Research on Regenerative Braking Control Strategy under High Charge State Using Prescribed Performance Prediction Control
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Publisher
SAE International
Reference15 articles.
1. Ye, L., Liang, C., Liu, Y., Li, D. et al., “Performance Analysis and Test of a Novel Eddy-Current Braking & Heating System for Electric Bus,” Energy Conversion and Management 183 (2019): 440-449.
2. Tai, Y., Song, J., Yu, L. et al., “A Four-Step Control Algorithm and Downshift Schedule of a Seamless Shift Transmission Equipped on Electric Vehicles during the Regenerative Braking Process,” Proc IMechaE, Part D: J Automobile Engineering 233, no. 8 (2019): 1982-1999.
3. Itani, K., De Bernardinis, A., Khatir, Z., and Jammal, A., “Comparison between Two Braking Control Methods Integrating Energy Recovery for a Two-Wheel Front Driven Electric Vehicle,” Energy Convers Manage 122 (2016): 330-343.
4. Junzhi, Z., Yutong, L., Chen, L., and Ye, Y., “New Regenerative Braking Control Strategy for Rear-Driven Electrified Minivans,” Energy Convers Manage 82 (2014): 135-145.
5. Lv, C., Zhang, J., Li, Y., and Yuan, Y., “Mechanism Analysis and Evaluation Methodology of Regenerative Braking Contribution to Energy Efficiency Improvement of Electrified Vehicles,” Energy Convers Manage 92 (2015): 469-482.
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