Online identification of first‑order RC model parameters of lithium‑ion battery based on chaotic adaptive synchronous control
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(1.School of Computer Science, Jiaying University, Meizhou 514015, China; 2.School of Civil Engineering and Transportation,South China University of Technology, Guangzhou 510641, China; 3.School of Mathematics and Information Science,Nanchang Normal University, Nanchang 330032, China)

Clc Number:

TM912.9

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    Abstract:

    Due to the dynamic, slowly time-varying, and strongly nonlinear characteristics of lithium-ion batteries in use, identifying the unknown parameters of first-order RC models online faces challenges, such as low accuracy and poor real-time performance. To address this issue, a chaotic system is proposed based on a charge-controlled memristor and a first-order RC model. The charge-controlled memristor parameters are adjusted to drive the system into a chaotic state, and the system’s dynamic characteristics are analyzed. Next, an adaptive control law of the unknown parameters of the chaotic system is constructed and applied to the chaotic system. This enables the online identification of unknown parameters of the first-order RC model of lithium batteries in real time, obtaining effective parameter values and overcoming shortcomings of traditional estimation algorithms that are limited by the size of data sample space and affected by factors such as ambient temperature, road conditions, load conditions, and battery materials. The experimental simulation results show that the chaotic system established in this paper possesses rich dynamic characteristics, and the proposed adaptive control algorithm for unknown parameter identification offers good real-time performance, accuracy, robustness, and fast convergence speed.

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高延增,徐东辉.基于混沌自适应同步控制的锂电池一阶RC模型参数在线辨识[J].电力科学与技术学报英文版,2025,40(1):190-198. GAO Yanzeng, XU Donghui. Online identification of first‑order RC model parameters of lithium‑ion battery based on chaotic adaptive synchronous control[J]. Journal of Electric Power Science and Technology,2025,40(1):190-198.

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  • Online: March 18,2025
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