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Instrumentation and Measurement

Design of LQR-based FLC for the Optimal Regenerative Braking Controlling of Solar PV-based Electric Vehicle System

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References

  • A. Khurana, V. V. Ravi Kumar, and M. Sidhpuria, “A study on the adoption of electric vehicles in India: The mediating role of attitude,” J. Bus. Perspect., Dec. 2019. DOI: 10.1177/0972262919875548.
  • Z. Han, N. Xu, H. Chen, Y. Huang, and B. Zhao, “Energy-efficient control of electric vehicles based on linear quadratic regulator and phase plane analysis,” Appl. Energy, Vol. 213, pp. 639–657, Mar. 2018.
  • Q. He, “Modelling and simulation of LQR COntrol for DC motor,” Appl. Mech. Mater., 2014 Trans Tech Publication Ltd Switzerland, Vol. 668–669, pp. 486–9, Oct. 2014.
  • C. Jaen, J. Pou, R. Pindado, V. Sala, and J. Zaragoza, “A linear quadratic regulator with integral action applied to PWM DC-DC converters,” in IECON 2006 – 32nd Annual Conference on IEEE Industrial Electronics, 2006.
  • B. Long, S. T. Lim, J. H. Ryu, and K. T. Chong, “Energy-regenerative braking control of electric vehicles using three-phase brushless direct-current motors,” Energies, Vol. 7, pp. 99–114, 2014. DOI: 10.3390/en7010099.
  • J. Xu, L. Kang, C. Zhong, and B. Cao, “Photovoltaic power system with MPPT functionality for a small-size electric vehicle,” Int. J. Photoenergy, Vol. 2014, pp. 1–9, Apr. 20, 2014.
  • O. C. Kivanc, and O. Ustun, “ Investigation of regenerative braking performance of brushless direct current machine drive system,” Appl. Sci., Vol. 11, pp. 1029, 2021. DOI: 10.3390/app11031029.
  • M. Swargiary, J. Dey, and T. K. Saha, “Optimal speed control of induction motor based on linear quadratic regulator theory,” IEEE Indicon, Vol. 2015, pp. 1570203411, 2015.
  • G.-R. Yu, and R.-C. Hwang. “Optimal PID speed control of brushless DC motors using LQR approach”, in 2004 IEEE International Conference on Systems, Man and Cybernetics, Oct. 2004.
  • A. A. Sadiq, G. A. Bakare, E. C. Anene, and H. B. Mamman. “A fuzzy-based speed control of DC motor using combined armature voltage and field current”, in 3rd IFAC International Conference on Intelligent Control and Automation Science, Sep. 2013. Chengdu, China. 978-3-902823-45-8/2013.
  • I. Yahia, C. Ben Salah, and M. F. Mimouni. “Fuzzy logic controller for reference speed in electric vehicle,” in 2014 First International Conference on Green Energy ICGE 2014, 2014, pp. 259–61.
  • A. Alazzam, and I. Ahmed, “A speed control system using fuzzy logic,” 2018 Fifth HCT Inf. Technol. Trends, 12–17, 2018. DOI: 10.1109/CTIT.2018.8649539.
  • K. Indu, and M. Aswatha Kumar, “Electric vehicle control and driving safety systems: A review,” IETE. J. Res., 1–17, 2020. DOI: 10.1080/03772063.2020.1830862.
  • R. Femi, T. Sree Renga Raja, and R. Shenbagalakshmi, “Performance comparison of optimization algorithm tuned PID controllers in positive output Re-lift Luo converter operation for electric vehicle applications,” IETE. J. Res., 2022. DOI: 10.1080/03772063.2022.2073275.
  • R. Bindu, and S. Thale, “Power management strategy for an electric vehicle driven by hybrid energy storage system,” IETE. J. Res., Vol. 68, no. 4, pp. 2801–2811, 2020. DOI: 10.1080/03772063.2020.1729257.
  • Q. Zhang, Y. Zhang, K. Huang, I. A. Tasiu, B. Lu, and X. Meng, “’Modeling of regenerative braking energy for electric multiple units passing long downhill section’,” IEEE Trans. Transp. Electrification, Vol. 8, no. 3, pp. 3742–3758, Sep. 2022.
  • S. Lupberger, W. Degel, D. Odenthal, and N. Bajcinca, “Nonlinear control design for regenerative and hybrid antilock braking in electric vehicles,” IEEE Trans. Control Syst. Technol., Vol. 30, no. 4, Jul. 2022. DOI: 10.1109/TCST.2021.3109340.
  • A. Ahmed, and S. Cui, “Control and analysis of regenerative power distribution on electrical variable transmission using fuzzy logic on HEV system,” Int. Conf. Electr. Machines Sys., 2011. DOI: 10.1109/icems.2011.6073441.
  • S. Salman, A. I. Xin, and W. U. Zhouyang, “Design of a P-&-O algorithm based MPPT charge controller for a stand-alone 200W PV system,” Protect. Control Mod. Power Sys., Vol. 25, pp. 3–25, 2018.
  • N. Femia, G. Petrone, G. Spagnuolo, and M. Vitelli, “Optimization of perturb and observe maximum power point tracking method,” IEEE Trans. Power Electron., Vol. 20, no. 4, pp. 963–973, July 2005. DOI: 10.1109/TPEL.2005.850975.
  • A. Atallah, A. Abdelaziz, and R. Jumaah, “Implementation of perturb and observe MPPT of PV system with direct control method using buck And buck-boost converters,” Emerg. Trends Electr., Electron. Instrum. Eng., Vol. 1, no. 1, pp. 31–44, 2014.
  • M. Al Halabi, and A. Al Tarabsheh, “Modelling of electric vehicles using Matlab/Simulink,” SAE Technical Paper 2020-01-5086, 1–10, 2020.
  • Y. Haitao, Z. Yulan, L. Zunnian, and H. Kui, “LQR-based power train control method design for fuel cell hybrid vehicle,” Math. Probl. Eng., Vol. 2013, pp. 1–7, 2013, Article ID 968203. DOI: 10.1155/2013/968203.

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