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Improving the Performance of Fractional Order Differential Filter by the Fractional Sampling Delay

机译:通过分数采样延迟提高分数阶微分滤波器的性能

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The method of reducing the integral interval by using the fractional order delay filter to improve the performance of fractional differential filter is put forward in this paper. Firstly, in terms of the basic definition of integral the paper generalizes the sampling interval of integral operator from the integral order to fractional order and gets the integral operator whose sampling interval is fractional order. By the Lagrange FIR or IIR fractional delay filter we can transform the fractional order term of the operator obtained above to the integral order term. Then an half sampling delay IIR filter of third order can be chosen as new operator for its better performance. Lastly, the design of fractional order digital filter is implemented by the method of CFE. By the comparative analysis, it is shows that the frequency response of improved fractional order digital differentiator is more close to the ideal fractional order differential filter, which indicates the method put forward in this paper can improve the performance of IIR-type fractional order differential filter obviously.
机译:提出了一种利用分数阶延迟滤波器来减小积分间隔的方法,以提高分数阶微分滤波器的性能。首先,根据积分的基本定义,将积分算子的采样间隔从积分阶到分数阶进行了概括,得到了采样区间为分数阶的积分算子。通过Lagrange FIR或IIR分数延迟滤波器,我们可以将上面获得的算子的分数阶项转换为积分阶项。然后可以选择三阶半采样延迟IIR滤波器作为新的运算符,以实现更好的性能。最后,采用CFE的方法实现了分数阶数字滤波器的设计。通过比较分析表明,改进的分数阶数字微分器的频率响应更接近理想的分数阶微分滤波器,这表明本文提出的方法可以改善IIR型分数阶微分滤波器的性能。明显。

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