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Sensor Technologies for Civil Infrastructures, Volume 1

Sensing Hardware and Data Collection Methods for Performance Assessment

Gebonden Engels 2014 9780857094322
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Sensors are used for civil infrastructure performance assessment and health monitoring, and have evolved significantly through developments in materials and methodologies. Sensor Technologies for Civil Infrastructure Volume I provides an overview of sensor hardware and its use in data collection.

The first chapters provide an introduction to sensing for structural performance assessment and health monitoring, and an overview of commonly used sensors and their data acquisition systems. Further chapters address different types of sensor including piezoelectric transducers, fiber optic sensors, acoustic emission sensors, and electromagnetic sensors, and the use of these sensors for assessing and monitoring civil infrastructures. Developments in technologies applied to civil infrastructure performance assessment are also discussed, including radar technology, micro-electro-mechanical systems (MEMS) and nanotechnology.

Sensor Technologies for Civil Infrastructure provides a standard reference for structural and civil engineers, electronics engineers, and academics with an interest in the field.

Specificaties

ISBN13:9780857094322
Taal:Engels
Bindwijze:Gebonden

Lezersrecensies

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Inhoudsopgave

<p>1. Introduction to sensing for structural performance assessment and health monitoring<br>M. L. Wang, Northeastern University, USA, J. P. Lynch, University of Michigan, USA and H. Sohn, Korea Advanced Institute of Science and Technology, Republic of Korea<br>2. Sensor data acquisition systems and architectures <br>M. D. Todd, University of California San Diego, USA<br>3. Commonly used sensors for civil infrastructures and their associated algorithms<br>N. C. Yoder, Whistle Labs, Inc., USA and D. E. Adams, Vanderbilt University, USA<br>4. Piezoelectric transducers for assessing and monitoring civil infrastructures<br>Y-K. An, M. K. Kim and H. Sohn, Korea Advanced Institute of Science and Technology (KAIST), Republic of Korea<br>5. Fiber optic sensors for assessing and monitoring civil infrastructures<br>K. J. Peters, North Carolina State University & D. Inaudi, SMARTEC S.A. Switzerland<br>6. Acoustic emission sensors for assessing and monitoring civil infrastructures<br>M. Meo, University of Bath, UK<br>7. Nonlinear acoustic and ultrasound methods for assessing and monitoring civil infrastructures<br>M. Meo, University of Bath, UK<br>8. Radar technology: radio frequency, interferometric, millimeter wave and terahertz sensors for assessing and monitoring civil infrastructures<br>D. Huston, Univeristy of Vermont, USA & D. Busuioc, DB Consultant, USA<br>9. Electromagnetic sensors for assessing and monitoring civil infrastructures<br>M. L. Wang, Northeastern University, USA and G. Wang, Methode Electronics Inc., USA<br>10. Micro-electro-mechanical-systems (MEMS) for assessing and monitoring civil infrastructures<br>D. Ozevin, University of Illinois at Chicago, USA<br>11. Multifunctional materials and nanotechnology for assessing and monitoring civil infrastructures<br>K. J. Loh and D. Ryu, University of California-Davis, USA<br>12. Laser-based sensing for assessing and monitoring civil infrastructures<br>T-Y. Yu, University of Massachusetts Lowell, USA<br>13. Corrosion sensing for assessing and monitoring civil infrastructures<br>A. Poursaee, Clemson University, USA<br>14. Vision-based sensing for assessing and monitoring civil infrastructures<br>Y. F. Ji, Tongji University, China and C. C. Chang, Hong Kong University of Science and Technology, Hong Kong<br>15. Robotic sensing for assessing and monitoring civil infrastructures<br>H. Myung, H. Jeon and Y-S. Bang, Korea Advanced Institute of Science and Technology (KAIST), Republic of Korea and Y. Wang, Georgia Institute of Technology, USA<br>16. Design and selection of wireless structural monitoring systems for civil infrastructures<br>M. B. Kane, C. Peckens and J. P. Lynch, University of Michigan, USA<br>17. Permanent installation of wireless structural monitoring systems in infrastructure systems<br>Courtney A. Peckens, Michael B. Kane, Yilan Zhang and Jerome P. Lynch, University of Michigan, USA<br>18. Energy harvesting for sensing systems for assessing and monitoring civil infrastructures<br>J. Scruggs, University of Michigan, USA</p>

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        Sensor Technologies for Civil Infrastructures, Volume 1