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An Online Battery Impedance Spectrum Measurement Method with Increased Frequency Resolution

机译:具有增加频率分辨率的在线电池阻抗频谱测量方法

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This paper presents a perturbation method in order to increase the frequency resolution when measuring the online battery impedance spectrum based on a previously proposed method that utilizes closed-loop control of DC-DC power converter. By adding pulse waveform perturbation to the output voltage reference of power converter, the responses of battery voltage and current contain harmonic components at the odd and the even harmonics of perturbation frequency and not only the odd harmonic components. Discrete fast Fourier (DFT) or fast Fourier transform (FFT) analysis is applied to battery voltage and current to extract the harmonic components. Then based on Ohm's law, the harmonic components can be used to calculate battery impedance at different frequencies. The high frequency resolution of the battery impedance spectrum measurement of this paper enables to obtain impedance at frequencies of interest with shorter time and under the same conditions of operation. The presented method is verified using a proof-of-concept experimental prototype.
机译:本文呈现了一种扰动方法,以增加基于先前提出的方法测量直流电转换器的闭环控制的在线电池阻抗频谱时的频率分辨率。通过向电力转换器的输出电压参考添加脉冲波形扰动,电池电压和电流的响应包含奇数和均匀谐波的谐波分量,不仅是奇数谐波分量。离散快速傅里叶(DFT)或快速傅里叶变换(FFT)分析应用于电池电压和电流以提取谐波部件。然后基于欧姆的法律,谐波分量可用于计算不同频率的电池阻抗。本文的电池阻抗光谱测量的高频分辨率使得能够在相同的操作条件下获得感兴趣频率的阻抗。使用概念验证实验原型来验证所提出的方法。

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