Optimasi Sistem Pengisian Kendaraan Listrik Berbasis Fast Charging dan Smart Grid
DOI:
https://doi.org/10.31004/riggs.v4i2.1172Keywords:
Sistem pengisian kendaraan listrik, Fast charging, Smart grid, Efisiensi energi, Energi terbarukan, Kendaraan listrikAbstract
Penelitian ini membahas tentang optimasi sistem pengisian kendaraan listrik (EV) dengan penerapan teknologi fast charging dan smart grid untuk meningkatkan efisiensi distribusi energi dan pengelolaan beban pada jaringan listrik. Seiring dengan meningkatnya adopsi kendaraan listrik, pengelolaan pengisian daya yang efisien menjadi krusial dalam mendukung kelestarian lingkungan serta kestabilan sistem kelistrikan. Model yang dikembangkan dalam penelitian ini melibatkan integrasi kendaraan listrik dengan jaringan pintar (smart grid) untuk memaksimalkan pemanfaatan energi terbarukan, seperti energi surya, serta memastikan pengisian daya yang optimal melalui pengaturan waktu pengisian yang fleksibel. Hasil penelitian menunjukkan bahwa penggunaan smart grid dapat mengurangi beban puncak pada jaringan listrik, sementara sistem fast charging meningkatkan efisiensi pengisian kendaraan listrik. Penelitian ini juga menyarankan beberapa pendekatan teknis dalam penerapan smart grid untuk kendaraan listrik di Indonesia.
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References
Bessa, R. J., & Matos, M. A. (2012). Economic and technical management of an aggregation agent for electric vehicles: a literature survey. European transactions on electrical power, 22(3), 334-350.
Clement-Nyns, K., Haesen, E., & Driesen, J. (2009). The impact of charging plug-in hybrid electric vehicles on a residential distribution grid. IEEE Transactions on power systems, 25(1), 371-380.
Hu, J., You, S., Lind, M., & Østergaard, J. (2013). Coordinated charging of electric vehicles for congestion prevention in the distribution grid. IEEE Transactions on Smart Grid, 5(2), 703-711.
Lei, X., Shang, Y., Shao, Z., Jia, Y., & Jian, L. (2022). Grid integration of electric vehicles for optimal marginal revenue of distribution system operator in spot market. Energy Reports, 8, 1061-1068.
Lopes, J. A. P., Soares, F. J., & Almeida, P. M. R. (2010). Integration of electric vehicles in the electric power system. Proceedings of the IEEE, 99(1), 168-183.
Muratori, M. (2018). Impact of uncoordinated plug-in electric vehicle charging on residential power demand. Nature Energy, 3(3), 193-201.
Sarker, M. R., Pandžić, H., & Ortega-Vazquez, M. A. (2014). Optimal operation and services scheduling for an electric vehicle battery swapping station. IEEE transactions on power systems, 30(2), 901-910.
Shang, Y., Liu, M., Shao, Z., & Jian, L. (2020). Internet of smart charging points with photovoltaic Integration: A high-efficiency scheme enabling optimal dispatching between electric vehicles and power grids. Applied Energy, 278, 115640.
Shang, Y., Liu, M., Shao, Z., & Jian, L. (2021). A centralized vehicle‐to‐grid scheme with distributed computing capacity engaging internet of smart charging points: case study. International Journal of Energy Research, 45(1), 841-863. https://doi.org/10.xxxx/riggs.xxxx.xxxx
Sortomme, E., & El-Sharkawi, M. A. (2010). Optimal charging strategies for unidirectional vehicle-to-grid. IEEE Transactions on Smart Grid, 2(1), 131-138.
Tan, K. M., Ramachandaramurthy, V. K., & Yong, J. Y. (2016). Integration of electric vehicles in smart grid: A review on vehicle to grid technologies and optimization techniques. Renewable and Sustainable Energy Reviews, 53, 720-732.
Wirasingha, S. G., Schofield, N., & Emadi, A. (2008, September). Plug-in hybrid electric vehicle developments in the US: Trends, barriers, and economic feasibility. In 2008 IEEE vehicle power and propulsion conference (pp. 1-8). IEEE.
Wirasingha, S. G., Schofield, N., & Emadi, A. (2008, September). Feasibility analysis of converting a Chicago Transit Authority (CTA) transit bus to a plug-in hybrid electric vehicle. In 2008 IEEE vehicle power and propulsion conference (pp. 1-7). IEEE.
Yu, H., Niu, S., Shang, Y., Shao, Z., Jia, Y., & Jian, L. (2022). Electric vehicles integration and vehicle-to-grid operation in active distribution grids: A comprehensive review on power architectures, grid connection standards and typical applications. Renewable and Sustainable Energy Reviews, 168, 112812.
Zheng, Y., Shang, Y., Shao, Z., & Jian, L. (2018). A novel real-time scheduling strategy with near-linear complexity for integrating large-scale electric vehicles into Smart Grid. Applied Energy, 217, 1-13.
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