Santoni Francesco, De Angelis Alessio, Moschitta Antonio, Carbone Paolo
Engineering Department, University of Perugia, 06125 Perugia, Italy.
Sensors (Basel). 2021 Nov 6;21(21):7377. doi: 10.3390/s21217377.
Meaningful information on the internal state of a battery can be derived by measuring its impedance. Accordingly, battery management systems based on electrochemical impedance spectroscopy are now recognized as a feasible solutions for online battery control and diagnostic. Since the impedance of a battery is always changing along with its state of charge and aging effects, it is important to have a stable impedance reference in order to calibrate and test a battery management system. In this work we propose a programmable impedance emulator that in principle could be used for the calibration of any battery management system based on electrochemical impedance spectroscopy. A digital finite-impulse-response filter is implemented, whose frequency response is programmed so as to reproduce exactly the impedance of a real battery in the frequency domain. The whole design process of the filter is presented in detail. An analytical expression for the impedance of real battery in the frequency domain is derived from an equivalent circuit model. The model is validated both through numerical simulations and experimental tests. In particular, the filter is implemented on a low-cost microcontroller unit, and the emulated impedance is measured by means of a custom-made electrochemical impedance spectroscopy measuring system, and verified by using standard commercial bench instruments. Results on this prototype show the feasibility of using the proposed emulator as a fully controllable and low-cost reference for calibrating battery impedance measurement systems.
通过测量电池的阻抗,可以获得有关其内部状态的有意义信息。因此,基于电化学阻抗谱的电池管理系统现在被认为是在线电池控制和诊断的可行解决方案。由于电池的阻抗会随着其荷电状态和老化效应而不断变化,因此拥有一个稳定的阻抗基准对于校准和测试电池管理系统非常重要。在这项工作中,我们提出了一种可编程阻抗模拟器,原则上可用于校准任何基于电化学阻抗谱的电池管理系统。实现了一个数字有限脉冲响应滤波器,其频率响应经过编程,以便在频域中精确再现真实电池的阻抗。详细介绍了滤波器的整个设计过程。从等效电路模型推导出了真实电池在频域中的阻抗解析表达式。该模型通过数值模拟和实验测试得到了验证。特别是,该滤波器在低成本微控制器单元上实现,通过定制的电化学阻抗谱测量系统测量模拟阻抗,并使用标准商用台式仪器进行验证。该原型的结果表明,使用所提出的模拟器作为校准电池阻抗测量系统的完全可控且低成本的基准是可行的。