFECT OF VOLTAGE, CURRENT, AND POWER ON REVOLUTIONS PER MINUTE IN THE BRUSHLESS DIRECT 3000-WATT CURRENT MOTOR ON E-GOKART
Keywords:
Current, E-Gokart, Power on revolution per minute (rpm), VoltageAbstract
The internal combustion engine is a gasoline-powered internal combustion engine that is widely used in the world of transportation. Therefore, everyone is starting to think about developing alternative fuels that are fuel efficient, easy to upgrade, and better in terms of emissions. Vehicles with electric motors are one of the right solutions because they are more environmentally friendly and do not cause pollution when used. In this study, we will discuss the performance of the brushless DC electric motor that is applied to the Go-kart based on the voltage, current, and electrical power that occurs. The method used is measurement using software and experimental simulations. Based on the test results using Votol_V3 Voltage, current, power, and rotation per minute (rpm) have a relationship, the higher the rpm on the mid-drive type electric motor, the greater the current and power required.
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Laki, R. F., Gunawan, H., and Gede, I. N. (2013). Analisis konsumsi bahan bakar motor bensin yang terpasang pada sepeda motor Suzuki Smash 110cc yang digunakan pada jalan menanjak. Jurnal Poros Teknik Mesin Unsrat, 2(1), 1-10.
Nandakumar, M., Ramalingam, S., Nallusamy, S., and Rangarajan, S. S. (2020). Novel efficacious utilization of fuzzy-logic controller-based two-quadrant operation of PMBLDC motor drive systems for multipass hot-steel rolling processes. Electronics, 9(6), 1-18.
Owen, N. A., Inderwildi, O. R., and King, D. A. (2010). The status of conventional world oil reserves—Hype or cause for concern?. Energy policy, 38(8), 4743-4749.
Rahman, M. A. (2013). Making electric cars for environmentally friendly transportation solutions (Baskara Cars). Regional Research Journal, 12(2), 1819-1837.
Rangkuti, P. A., Hasbullah, R., and Sumariana, K. S. U. (2012). Uji performansi mesin penepung tipe disc (Disc Mill) untuk penepungan Juwawut (Setaria italica (L.) P. Beauvois). Agritech, 32(1), 66-72.
Simonson, T., Gaillard, T., Mignon, D., Schmidt am Busch, M., Lopes, A., Amara, N., Polydorides, S., Sedano, A., Druart, K., and Archontis, G. (2013). Computational protein design: the Proteus software and selected applications. Journal of computational chemistry, 34(28), 2472-2484.
Syahrani, A. (2006). Analisa Kinerja Mesin Bensin Berdasarkan Hasil Uji Emisi. SMARTek, 4(4), 260-266.
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