Analysis of non-stationary structural systems by using a band-variable filter

被引:59
|
作者
Ditommaso, Rocco [1 ]
Mucciarelli, Marco [1 ]
Ponzo, Felice Carlo [1 ]
机构
[1] Univ Basilicata, DiSGG, I-85100 Potenza, Italy
关键词
Non-parametric dynamic identification; Structural health monitoring; Nonlinear systems; Non-stationary systems; S-Transform; Strong motion; S-TRANSFORM;
D O I
10.1007/s10518-012-9338-y
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
One of the main tools used to study the dynamic response of structural systems is certainly the Fourier Transform. This tool is very useful and reliable to investigating the response of a stationary system, i.e. a generic system that does not changes its characteristics over time. Conversely, the Fourier Transform is no longer reliable if the main goal is to study the evolution of the dynamic response of a system whose features rapidly vary with time. To this regard, several mathematical tools were developed to analyze time-variable dynamic responses. Soil and buildings, subject to transient forcing such as an earthquake, may change their characteristics over time with the initiation of nonlinear phenomena. This paper proposes a new methodology to approach the study of non-stationary response of soil and buildings: a band-variable filter based on -Transform. In fact, with the possibility of changing the bandwidth of each filtering window over time, it becomes possible to extract from a generic record only the response of the system focusing on the variation of individual modes of vibration. Practically, it is possible to extract from a generic non-stationary signal only the phase of interest. The paper starts from examples and applications on synthetic signals, then examines possible applications to the study of the non-stationary response of soil and buildings. The last application focuses on the possibility to evaluate the mode shapes over time for both numerical and scaled model subjected to strong motion inputs.
引用
收藏
页码:895 / 911
页数:17
相关论文
共 50 条
  • [1] Analysis of non-stationary structural systems by using a band-variable filter
    Rocco Ditommaso
    Marco Mucciarelli
    Felice Carlo Ponzo
    Bulletin of Earthquake Engineering, 2012, 10 : 895 - 911
  • [2] Development of algorithms to identify non-stationary structural systems using statistical filter theories
    Sato, T
    Sakanoue, I
    Yoshida, I
    RELIABILITY AND OPTIMIZATION OF STRUCTURAL SYSTEMS, 2003, : 197 - 203
  • [3] Comparative analysis of radiometer systems using non-stationary processes
    Racette, P
    Lang, R
    IGARSS 2002: IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM AND 24TH CANADIAN SYMPOSIUM ON REMOTE SENSING, VOLS I-VI, PROCEEDINGS: REMOTE SENSING: INTEGRATING OUR VIEW OF THE PLANET, 2002, : 565 - 567
  • [4] CONSTRUCTION OF A BAND-VARIABLE FILTER FOR EARTHQUAKE RECORDS PROCESSING USING ANALYTICAL MODE DECOMPOSITION METHOD
    Hu, Zhixiang
    Ren, Weixin
    Wang, Zuocai
    PROCEEDINGS OF THE THIRTEENTH INTERNATIONAL SYMPOSIUM ON STRUCTURAL ENGINEERING, VOLS 1 AND II, 2014, : 1467 - 1476
  • [5] Structural and parametric non-stationary modal control systems
    Fedosenkov, D. B.
    Simikova, A. A.
    Fedosenkov, B. A.
    XII ALL-RUSSIAN SCIENTIFIC AND PRACTICAL CONFERENCE (WITH INTERNATIONAL PARTICIPATION) ON AUTOMATION SYSTEMS IN EDUCATION, SCIENCE AND PRODUCTION, 2019, 2020, 865
  • [6] Uncertainty quantification using the particle filter for non-stationary hydrological frequency analysis
    Sen, Subhamoy
    He, Jianxun
    Kasiviswanathan, K. S.
    JOURNAL OF HYDROLOGY, 2020, 584
  • [7] Stochastic Analysis of Large Structural Systems under Fully Non-Stationary Input
    Cacciola, P.
    Muscolino, G.
    9TH WORLD CONGRESS ON COMPUTATIONAL MECHANICS AND 4TH ASIAN PACIFIC CONGRESS ON COMPUTATIONAL MECHANICS, 2010, 10
  • [8] Non-stationary delay analysis of runway systems
    Stolletz, Raik
    OR SPECTRUM, 2008, 30 (01) : 191 - 213
  • [9] Non-stationary delay analysis of runway systems
    Raik Stolletz
    OR Spectrum, 2008, 30 : 191 - 213