Based on the transfer matrix method and the virtual source simulation technique, this paper proposes a novel semi-analytical and semi-numerical method for solving 2-D sound- structure interaction problems under a harm...Based on the transfer matrix method and the virtual source simulation technique, this paper proposes a novel semi-analytical and semi-numerical method for solving 2-D sound- structure interaction problems under a harmonic excitation.Within any integration segment, as long as its length is small enough,along the circumferential curvilinear coordinate,the non- homogeneous matrix differential equation of an elastic ring of complex geometrical shape can be rewritten in terms of the homogeneous one by the method of extended homogeneous capacity proposed in this paper.For the exterior fluid domain,the multi-circular virtual source simulation technique is adopted.The source density distributed on each virtual circular curve may be ex- panded as the Fourier's series.Combining with the inverse fast Fourier transformation,a higher accuracy and efficiency method for solving 2-D exterior Helmholtz's problems is presented in this paper.In the aspect of solution to the coupling equations,the state vectors of elastic ring induced by the given harmonic excitation and generalized forces of coefficients of the Fourier series can be obtained respectively by using a high precision integration scheme combined with the method of extended homogeneous capacity put forward in this paper.According to the superposition princi- ple and compatibility conditions at the interface between the elastic ring and fluid,the algebraic equation of system can be directly constructed by using the least square approximation.Examples of acoustic radiation from two typical fluid-loaded elastic rings under a harmonic concentrated force are presented.Numerical results show that the method proposed is more efficient than the mixed FE-BE method in common use.展开更多
为优化声信号盲分选仿真系统的实时性以及分选精度,研究了一种基于短时傅里叶时频分析(Short Time Fourier Time Frequency Analyze, STF-TF)的声信号盲分选算法,用于改善系统分选精度。该方法在信号的时频平面投影相交的情况下,能够实...为优化声信号盲分选仿真系统的实时性以及分选精度,研究了一种基于短时傅里叶时频分析(Short Time Fourier Time Frequency Analyze, STF-TF)的声信号盲分选算法,用于改善系统分选精度。该方法在信号的时频平面投影相交的情况下,能够实现声信号分选算法功能。仿真实验表明:在欠定条件下,当源信号数目与接收天线数目相差为1时分选效果最佳。利用SystemVue仿真平台建立了多声传感器条件下信号盲分选系统,并结合透明计算原理提出了适用于该系统的高实时性结构。展开更多
基金Project supported by the National Natural Science Foundation of China (No.10172038)
文摘Based on the transfer matrix method and the virtual source simulation technique, this paper proposes a novel semi-analytical and semi-numerical method for solving 2-D sound- structure interaction problems under a harmonic excitation.Within any integration segment, as long as its length is small enough,along the circumferential curvilinear coordinate,the non- homogeneous matrix differential equation of an elastic ring of complex geometrical shape can be rewritten in terms of the homogeneous one by the method of extended homogeneous capacity proposed in this paper.For the exterior fluid domain,the multi-circular virtual source simulation technique is adopted.The source density distributed on each virtual circular curve may be ex- panded as the Fourier's series.Combining with the inverse fast Fourier transformation,a higher accuracy and efficiency method for solving 2-D exterior Helmholtz's problems is presented in this paper.In the aspect of solution to the coupling equations,the state vectors of elastic ring induced by the given harmonic excitation and generalized forces of coefficients of the Fourier series can be obtained respectively by using a high precision integration scheme combined with the method of extended homogeneous capacity put forward in this paper.According to the superposition princi- ple and compatibility conditions at the interface between the elastic ring and fluid,the algebraic equation of system can be directly constructed by using the least square approximation.Examples of acoustic radiation from two typical fluid-loaded elastic rings under a harmonic concentrated force are presented.Numerical results show that the method proposed is more efficient than the mixed FE-BE method in common use.
文摘为优化声信号盲分选仿真系统的实时性以及分选精度,研究了一种基于短时傅里叶时频分析(Short Time Fourier Time Frequency Analyze, STF-TF)的声信号盲分选算法,用于改善系统分选精度。该方法在信号的时频平面投影相交的情况下,能够实现声信号分选算法功能。仿真实验表明:在欠定条件下,当源信号数目与接收天线数目相差为1时分选效果最佳。利用SystemVue仿真平台建立了多声传感器条件下信号盲分选系统,并结合透明计算原理提出了适用于该系统的高实时性结构。