Algorithms for time synchronization of wireless structural monitoring sensors

被引:40
|
作者
Lei, Y [1 ]
Kiremidjian, AS [1 ]
Nair, KK [1 ]
Lynch, JP [1 ]
Law, KH [1 ]
机构
[1] Stanford Univ, Dept Civil & Environm Engn, John A Blume Earthquake Engn Ctr, Stanford, CA 94305 USA
关键词
synchronization; time series analysis; wireless sensors; system identification; structural health monitoring;
D O I
10.1002/eqe.432
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Dense networks of wireless structural health monitoring systems can effectively remove the disadvantages associated with current wire-based sparse sensing systems. However, recorded data sets may have relative time-delays due to interference in radio transmission or inherent internal sensor clock errors. For structural system identification and damage detection purposes, sensor data require that they are time synchronized. The need for time synchronization of sensor data is illustrated through a series of tests on asynchronous data sets. Results from the identification of structural modal parameters show that frequencies and damping ratios are not influenced by the asynchronous data; however, the error in identifying structural mode shapes can be significant. The results from these tests are summarized in Appendix A. The objective of this paper is to present algorithms for measurement data synchronization. Two algorithms are proposed for this purpose. The first algorithm is applicable when the input signal to a structure can be measured. The time-delay between an output measurement and the input is identified based on an ARX (auto-regressive model with exogenous input) model for the input-output pair recordings. The second algorithm can be used for a structure subject to ambient excitation, where the excitation cannot be measured. An ARMAV (auto-regressive moving average vector) model is constructed from two output signals and the time-delay between them is evaluated. The proposed algorithms are verified with simulation data and recorded seismic response data from multi-story buildings. The influence of noise on the time-delay estimates is also assessed. Copyright (c) 2004 John Wiley & Sons, Ltd.
引用
收藏
页码:555 / 573
页数:19
相关论文
共 50 条
  • [31] An overview of wireless structural health monitoring for civil structures
    Lynch, Jerome Peter
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2007, 365 (1851): : 345 - 372
  • [32] Automotive Battery Monitoring by Wireless Cell Sensors
    Schneider, Matthias
    Ilgin, Sergej
    Jegenhorst, Niels
    Kube, Raik
    Puettjer, Simon
    Riemschneider, K. -R.
    Vollmer, Juergen
    2012 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE (I2MTC), 2012, : 816 - 820
  • [33] An investigation on wireless sensors for asset management and health monitoring of civil structures
    Furkan, Mustafa
    Mao, Qiang
    Mazzotti, Matteo
    DeVitis, John
    Sumitro, S. Paul
    Faridazar, Fred
    Aktan, A. Emin
    Moon, Franklin
    Bartoli, Ivan
    SENSORS AND SMART STRUCTURES TECHNOLOGIES FOR CIVIL, MECHANICAL, AND AEROSPACE SYSTEMS 2016, 2016, 9803
  • [34] Wireless structural health monitoring for critical members of civil infrastructures using piezoelectric active sensors
    Park, Seunghee
    Yun, Chung-Bang
    Inman, Daniel J.
    Park, Gyuhae
    HEALTH MONITORING OF STRUCTURAL AND BIOLOGICAL SYSTEMS 2008, 2008, 6935
  • [35] Continuous sensors for structural health monitoring
    Datta, S
    Kirikera, GR
    Schulz, MJ
    Sundaresan, MJ
    NONDESTRUCTIVE EVALUATION AND HEALTH MONITORING OF AEROSPACE MATERIALS AND COMPOSITES II, 2003, 5046 : 164 - 175
  • [36] Enabling framework for structural health monitoring using smart sensors
    Rice, J. A.
    Mechitov, K. A.
    Sim, S. H.
    Spencer, B. F., Jr.
    Agha, G. A.
    STRUCTURAL CONTROL & HEALTH MONITORING, 2011, 18 (05) : 574 - 587
  • [37] An Approach for Time Synchronization of Wireless Accelerometer Sensors Using Frequency-Squeezing-Based Operational Modal Analysis
    Chen, Yi
    Zheng, Xiaoqing
    Luo, Yaozhi
    Shen, Yanbin
    Xue, Yu
    Fu, Wenwei
    SENSORS, 2022, 22 (13)
  • [38] Design of Wireless Sensor Network for Real-Time Structural Health Monitoring
    Giammarini, Marco
    Isidori, Daniela
    Concettoni, Enrico
    Cristalli, Cristina
    Fioravanti, Matteo
    Pieralisi, Marco
    2015 IEEE 18TH INTERNATIONAL SYMPOSIUM ON DESIGN AND DIAGNOSTICS OF ELECTRONIC CIRCUITS & SYSTEMS (DDECS 2015), 2015, : 107 - 110
  • [39] Efficient and high-precision time synchronization for wireless monitoring of civil infrastructure subjected to sudden events
    Fu, Yuguang
    Mechitov, Kirill
    Hoang, Tu
    Kim, Jong R.
    Memon, Shazim A.
    Spencer, Billie F., Jr.
    STRUCTURAL CONTROL & HEALTH MONITORING, 2021, 28 (01)
  • [40] Improved modal identification using wireless continuous dynamic monitoring systems without real time synchronization
    Zhang, Guowen
    Moutinho, Carlos
    Magalhaes, Filipe
    MEASUREMENT, 2021, 171