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首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >Rapid Impedance Spectrum Measurements for State-of-Health Assessment of Energy Storage Devices
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Rapid Impedance Spectrum Measurements for State-of-Health Assessment of Energy Storage Devices

机译:快速阻抗频谱测量,用于能量存储设备的健康状态评估

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摘要

Harmonic Compensated Synchronous Detection (HCSD) is a technique that can be used to measure wideband impedance spectra within seconds based on an input sum-of-sines signal having a frequency spread separated by harmonics. The battery (or other energy storage device) is excited with a sum-of-sines current signal that has a duration of at least one period of the lowest frequency. The voltage response is then captured and synchronously detected at each frequency of interest to determine the impedance spectra. This technique was successfully simulated using a simplified battery model and then verified with commercially available Sanyo lithium-ion cells. Simulations revealed the presence of a start-up transient effect when only one period of the lowest frequency is included in the excitation signal. This transient effect appears to only influence the low-frequency impedance measurements and can be reduced when a longer input signal is used. Furthermore, lithium-ion cell testing has indicated that the transient effect does not seem to impact the charge transfer resistance in the mid-frequency region. The degradation rates for the charge transfer resistance measured from the HCSD technique were very similar to the changes observed from standardized impedance spectroscopy methods. Results from these studies, therefore, indicate that HCSD is a viable, rapid alternative approach to acquiring impedance spectra.
机译:谐波补偿同步检测(HCSD)是一种技术,可用于基于具有由谐波分开的频率扩展的输入正弦和信号,在几秒钟内测量宽带阻抗谱。电池(或其他能量存储设备)被正弦和电流信号激励,该信号的持续时间至少为最低频率的一个周期。然后在每个感兴趣的频率处捕获并同步检测电压响应,以确定阻抗谱。使用简化的电池模型成功地模拟了此技术,然后使用市售的Sanyo锂离子电池进行了验证。仿真结果表明,当激励信号中仅包含最低频率的一个周期时,就会出现启动瞬态效应。这种瞬态效应似乎仅影响低频阻抗测量,当使用更长的输入信号时,可以减小这种瞬态效应。此外,锂离子电池测试表明,瞬态效应似乎并未影响中频区域的电荷转移电阻。通过HCSD技术测得的电荷转移电阻的降解速率与通过标准阻抗谱法观察到的变化非常相似。因此,这些研究的结果表明,HCSD是一种获取阻抗谱的可行,快速的替代方法。

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