Analisis Efisiensi Sistem Regenerative Braking pada Bus Listrik BYD K9 di Rute Transjakarta 1E
Kata Kunci:
Bus Listrik, Regenerative Braking, Efisiensi Energi, BYD K9, TransjakartaAbstrak
Penelitian ini bertujuan untuk mengevaluasi efisiensi pemulihan daya pada sistem regenerative braking pada bus listrik BYD K9 yang beroperasi di rute Transjakarta 1E. Metode yang digunakan adalah eksperimen kuantitatif melalui observasi langsung pada dashboard bus. Data dikumpulkan dari tiga unit bus dengan karakteristik konsumsi daya tertinggi, terendah, dan rata-rata. Hasil analisis menunjukkan bahwa efisiensi pemulihan daya berkisar antara 36,62% hingga 50,27% tergantung pada kecepatan, gradien jalan, dan perilaku pengemudi. Temuan ini menegaskan kontribusi sistem regenerative braking terhadap penghematan energi dan perluasan jangkauan operasional kendaraan listrik
Referensi
[1] Zhang, R. and Yao, E., “Electric Vehicles Energy Consumption Estimation With Real Driving Condition Data,” Transportation Research Part D: Transport and Environment, vol. 41, pp. 177–187, 2015.
[2] Malode, S. K., Adware, R. H., Student, M. T. P. E. D., Engineering, E., and Engineering, E., “Regenerative Braking System In Electric Vehicles,” pp. 254–260, 2016.
[3] BYD, B., Panduan Perawatan Kendaraan, Jakarta: PT. Build Your Dreams, 2021.
[4] Guarango, P. M., “Permodelan Konverter DC to DC Tipe Boost Converter Dengan Pengendali Proporsional Integral (PI),” vol. 25(8.5.2017), pp. 2003–2005, 2022.
[5] Kumara, N. S., “Tinjauan Perkembangan Kendaraan Listrik Dunia Hingga Sekarang,” Transmisi, Jurnal Teknik Elektro, vol. 10, no. 2, pp. 89–96, 2008.
[6] Mandal, S., Sarker, M. R. I., Rahman, M. S., and Beg, M. R. A., “An Analysis of Braking Energy Regeneration In Electric Vehicles,” International Journal of Renewable Energy Research, vol. 7, no. 3, pp. 999–1006, 2017.
[7] Marongiu, A., Nußbaum, F. G. W., Waag, W., Garmendia, M., and Sauer, D. U., “Comprehensive Study Of The Influence Of Aging On The Hysteresis Behavior Of A Lithium Iron Phosphate Cathode-Based Lithium Ion Battery - An Experimental Investigation Of The Hysteresis,” Applied Energy, pp. 629–645, 2016.
[8] Nazaruddin, N., Zainuri, F., Siregar, R., Heryana, G., Adhitya, M., and Sumarsono, D. A., “Electric power steering: An overview of dynamics equation and how it’s developed for large vehicle,” IOP Conference Series: Materials Science and Engineering, vol. 673, no. 1, 2019.
[9] Pangestu, A. W. and Sutantra, I. N., “Studi Analisis Kinerja Sistem Rem Regeneratif pada Sepeda Motor Hybrid dengan Konfigurasi Seri,” Jurnal Teknik ITS, vol. 9, no. 2, pp. 193–198, 2021.
[10] Pattiapon, D. R., Rikumahu, J. J., and Jamlaay, M., “Penggunaan Motor Sinkron Tiga Phasa Tipe Salient Pole Sebagai Generator Sinkron,” Jurnal Simetrik, vol. 9, no. 2, pp. 197–207, 2019.
[11] Setiowati, R. and Basjaruddin, N. C., “Active Steering Assistance For Turned Road Based On Fuzzy Logic,” 2017.
[12] Setyono, B. and Setiawan, Y., “Rancang Bangun Sistem Transmisi, Kemudi dan Pengereman Mobil Listrik ‘Semut Abang’,” Seminar Nasional Sains Dan Teknologi Terapan III 2015, pp. 89–96, 2018.
[13] Perdana, P. B., “Analisa Penggunaan Regeneratif Brake pada Mobil Multiguna Pedesaan Bertenaga Listrik,” 2018.
[14] Tao, Y., Xie, X., Zhao, H., Xu, W., and Chen, H., “A regenerative braking system for electric vehicle with four in-wheel motors based on fuzzy control,” Chinese Control Conference (CCC), pp. 4288–4293, 2017.
[15] Putra, R. P., Kurniasih, N., Dewi, S., Sari, P., Syamsuddin, Z., and Pln, I. T., “Kontrol Torka Pengereman Regeneratif Pada Sepeda Listrik Dengan Integrasi Ultrakapasitor,” Prosiding Seminar Nasional Energi, vol. 23, 2022.
[16] Yeo, H., Hwang, S., and Kim, H., “Regenerative braking algorithm for a hybrid electric vehicle with CVT ratio control,” Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, vol. 220, no. 11, pp. 1589–1600, 2006.
[17] Jiang, B., Yang, D., Yu, H., Wang, J., He, C., Li, J., and Chen, Y., “Impact of Road Gradient on Fuel Consumption of Light-Duty Diesel Vehicles,” Atmosphere, vol. 16, no. 2, 2025. doi: 10.3390/atmos16020143
[18] Nan, S., Tu, R., Li, T., Sun, J., and Chen, H., “From driving behavior to energy consumption: A novel method to predict the energy consumption of electric bus,” Energy, vol. 261, p. 125188, 2022. doi: 10.1016/J.ENERGY.2022.125188
[19] Zhang, H., Chen, D., Zhang, H., and Liu, Y., “Research on the influence factors of brake regenerative energy of pure electric vehicles based on the CLTC,” Energy Reports, vol. 8, pp. 85–93, 2022. doi: 10.1016/J.EGYR.2022.10.259
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Hak Cipta (c) 2026 Muhammad Farrel Apriliant Putra, Buang Turasno (Author)

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