TY - JOUR
T1 - Time domain averaging based on fractional delay filter
AU - Wu, Wentao
AU - Lin, Jing
AU - Han, Shaobo
AU - Ding, Xianghui
PY - 2009/7
Y1 - 2009/7
N2 - For rotary machinery, periodic components in signals are always extracted to investigate the condition of each rotating part. Time domain averaging technique is a traditional method used to extract those periodic components. Originally, a phase reference signal is required to ensure all the averaged segments are with the same initial phase. In some cases, however, there is no phase reference; we have to establish some efficient algorithms to synchronize the segments before averaging. There are some algorithms available explaining how to perform time domain averaging without using phase reference signal. However, those algorithms cannot eliminate the phase error completely. Under this background, a new time domain averaging algorithm that has no phase error theoretically is proposed. The performance is improved by incorporating the fractional delay filter. The efficiency of the proposed algorithm is validated by some simulations.
AB - For rotary machinery, periodic components in signals are always extracted to investigate the condition of each rotating part. Time domain averaging technique is a traditional method used to extract those periodic components. Originally, a phase reference signal is required to ensure all the averaged segments are with the same initial phase. In some cases, however, there is no phase reference; we have to establish some efficient algorithms to synchronize the segments before averaging. There are some algorithms available explaining how to perform time domain averaging without using phase reference signal. However, those algorithms cannot eliminate the phase error completely. Under this background, a new time domain averaging algorithm that has no phase error theoretically is proposed. The performance is improved by incorporating the fractional delay filter. The efficiency of the proposed algorithm is validated by some simulations.
KW - Fractional delay
KW - Phase accumulation error
KW - Time domain averaging
UR - https://www.scopus.com/pages/publications/63449141976
U2 - 10.1016/j.ymssp.2009.01.017
DO - 10.1016/j.ymssp.2009.01.017
M3 - 文章
AN - SCOPUS:63449141976
SN - 0888-3270
VL - 23
SP - 1447
EP - 1457
JO - Mechanical Systems and Signal Processing
JF - Mechanical Systems and Signal Processing
IS - 5
ER -