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Realization of Digital Differentiator Using Generalized Integrator For Power Converters

机译:使用通用积分器的电源转换器实现数字微分器

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In power converters, the digital implementation of a differentiator is challenged by noise amplification and phase error. For example, the backward Euler differentiator loses its effectiveness at high frequency due to an introduced large-phase error. The Tustin differentiator, on the other hand, yields unacceptable noise amplification even though it produces the phase of an ideal differentiator perfectly. For an even more accurate performance, this letter proposes a new digital differentiator based on generalized integrator (GI). It will specifically be shown that the differentiation characteristic of a GI is an optimized compromise between those of backward Euler and Tustin differentiators. Several discretization techniques are then investigated for discretizing the GI-based differentiator. The effectiveness of the proposed differentiator has been verified by experimental results obtained with an -filtered grid converter damped by feeding back the derivative of its capacitor voltage.
机译:在功率转换器中,微分器的数字实现受到噪声放大和相位误差的挑战。例如,后向欧拉微分器由于引入的大相位误差而在高频下失去其有效性。另一方面,Tustin微分器即使完美产生理想微分器的相位,也会产生不可接受的噪声放大。为了获得更准确的性能,这封信提出了一种基于广义积分器(GI)的新型数字微分器。将具体显示,地理标志的差异特征是后向Euler和Tustin差异标志之间的最佳折衷。然后研究了几种离散化技术以离散化基于GI的微分器。所提出的微分器的有效性已通过使用经过滤波的电网转换器获得的实验结果得到验证,该转换器通过反馈其电容器电压的导数得到阻尼。

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