Rancang Bangun Freewheeling DC Terkontrol Untuk Menunjang Praktikum Elektronika Daya

Main Article Content

I Wayan Lastera

Abstract

Controlled DC is a type of DC voltage ignition involving power electronic components, as an effort to meet the electrical power needs of certain loads, whether resistive, inductive or capacitive. In power electronics practicum, controlled DC testing with inductive loads is less than optimal due to equipment limitations. To overcome this, in this research a controlled DC freewheeling design was created and tests were carried out: 1. Controlled DC testing with a resistive load in series with an inductive whose inductance value was varied without applying freewheeling. 2. Controlled DC testing with a resistive load in series with an inductive load whose inductance value is varied by applying freewheeling. The aim of this research is to determine the potential of freewheeling design, as an effort to further optimize controlled DC performance testing with resistive, inductive and capacitive loads in power electronics practicum. The test data obtained was tabulated, analyzed descriptively. The results obtained show that in test 1, the DC output voltage has a part left on the negative side. In test 2, the DC output voltage has no part left on the negative side. Freewhweeling functions well and makes testing in power electronics practicum more optimal.

Downloads

Download data is not yet available.

Article Details

How to Cite
Lastera, I. (2023). Rancang Bangun Freewheeling DC Terkontrol Untuk Menunjang Praktikum Elektronika Daya. Jurnal Temapela, 5(1), 29-37. Retrieved from http://temapela.labdasar.unand.ac.id/index.php/temapela/article/view/164
Section
Articles

References

Hadiyansyah, Atmam, & Setiawan, D. (2019). Studi Penggunaan Semikonverter AC-DC Untuk Mengatur Kecepatan Motor DC. SainETIn, 3(2), 33–41. https://doi.org/10.31849/sainetin.v3i2.3036
Lastera, I. W. (2019). Peningkatan Kapasitas Rentang Tegangan Uji Osiloskop Tipe Hm 203-7 dengan Pemanfaatan Alat Konverter. Jurnal SPEKTRUM, 6(3), 154. https://doi.org/10.24843/spektrum.2019.v06.i03.p22
Liu, E., & Su, W. (2019). Study on effects of common rail injector drive circuitry with different freewheeling circuits on control performance and cycle-by-cycle variations. Energies, 12(3). https://doi.org/10.3390/en12030564
Meliala, S. (2016). Analisis Tegangan Keluaran DC Step-Up Cuk Konverter Menggunakan Fuzzy Logic Kontroler. Journal of Electrical Technology, 1(1), 17–24.
Muhammad, A., Islam, S., Wibowo, N. R., & Elviralita, Y. (n.d.). RANCANG BANGUN MODUL PRAKTIKUM ELEKTRONIKA DAYA (BUCK CONVERTER - BOOST CONVERTER) - EEPIS Repository. 49–54. http://repo.pens.ac.id/296/
Ngurah, I. G., Hernanda, S., Negara, I. M. Y., Soeprijanto, A., Asfani, D. A., Wahyudi, M., & Fahmi, D. (2018). Analisis Karakteristik Arus dan Tegangan pada Inisiasi Feroresonansi Transformator Tegangan Rendah. 7(2).
Setiawan, I., Facta, M., Priyadi, A., & Purnomo, M. H. (2017). Berbasis D-SOGI PLL. 16(02), 84–87.
Usman, U., Azis, F., Wirana, A., & Habibuddin, R. (2017). Perancangan dan Pembuatan Trainer Penyearah Terkendali 3 Fasa. JTT (Jurnal Teknologi Terpadu), 5(1), 26. https://doi.org/10.32487/jtt.v5i1.207
Widharma, I. G. S., & Sunaya, I. N. (2018). Simulation of Measurement To Rms Voltage Value. 18(1), 37–41.
Yanto, D. T. P., Hidayat, R., & Hamdani. (2018). Rancang Bangun Trainer Elektronika Daya : Controlled and Uncontrolled Rectifier. Prosiding Seminar Nasional Penelitian (SNP2M) 2018, 2018, 83–88.
Yin, S., Liu, Y., Liu, Y., Jet Tseng, K., Pou, J., & Simanjorang, R. (2017). Comparison of SiC voltage source inverters using synchronous rectification and freewheeling diode. IEEE Transactions on Industrial Electronics, 65(2), 1051–1061. https://doi.org/10.1109/TIE.2017.2733483