论文标题
扩散感知电压来源:一个等效电路网络,用于解决活性颗粒中锂浓度梯度的等效电路网络
Diffusion-aware voltage source: An equivalent circuit network to resolve lithium concentration gradients in active particles
论文作者
论文摘要
由于缺乏相关物理,例如活性颗粒中的锂扩散,传统的等效电路模型(ECM)在估计电池内部状态时遇到困难。在这里,我们配置了一个电路网络来描述锂扩散并将其定义为称为扩散感应电压源的新的高级电路元件。该电路表示被证明等同于离散的扩散方程。新的电压源给出了电极电势作为表面浓度的函数,因此自动结合了扩散过电势。我们表明,具有提议的扩散感应电压源(称为“壳ECM”)的ECM可以重现单个粒子模型仿真结果,使其成为可信赖的易于实现的替代品。此外,最简单的壳ECM由单个扩散感应电压源和电阻器组成,以各种速率验证实验性恒定电流放电。扩散感应的电压源可用于通过拟合扩散抗性与实验数据来测量扩散率。 Shell ECM用于机载使用的可行性通过实施到WAE技术的电池管理系统中证实。通过跟踪内部浓度状态,壳ECM表现出对动态施加的电流轮廓的鲁棒性。
Traditional equivalent circuit models (ECMs) have difficulties in estimating battery internal states due to the lack of relevant physics, such as the lithium diffusion in active particles. Here we configure a circuit network to describe the lithium diffusion and define it as a new high-level circuit element called diffusion-aware voltage source. The circuit representation is proven equivalent to the discretized diffusion equation. The new voltage source gives the electrode potential as a function of the surface concentration and thus automatically incorporates the diffusion overpotential. We show that an ECM with the proposed diffusion-aware voltage sources (called "shell ECM") can reproduce the single particle model simulation results, making it a trustworthy easy-to-implement substitute. Furthermore, the simplest shell ECM consisting of a single diffusion-aware voltage source and a resistor is validated against experimental constant-current discharges at various rates. The diffusion-aware voltage source can be used to measure diffusivity by fitting the diffusion resistance against experimental data. The viability of the shell ECM for onboard usage is confirmed by implementation into a battery management system of WAE Technologies. By tracking the internal concentration states, the shell ECM demonstrates robustness to dynamic applied-current profiles.