The time domain parameter laenuncauon memoa oi me iounuauon-structure interaction system is presented. On the basis of building the computation mode and the motion equation of the foundation-structure interaction syst...The time domain parameter laenuncauon memoa oi me iounuauon-structure interaction system is presented. On the basis of building the computation mode and the motion equation of the foundation-structure interaction system, the system parameter identification method was established by using the extended Kalman filter (EKF) technique and taking the unknown parameters in the system as the augment state variables. And the time parameter identification process of the foundation-structure interaction system was implemented by using the data of the layer foundation-storehouse interaction system model test on the large vibration platform. The computation result shows that the established parameter identification method can induce good parameter estimation.展开更多
本文运用ITD(Ibrahim Time Domain)法来识别振动台模型试验的模态参数。在基于结构动力响应的分析中识别结构的模态参数是结构健康监测和损伤识别等研究及工程实践的重要内容,也是前提和难点。本文首先运用随机减量法对振动台激励下的...本文运用ITD(Ibrahim Time Domain)法来识别振动台模型试验的模态参数。在基于结构动力响应的分析中识别结构的模态参数是结构健康监测和损伤识别等研究及工程实践的重要内容,也是前提和难点。本文首先运用随机减量法对振动台激励下的结构振动响应数据进行预处理,然后用ITD法识别出结构的频率、阻尼比和振型系数。利用本方法对同济大学土木工程防灾国家重点实验室12层钢筋混凝土框架模型振动台试验数据进行了分析,并将识别结果与有限元分析软件的数值模拟进行了对比。结果发现:模型试验结构的3~6层为结构的薄弱位置,且自振频率在随着加速度不断增加的地震波输入下呈阶梯形下降了两阶,之后呈现波动状态,结构振型在第27工况之后也和前面有明显的改变。展开更多
In most of real operational conditions only response data are measurable while the actual excitations are unknown, so modal parameter must be extracted only from responses. This paper gives a theoretical formulation f...In most of real operational conditions only response data are measurable while the actual excitations are unknown, so modal parameter must be extracted only from responses. This paper gives a theoretical formulation for the cross-correlation functions and cross-power spectra between the outputs under the assumption of white-noise excitation. It widens the field of modal analysis under ambient excitation because many classical methods by impulse response functions or frequency response functions can be used easily for modal analysis under unknown excitation. The Polyreference Complex Exponential method and Eigensystem Realization Algorithm using cross-correlation functions in time domain and Orthogonal Polynomial method using cross-power spectra in frequency domain are applied to a steel frame to extract modal parameters under operational conditions. The modal properties of the steel frame from these three methods are compared with those from frequency response functions analysis. The results show that the modal analysis method using cross-correlation functions or cross-power spectra presented in this paper can extract modal parameters efficiently under unknown excitation.展开更多
A scheme for general purposed FDTD visual scientific computing software is introduced in this paper using object-oriented design (OOD) method. By abstracting the parameters of FDTD grids to an individual class and sep...A scheme for general purposed FDTD visual scientific computing software is introduced in this paper using object-oriented design (OOD) method. By abstracting the parameters of FDTD grids to an individual class and separating from the iteration procedure, the visual software can be adapted to more comprehensive computing problems. Real-time gray degree graphic and wave curve of the results can be achieved using DirectX technique. The special difference equation and data structure in dispersive medium are considered, and the peculiarity of parameters in perfectly matched layer are also discussed.展开更多
文摘The time domain parameter laenuncauon memoa oi me iounuauon-structure interaction system is presented. On the basis of building the computation mode and the motion equation of the foundation-structure interaction system, the system parameter identification method was established by using the extended Kalman filter (EKF) technique and taking the unknown parameters in the system as the augment state variables. And the time parameter identification process of the foundation-structure interaction system was implemented by using the data of the layer foundation-storehouse interaction system model test on the large vibration platform. The computation result shows that the established parameter identification method can induce good parameter estimation.
文摘本文运用ITD(Ibrahim Time Domain)法来识别振动台模型试验的模态参数。在基于结构动力响应的分析中识别结构的模态参数是结构健康监测和损伤识别等研究及工程实践的重要内容,也是前提和难点。本文首先运用随机减量法对振动台激励下的结构振动响应数据进行预处理,然后用ITD法识别出结构的频率、阻尼比和振型系数。利用本方法对同济大学土木工程防灾国家重点实验室12层钢筋混凝土框架模型振动台试验数据进行了分析,并将识别结果与有限元分析软件的数值模拟进行了对比。结果发现:模型试验结构的3~6层为结构的薄弱位置,且自振频率在随着加速度不断增加的地震波输入下呈阶梯形下降了两阶,之后呈现波动状态,结构振型在第27工况之后也和前面有明显的改变。
基金Item of the 9-th F ive Plan of the Aeronautical Industrial Corporation
文摘In most of real operational conditions only response data are measurable while the actual excitations are unknown, so modal parameter must be extracted only from responses. This paper gives a theoretical formulation for the cross-correlation functions and cross-power spectra between the outputs under the assumption of white-noise excitation. It widens the field of modal analysis under ambient excitation because many classical methods by impulse response functions or frequency response functions can be used easily for modal analysis under unknown excitation. The Polyreference Complex Exponential method and Eigensystem Realization Algorithm using cross-correlation functions in time domain and Orthogonal Polynomial method using cross-power spectra in frequency domain are applied to a steel frame to extract modal parameters under operational conditions. The modal properties of the steel frame from these three methods are compared with those from frequency response functions analysis. The results show that the modal analysis method using cross-correlation functions or cross-power spectra presented in this paper can extract modal parameters efficiently under unknown excitation.
基金This project was supported by the National Natural Science Foundation (No. 69831020).
文摘A scheme for general purposed FDTD visual scientific computing software is introduced in this paper using object-oriented design (OOD) method. By abstracting the parameters of FDTD grids to an individual class and separating from the iteration procedure, the visual software can be adapted to more comprehensive computing problems. Real-time gray degree graphic and wave curve of the results can be achieved using DirectX technique. The special difference equation and data structure in dispersive medium are considered, and the peculiarity of parameters in perfectly matched layer are also discussed.