Development of Non-Conventional Energy Systems as a Source of Electric Power for Alternators

PARTAONAN HARAHAP, RIMBAWATI RIMBAWATI, CHOLISH CHOLISH, ABDULLAH ABDULLAH, JOKO ARIF SETIAWAN

Abstract


This Development of a Non-Conventional Energy System as a Power Source for an Alternator aims to design an efficient and self-sustaining power generation system. The study focuses on the drive mechanism, rotor speed synchronization, and excitation current analysis to achieve optimal electrical output. Experimental results indicate peak performance at 4000 RPM with an induced voltage of 1539 V (star configuration) and a rectified DC output of 14 V. An excitation current of 7 A produced an electromagnetic torque of 2.44 Nm, ensuring stable operation. The developed system demonstrates efficiency, stability, and potential for future energy-independent vehicle applications.


Keywords


Non-conventional energy; electrical system; energy conversion; efficiency

Full Text:

PDF

References


Amin Tanvir, dkk. (2023). International Journal of Multidisciplinary Sciences and Arts Integration of electric vehicles (EVs) with electrical grid and impact on smart charging. 2(06), 225–234.

Anshory, dkk. (2022). Bab Iv Prinsip-Prinsip Konversi Energi. In Buku Ajar Dasar Konversi Energi.

Anthony, Z. (2019). Mesin listrik dasar.

Bowles, E. (2009). Advances in renewable energy. In GPA Annual Convention Proceedings (Vol. 2).

Diameter, dkk. (2020). Pengaruh Diameter Pully Alternator Dalam Pengisian Baterai Pada Kendaraan Roda Empat Resep Sembiring Sekolah Tinggi Teknologi Immanuel Medan. 4(4), 24–32.

Evalina, dkk. (2018). Pengaturan Kecepatan Putaran Motor Induksi 3 Fasa Menggunakan Programmable Logic Controller. Journal of Electrical Technology, 3(2), 73–80.

Evalina, N., & Azis, A. (2020). The Use of MQ6 and Microcontroller of ATMega 2360 as a Leaks Detection Device of Liquid Petrolum Gas (LPG). 389–393. https://doi.org/10.33258/birex.v2i3.1079

Febriansyah, F. (2019). Karakteristik Arus Start Motor Induksi Tiga Fasa (Motor Slip Ring) Dengan Beban dan Tanpa Beban di Laboratorium Teknik Listrik Politeknik Negeri Sriwijaya. Journal of Chemical Information and Modeling, 53(9), 1689–1699.

Harahap, Partaonan, dkk. (2021). Performance of Grid-Connected Rooftop Solar PV System for Households during Covid-19 Pandemic. Journal of Electrical Technology UMY, 5(1), 26–31. https://doi.org/10.18196/jet.v5i1.12089

Harj S. (2017). Bab I Generator Sinkron ( Alternator ). Academia.Edu, 1–49. https://www.academia.edu/12518858/BAB_I_GENERATOR_SINKRON_ALTERNATOR

Huang, dkk. (2021). Comprehensive analysis of electric field characteristics for multi-winding medium frequency transformer. Energies, 14(11). https://doi.org/10.3390/en14113285

IEA. (2023). Energy demand accelerates , with electricity leading the way. 1–7.

Lubis, S. (2019). Rancang Bangun Alternator Mobil Sebagai Pembangkit Energi Listrik Alternatif. RELE (Rekayasa Elektrikal Dan Energi) : Jurnal Teknik Elektro, 1(2), 77–81. https://doi.org/10.30596/rele.v1i2.3003

Prumanto, D. (2020). Rancang Bangun Alat Pengiris Bawang Dengan Penggerak Motor Listrik Ac. Jurnal Teknokris, 23(2), 50–57.

PUIL, 2000. (2000). Persyaratan Umum Instalasi Listrik 2000 (PUIL 2000). DirJen Ketenagalistrikan, 2000(Puil), 1–133.

Ramadhan, D. (2021). Perancangan Permanent Magnet Synchronous Generator Kapasitas 22 KVA Menggunakan Metode Finite Element Method. Jurnal Riset Rekayasa Elektro, 3(2), 83–90. https://doi.org/10.30595/jrre.v3i2.11516

Rimbawati, dkk. (2019). Voltage Control System Design. Semnastek Uisu, 1, 14–20.

Shafi, D. (2022). Power Quality Improvement by Using Phase Shifting Transformer. … of Innovative Research in Engineering & …, 2, 127–133. https://acspublisher.com/journals/index.php/ijirem/article/view/10925%0Ahttps://acspublisher.com/journals/index.php/ijirem/article/download/10925/9797

U. (2020). Bahan Ajar Kelistrikan otomotif. Ahlimedia Book.

Wijaya, A. A., Syahrial, & Waluyo. (2016). Perancangan Generator Magnet Permanen dengan Arah Fluks Aksial untuk Aplikasi Pembangkit Listrik. Reks Elkomika, 4(2), 93–108.




DOI: https://doi.org/10.26760/elkomika.v13i4.354

Refbacks

  • There are currently no refbacks.


 

_______________________________________________________________________________________________________________________

ISSN (print) : 2338-8323 | ISSN (electronic) : 2459-9638

Publisher:

Department of Electrical Engineering Institut Teknologi Nasional Bandung, Indonesia

Address: 20th Building  Institut Teknologi Nasional Bandung PHH. Mustofa Street No. 23 Bandung 40124, Indonesia

Contact: +627272215 (ext. 206)

Email: jte.itenas@itenas.ac.id________________________________________________________________________________________________________________________


Free counters!

Web

Analytics Made Easy - StatCounter

Statistic Journal

Jurnal ini terlisensi oleh Creative Commons Attribution-ShareAlike 4.0 International License.

Creative Commons License