振动与冲击
振動與遲擊
진동여충격
JOURNAL OF VIBRATION AND SHOCK
2014年
17期
191-196
,共6页
思悦%张周锁%成玮%何正嘉%孔垂青
思悅%張週鎖%成瑋%何正嘉%孔垂青
사열%장주쇄%성위%하정가%공수청
爆炸复合结构%DTCWT%Laplace 小波%模态参数识别
爆炸複閤結構%DTCWT%Laplace 小波%模態參數識彆
폭작복합결구%DTCWT%Laplace 소파%모태삼수식별
explosion composite structure%DTCWT%Laplace wavelet%modal parameter identification
精确提取结构模态参数是爆炸复合结构结合状态识别的重要基础,提出一种基于双树复小波变换(DTC-WT)和 Laplace 小波相关滤波相结合的爆炸复合结构模态参数识别方法。利用 DTCWT 的抗频带混叠特性,对多模态混叠振动响应信号进行模态分离,得到一组单模态分量;将 DTCWT 与 Laplace 小波相关滤波提取模态参数法相结合,实现爆炸复合结构的模态参数提取。将该方法应用于爆炸复合管的实验数据,精确提取了其固有频率和阻尼比,精度明显高于直接 Laplace 小波相关滤波法。将该方法应用于生产线上不同结合状态的爆炸复合管,有效提取了不同状态管道的模态参数。
精確提取結構模態參數是爆炸複閤結構結閤狀態識彆的重要基礎,提齣一種基于雙樹複小波變換(DTC-WT)和 Laplace 小波相關濾波相結閤的爆炸複閤結構模態參數識彆方法。利用 DTCWT 的抗頻帶混疊特性,對多模態混疊振動響應信號進行模態分離,得到一組單模態分量;將 DTCWT 與 Laplace 小波相關濾波提取模態參數法相結閤,實現爆炸複閤結構的模態參數提取。將該方法應用于爆炸複閤管的實驗數據,精確提取瞭其固有頻率和阻尼比,精度明顯高于直接 Laplace 小波相關濾波法。將該方法應用于生產線上不同結閤狀態的爆炸複閤管,有效提取瞭不同狀態管道的模態參數。
정학제취결구모태삼수시폭작복합결구결합상태식별적중요기출,제출일충기우쌍수복소파변환(DTC-WT)화 Laplace 소파상관려파상결합적폭작복합결구모태삼수식별방법。이용 DTCWT 적항빈대혼첩특성,대다모태혼첩진동향응신호진행모태분리,득도일조단모태분량;장 DTCWT 여 Laplace 소파상관려파제취모태삼수법상결합,실현폭작복합결구적모태삼수제취。장해방법응용우폭작복합관적실험수거,정학제취료기고유빈솔화조니비,정도명현고우직접 Laplace 소파상관려파법。장해방법응용우생산선상불동결합상태적폭작복합관,유효제취료불동상태관도적모태삼수。
Accurate extraction of modal parameters is an important basis for identification of explosion composite structures'interface state.A new modal parameter identification method for explosion composite structures based on dual-tree complex wavelet transformation(DTCWT)and Laplace wavelet correlation filtering was proposed.With the resistance band aliasing effects of DTCWT,a multi-modal vibration response signal was decomposed into a set of single modal signals,and then the modal parameters of the explosion composite structures were extracted with Laplace wavelet correlation filtering method from the single modal signals.The proposed method was validated using the test data of an explosion composite pipe,and then its natural frequencies and damping ratios were extracted accurately.Furthermore,the precision of the proposed method was better than that of Laplace wavelet correlation filtering method.The proposed method was applied to explosion composite pipes with different interface states on a production line,and their modal parameters were extracted effectively.