Feedback pid controller-based closed-loop fast charging of lithium-ion batteries using constant-temperature–constant-voltage method

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Abstract

Lithium-ion batteries are the most used technology in portable electronic devices. High energy density and high power per mass battery unit make it preferable over other batteries. The existing constant-temperature and constant-voltage charging technique (CT–CV), with a closed loop, lacks a detailed design of control circuits, which can increase charging speed. This article addresses this research gap in a novel way by implementing a simpler feedback proportional integral and differential (PID) control to a closed-loop CT–CV charging circuit. Voltage-mode control (VMC) and average current-mode control (ACM) methods were implemented to maintain the battery voltage, current, and temperature at safe limits. As per simulation results, 23% faster charging is achieved by implementing VMC and almost 50% faster charging is attained by employing the ACM technique in the PID controller. Our proposed control strategy is validated experimentally, which yields up to 25% faster charging of a battery than the reference battery.

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APA

Kaleem, A., Khalil, I. U., Aslam, S., Ullah, N., Otaibi, S. A., & Algethami, M. (2021). Feedback pid controller-based closed-loop fast charging of lithium-ion batteries using constant-temperature–constant-voltage method. Electronics (Switzerland), 10(22). https://doi.org/10.3390/electronics10222872

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