Robertson D Gordon E, Dowling James J
University of Ottawa, School of Kinetics, Ottawa, ON K1N 6N5, Canada.
J Electromyogr Kinesiol. 2003 Dec;13(6):569-73. doi: 10.1016/s1050-6411(03)00080-4.
For many years the Butterworth lowpass filter has been used to smooth many kinds of biomechanical data, despite the fact that it is underdamped and therefore overshoots and/or undershoots data during rapid transitions. A comparison of the conventional Butterworth filter with a critically damped filter shows that the critically damped filter not only removes the undershooting and overshooting, but has a superior rise time during rapid transitions. While analog filters always create phase distortion, both the critically damped and Butterworth filters can be modified to become zero-lag filters when the data are processed in both the forward and reverse directions. In such cases little improvement is realized by applying multiple passes. The Butterworth filter has superior 'roll-off' (attenuation of noise above the cutoff frequency) than the critically damped filter, but by increasing the number of passes of the critically damped filter the same 'roll-off' can be achieved. In summary, the critically damped filter was shown to have superior performance in the time domain than the Butterworth filter, but for data that need to be double differentiated (e.g. displacement data) the Butterworth filter may still be the better choice.
多年来,巴特沃斯低通滤波器一直被用于平滑多种生物力学数据,尽管它存在欠阻尼问题,因此在快速转换期间会出现数据过冲和/或下冲。将传统的巴特沃斯滤波器与临界阻尼滤波器进行比较可知,临界阻尼滤波器不仅消除了下冲和过冲,而且在快速转换期间具有更优的上升时间。虽然模拟滤波器总会产生相位失真,但当数据在正向和反向都进行处理时,临界阻尼滤波器和巴特沃斯滤波器都可以修改为零延迟滤波器。在这种情况下,多次应用并不会带来太大改善。巴特沃斯滤波器的“滚降”(截止频率以上噪声的衰减)比临界阻尼滤波器更优,但通过增加临界阻尼滤波器的应用次数,可以实现相同的“滚降”。总之,结果表明临界阻尼滤波器在时域中的性能优于巴特沃斯滤波器,但对于需要进行二次微分的数据(例如位移数据),巴特沃斯滤波器可能仍是更好的选择。