TY - JOUR
T1 - Effect of response type and excitation frequency range on the structural damage detection method using correlation functions of vibration responses
AU - Wang, Le
AU - Yang, Zhichun
PY - 2013/2/18
Y1 - 2013/2/18
N2 - In previous paper by the authors, the inner product vector (IPV) was proposed as a damage detection algorithm which uses cross correlation functions between vibration responses under band pass white noise excitation. As the characteristics of IPVs calculated by different vibration responses (i.e. displacement, velocity and acceleration) under band pass white noise excitation with different frequency range should be different, the effectiveness of the damage detection method may be affected by the response type and excitation frequency range. This paper just investigates the effect of response type and excitation frequency range on the IPV-based structural damage detection method. Firstly, the theoretical formulae of IPVs and the damage index using IPV are reviewed shortly. Then, the effect of response type on the IPVs is analyzed based on the characteristics of the theoretical formulae of IPVs, and the principle for choosing the response type for calculating IPV under band pass white noise excitation with different frequency range is proposed as well. Finally, simulative damage detection examples of a shear frame structure are presented to illustrate the theory and method proposed in this paper.
AB - In previous paper by the authors, the inner product vector (IPV) was proposed as a damage detection algorithm which uses cross correlation functions between vibration responses under band pass white noise excitation. As the characteristics of IPVs calculated by different vibration responses (i.e. displacement, velocity and acceleration) under band pass white noise excitation with different frequency range should be different, the effectiveness of the damage detection method may be affected by the response type and excitation frequency range. This paper just investigates the effect of response type and excitation frequency range on the IPV-based structural damage detection method. Firstly, the theoretical formulae of IPVs and the damage index using IPV are reviewed shortly. Then, the effect of response type on the IPVs is analyzed based on the characteristics of the theoretical formulae of IPVs, and the principle for choosing the response type for calculating IPV under band pass white noise excitation with different frequency range is proposed as well. Finally, simulative damage detection examples of a shear frame structure are presented to illustrate the theory and method proposed in this paper.
UR - http://www.scopus.com/inward/record.url?scp=84870241111&partnerID=8YFLogxK
U2 - 10.1016/j.jsv.2012.09.027
DO - 10.1016/j.jsv.2012.09.027
M3 - 文章
AN - SCOPUS:84870241111
SN - 0022-460X
VL - 332
SP - 645
EP - 653
JO - Journal of Sound and Vibration
JF - Journal of Sound and Vibration
IS - 4
ER -