Balancing Charging System Using Adaptive Neuro-Fuzzy Inference System Based On CUK Converter
DOI:
https://doi.org/10.12962/jaree.v5i2.199Abstract
In a battery set, there is always a voltage difference caused by charging and discharging. Therefore, it is necessary to pay attention to the condition of the battery or State of Charge (SOC) so that it is in a balanced state between the batteries. Unbalanced battery conditions result in decreased performance of the battery. For that we need a balancing circuit that works actively with the help of a DC-DC converter. DC-DC converters generally have a principle like a buck-boost converter to increase and decrease the output voltage, however the output still has a fairly large ripple in the waveform. Therefore, the CUK converter is used which is a development of the buck-boost converter topology, where the output of this CUK converter has smaller ripples because it uses two capacitors and two inductors. Of the various methods used to adjust the duty cycle of the CUK converter, a precise and accurate algorithm is needed to overcome the instability of the converter output. The method used to adjust the duty cycle uses the Adaptive Neuro-Fuzzy Inference System (ANFIS) algorithm as the development of the Fuzzy method. The system is implemented using MATLAB Simulink software. The simulation results show that the output of the CUK converter with the ANFIS method has a faster response speed reaching a set point of 1.95 × 10-4 seconds and the accuracy of the output voltage with ANFIS is 99.94% while the accuracy of the output converter current using ANFIS is 65.7%.
Keywords: ANFIS, balancing, battery, CUK converter, state of charge (SOC).15
References
A. Amin, K. Ismail, and A. Hapid, “Implementation of a LiFePO4 battery charger for cell balancing application,” J. Mechatronics, Electr. Power, Veh. Technol., vol. 9, no. 2, p. 81, 2018, doi: 10.14203/j.mev.2018.v9.81-88.
W. Huang and J. A. Abu Qahouq, “Energy Sharing Control Scheme for State-of-Charge Balancing of Distributed Battery Energy Storage System,” IEEE Trans. Ind. Electron., vol. 62, no. 5, pp. 2764–2776, 2015, doi: 10.1109/TIE.2014.2363817.
P. Jangir, V. Sangwan, R. Kumar, and A. K. Rathore, “Droop control method in power converter system for balancing state-of-charge of energy storage units in EV,” J. Eng., vol. 2019, no. 18, pp. 4764–4769, 2019, doi: 10.1049/joe.2018.9271.
H. N. Shoumi, I. Sudiharto, and E. Sunarno, “Design of the CUK converter with PI controller for battery charging,” Proc. - 2020 Int. Semin. Appl. Technol. Inf. Commun. IT Challenges Sustain. Scalability, Secur. Age Digit. Disruption, iSemantic 2020, pp. 403–407, 2020, doi: 10.1109/iSemantic50169.2020.9234294.
C. H. Cai, D. Du, and Z. Y. Liu, “Battery state-of-charge (SOC) estimation using adaptive neuro-fuzzy inference system (ANFIS),” IEEE Int. Conf. Fuzzy Syst., vol. 2, pp. 1068–1073, 2003, doi: 10.1109/fuzz.2003.1206580.
Safari, Azadeh, and Saad Mekhilef. "Simulation and hardware implementation of incremental conductance MPPT with direct control method using cuk converter." IEEE transactions on industrial electronics 58.4 (2010): 1154-1161.
I. M. Ginarsa, A. Soeprijanto, and M. H. Purnomo, Controlling chaos using ANFIS-based Composite Controller (ANFIS-CC) in power systems, in International Conference on Instrumentation, Communication, Information Technology, and Biomedical Engineering 2009, Bandung, Indonesia, Nov.2009, pp. 1–5, doi: 10.1109/ICICI-BME.2009.5417262.
G. Ma, C. Yu, Z. He, M. Gao, Y. Liu, and W. Chen, “Estimation of Li-ion battery SOH using Fletcher-Reeves based ANFIS,” IEEE Int. Symp. Ind. Electron., vol. 2015-September, pp. 827–830, 2015, doi: 10.1109/ISIE.2015.7281577.
T. G. Ling, M. F. Rahmat, and A. R. Husain, ANFIS modeling and Direct ANFIS Inverse control of an Electro-Hydraulic Actuator system, in 2013 IEEE 8th Conference on Industrial Electronics and Applications (ICIEA), Melbourne, VIC, Jun. 2013, pp. 370–375, doi: 10.1109/ICIEA.2013.6566397.
I. Sudiharto, M. I. Rahadyan, and O. A. Qudsi, “Design and Implementation of Buck Converter for Fast Charging with Fuzzy Logic,” JAREE (Journal Adv. Res. Electr. Eng., vol. 5, no. 1, pp. 9–14, 2021, doi: 10.12962/jaree.v5i1.146.
A. F. Moghaddam, “An Active Cell Equalization Technique for Lithium Ion Batteries Based on Inductor Balancing,” pp. 274–278, 2018.
A. F. Moghaddam and A. Van Den Bossche, “A Battery Equalization Technique Based on Ćuk Converter Balancing for Lithium Ion Batteries,” 2019 8th Int. Conf. Mod. Circuits Syst. Technol. MOCAST 2019, pp. 1–4, 2019, doi: 10.1109/MOCAST.2019.8741779.
A. Farzan Moghaddam and A. Van Den Bossche, “Flyback Converter Balancing Technique for Lithium Based Batteries,” 2019 8th Int. Conf. Mod. Circuits Syst. Technol. MOCAST 2019, pp. 1–4, 2019, doi: 10.1109/MOCAST.2019.8741893.
A. F. Moghaddam, and A. Van Den Bossche, “Converter Cell Balancing Technique by Using,” 2019, doi: 10.3390/en12152881.
Q. Ouyang, J. Chen, C. Xu, and H. Su, “Cell balancing control for serially connected lithium-ion batteries,” Proc. Am. Control Conf., vol. 2016-July, pp. 3095–3100, 2016, doi: 10.1109/ACC.2016.7525393.
Downloads
Published
Issue
Section
License
Copyright
Submission of a manuscript implies that the submitted work has not been published before (except as part of a thesis or report, or abstract); that it is not under consideration for publication elsewhere; that its publication has been approved by all co-authors. If and when the manuscript is accepted for publication, the author(s) still hold the copyright and retain publishing rights without restrictions. Authors or others are allowed to multiply article as long as not for commercial purposes. For the new invention, authors are suggested to manage its patent before published. The license type is CC-BY-NC 4.0.
Disclaimer
No responsibility is assumed by publisher and co-publishers, nor by the editors for any injury and/or damage to persons or property as a result of any actual or alleged libelous statements, infringement of intellectual property or privacy rights, or products liability, whether resulting from negligence or otherwise, or from any use or operation of any ideas, instructions, procedures, products or methods contained in the material therein.


