Energy Management based on Supertwisting Sliding Mode in The Standalone Photovoltaic Power System with Battery Backup

Resul Coteli, Ruhi Zafer Caglayan, Korhan Kayisli

Abstract


Electrical energy is an important issue of human being to perform our daily activities like food, transportation, heating, communications, leaving, and so on. Therefore, continues existence of electrical energy is a need of all human being. So that in stand-alone power system applications, energy storage is a very important issue. In these days, batteries are very popular energy storage equipment and controllability of the energy stored in the battery is very hot topic. In this article, the energy management in a stand-alone photovoltaic power system with battery backup is investigated. For this purpose, a simulation model based on Matlab/Simulink is built. Photovoltaic panel is operated to supply the maximum power by using perturb and observe maximum power point tracking (PO-MPPT) algorithm. The battery charging/discharging current is controlled via cascade control structure based on super twisting sliding mode controller. By appropriate control of the battery current, it is aimed to ensure the power balance among the photovoltaic panel, load and battery under different operating conditions as well as keep the DC bus voltage at the desired value. Simulation results show that the super twisting sliding mode controller successfully balances the power between the panel, load and battery and keeps DC bus voltage at reference value.

Keywords


Photovoltaic; Battery; Perturb and Observe Control; Super Twisting Sliding Mode Control

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References


. Republic of Türkiye Ministry of Energy and Natural Resources. “Elektrik.” Republic of Türkiye Ministry of Energy and Natural Resources. https://enerji.gov.tr/bilgi-merkezi-enerji-elektrik#:~:text=2023%20y%C4%B1l%C4%B1nda%20elektrik%20%C3%BCretimimizin%2C%20%36,g%C3%BCc%C3%BC%20106.668%20MW'a%20ula%C5%9Fm%C4%B1%C5%9Ft%C4%B1r. (accessed Feb. 27, 2024)

. L. Lin, Y. Cao, X. Kong, Y. Lin, Y. Jia and Z. Zhang, “Hybrid energy storage system control and capacity allocation considering battery state of charge self-recovery and capacity attenuation in wind farm,” Journal of Energy Storage, vol. 75, no. 109693, pp. 1-12, January 2024.

. J. Ma, Y. Zhou and J. Lian, “Charging the battery via electric machine fed by dual power source in fuel cell vehicles,” Journal of Energy Storage, vol. 75, no. 109700, pp. 1-15, January 2024.

. Y. Du, Z. Zhang, Z. Zuo and Y. Wang, “Lithium battery charging optimization via multi-stage combined charging strategy in solar-powered vehicles,” Journal of Energy Storage, vol. 83, no. 110716, pp. 1-12, April 2024.

. D. Gogoi, A. Bharatee and P. K. Ray, “Implementation of battery storage system in a solar PV-based EV charging station,” Electric Power Systems Research, vol. 229, no. 110113, pp. 1-12, April 2024.

. S. Chtita, S. Motahhir and A. El Ghzizal, “A new design and embedded implementation of a low-cost maximum power point tracking charge controller for standalone photovoltaic systems,” Energy Technology, Early View, pp. 1-16, January 2024.

. A. Gonzalez-Moreno, J. Marcos, I. de la Parra and L. Marroyo, “Control method to coordinate inverters and batteries for power ramp-rate control in large PV plants: Minimizing energy losses and battery charging stress,” Journal of Energy Storage, vol. 72, no. 108621, pp. 11-14, November 2023.

. N. Gueller, R. Martinelli, B. Fanzeres and D. Louzada, “Optimization of battery swapping stations with heterogeneity, charging degradation and PV-option,” Journal of Energy Storage, vol. 74, no. 109509, pp. 1-20, December 2023.

. M. Katsaiti, E. Papadogiannis, V. Dracopoulos, A. Keramidas and P. Lianos, “Solar charging of a Zn-air battery,” Journal of Power Sources, vol. 555, no.232384, pp. 1-8, January 2023.

. I. Yadav, S. Sachan, S.K. Maurya and S. Deb, “Effective battery charging system using step voltage and step duty size-based MPPT controller for solar PV system,” Energy Reports, vol. 10, pp. 744-755, November 2023.

. S. Zamani and M. Hamzeh, “The effect of battery charging method on reducing battery capacity in off-grid solar home systems,” Energy Reports, vol. 10, pp. 3418-3426, November 2023.

. Y Sahin, N.M. Ting and H. Yesilyurt, “A novel capacitor-voltage reduced bidirectional PWM DC-DC buck-boost converter for renewable energy battery charge system,” International Journal of Circuit Theory and Applications, vol. 51, no. 6, pp. 2875-2888, February 2023.

. S. Smal, P. K. Barik, R. K. Soni and S. Nayak, “Simulation and experimental investigation of a smart MPPT based solar charge controller,” Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, vol. 44, no. 3, pp. 7748-7763, Aug 2022.

. N. Ramesh and V. Vanitha, “Solar powered battery charging system with maximum power point tracking,” presented at 2018 4th International Conference on Electrical Energy Systems (ICEES), Chennai, India, February 07-09, 2018.

. T.-L. Pan, H.-S. Wan and Z.-C. Ji, “Stand-alone wind power system with battery/supercapacitor hybrid energy storage,” International Journal of Sustainable Engineering, vol. 7, no. 2, pp. 103-110, Mar 2013

. P. Diaz and M. A. Egido, “Experimental analysis of battery charge regulation in photovoltaic systems,” Progress in Photovoltaics: Research and Applications, vol. 11, no. 7, pp. 481-493, October 2003.

. S. Mutagekar and A. Jhunjhunwala, “Designing small batteries and adaptive charging strategies for operation on rough terrain,” Journal of Energy Storage, vol. 84, no. 111003, pp. 1-14, April 2024.

. G. Galuppini, M. D. Berliner, J. Lian, D. Zhuang, M.Z. Bazant and R. D. Braatz, “Efficient computation of robust, safe, fast charging protocols for lithium-ion batteries,” Control Engineering Practice, vol. 145, no. 105856, pp. 1-15, April 2024.

. X. Zhao, Y. Yang, M. Qin and Q. Xu, “Multi-objective optimization of distribution network considering battery charging and swapping station,” Energy Reports, vol. 9, no. 10, pp. 1282-1290, October 2023.

. K. Wen, X. Fu and F. Pei, “Research on the thermal management safety of the fast charging power battery management system,” Energy reports, vol. 10, pp. 3289-3296, November 2023.

. J. S. Goud, K. R., K. R., and B. Singh, “Low frequency ripple charging of li-ion battery using bidirectional zeta dc-dc converter too improve charge transfer efficiency,” presented at 2018 IEEE 7th International Conference on Power and Energy (PECon), Kuala Lumpur, Malaysia, December 03-04, 2018.

. K. Kayisli, R.Z. Caglayan, “Twisting sliding mode control based maximum power point tracking”, Balkan Journal of Electrical and Computer Engineering, vol. 10, no. 4, pp. 356-362

. R.Z. Caglayan, K. Kayisli, N. Zhakiyev, A. Harrouz, and I. Colak, “A review of hybrid renewable energy systems and MPPT methods”, International Journal of Smart Grid – IJSMARTGRID, vol. 6, no. 3, pp. 72-82.

. R.Z. Caglayan, K. Kayisli, N. Zhakiyev, A. Harrouz, and I. Colak, “A case study: Standalone hybrid renewable energy systems”, 2022 11th International Conference on Renewable Energy Research and Application (ICRERA), ?stanbul, 18-21 September 2022.

. R.Z. Caglayan, K. Kayisli, M. Roscia, A. Harrouz and A. Nasri, “A comparative analysis of P&O, IC and supertwisting sliding mode based MPPT methods for PV and Fuel Cell sourced hybrid system,” International Journal of Renewable Energy Research, vol. 13, no. 3, pp. 1431-1442, September 2023.

. R. Z. Ça?layan, “A high efficient and robust MPPT control of a hybrid system,” M. S. thesis, Electrical Electronic Engineering, Gazi University, Ankara, Türkiye, 2023.

. E. L. Meyer, “Extraction of saturation current and ideality factor from measuring and of photovoltaic modules,” International Journal of Photoenergy, vol. 2017, no. 8479487, pp. 1-9, December 2017.

. E. Mboumboue and D. Njomo, “Mathematical modeling and digital simulation of PV solar panel using MATLAB software,” International Journal of Emerging Technology and Advanced Engineering, vol. 3, no. 9, pp. 24-32, September 2013.

. D. Sera, R. Teodorescu, and P. Rodriguez, “PV panel model based on datasheet values”, presented at 2007 IEEE Int. Symposium on Industrial Electronics, Vigo, Spain, June 4-7, 2007, doi:10.1109/ISIE.2007.4374981.

. N. Mohan, T. M. Undeland and W. P. Robbins, “Switched dc-dc converters,” in Power Electronics Converters, Applications and Design, 2nd edition, Nejat Tuncay, Metin Gökasan, Seta Bogosyan, 4th edition ?stanbul, Türkiye: Literatur Publication, 2014, ch. 7, pp.173-213.

. Sahu, P. K., Jena, S., & Babu, B. C. (2021). Power management and bus voltage control of a battery backup-based stand-alone PV system. Electrical Engineering, 1-14.

. Nguyen-Duc, T., Nguyen-Duc, H., Le-Viet, T., & Takano, H. (2020). Single-diode models of PV modules: A comparison of conventional approaches and proposal of a novel model. Energies, 13(6), 1296




DOI (PDF): https://doi.org/10.20508/ijsmartgrid.v8i4.362.g369

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