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Structural Health Monitoring and Integrity Management : Proceedings of the 2nd International Conference of Structural Health Monitoring and Integrity Management (ICSHMIM 2014), Nanjing, China, 24-26 September 2014

معرفی کتاب «Structural Health Monitoring and Integrity Management : Proceedings of the 2nd International Conference of Structural Health Monitoring and Integrity Management (ICSHMIM 2014), Nanjing, China, 24-26 September 2014» نوشتهٔ Ding, Keqin; Wu, Zhishen; Yuan, Shenfang، منتشرشده توسط نشر CRC Press/Balkema در سال 2015. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Structural Health Monitoring and Integrity Management is a collection of the papers presented at the 2nd International Conference of Structural Health Monitoring and Integrity Management (ICSHMIM2014, Nanjing, China, 24-26 September 2014), and addresses the most recent developments in the field of Structural Health Monitoring (SHM) and integrity management from around the world. It is also generally acknowledged that a clear advantage of SHM-technology over traditional NDT methods is the closer interaction and automation of sensing, diagnostics, prognostics and condition-based maintenance that. Read more... Abstract: Structural Health Monitoring and Integrity Management is a collection of the papers presented at the 2nd International Conference of Structural Health Monitoring and Integrity Management (ICSHMIM2014, Nanjing, China, 24-26 September 2014), and addresses the most recent developments in the field of Structural Health Monitoring (SHM) and integrity management from around the world. It is also generally acknowledged that a clear advantage of SHM-technology over traditional NDT methods is the closer interaction and automation of sensing, diagnostics, prognostics and condition-based maintenance that Content: Front Cover Table of contents Preface Acknowledgements Organizing committee Session 1: Advanced sensing technology The influence mechanism research of temperature on piezoresistive MEMS pressure sensor Research of the online monitoring in the cable trench based on wireless temperature and humidity sensor network Study on integrated sensor for metal structure fatigue monitoring Providing multiradio wireless sensor network with high-throughput and long-distance transmitting ability Sensors for high-temperature displacement, deformation, and strain measurement: A review Research on form-finding methods for conductors with consideration for the lowest point in transmission linesStudy on the sensing of reinforced concrete beams with a new type of long-gauge strain sensor A real-time monitoring and noncontacting measurement technology for dynamic deformation of a liquid sloshing surface A solid anemometer for monitoring tower cranes Development of an active wireless sensor node for fatigue crack detection using nonlinear wave modulation Research of the wireless high frequency sensor network on the partial discharge on-line monitoring in the switchgear Binocular stereo vision measurement system based on SOPCForklift turning and braking stability analysis Intensity-modulated anemometer based on optical fiber taper incorporated with fiber Bragg grating Array displacement measurement system based on MEMS technology and its application in geotechnical engineering monitoring Study on the Fiber Bragg Grating strain sensor long-term sealing protection technology in marine environment A new method and system for automatically measuring subgrade layered settlement and lateral displacement The development of rfid tag antenna-based sensor for crack determinationApplication of the Fiber Optic Gyroscope technology in geotechnical engineering monitoring Session 2: Novel signal processing A frequency-wavenumber domain analysis for Lamb wave crack detection An impact imaging method for composite structures based on virtual time reversal Detection of damage in beams using artificial neural networks Sparsity-enabled denoising method based on tunable Q-factor wavelet transform for bearing fault diagnosis 2D curvature mode shape for damage detection Analysis of the meter reading success ratio of low-voltage power carrier with gross error elimination methodResearch on the residual stress measurement in steel plate using critically refracted longitudinal ultrasonic wave based on the phase-frequency analysis method Compressive sensing method for damage detection in wireless structural health monitoring An online error correction method based on odometer and MIMU An algorithm for non-parametric identification of highly nonlinear structures with incomplete measurements Structural Health Monitoring and Integrity Management is a collection of the papers presented at the 2nd International Conference of Structural Health Monitoring and Integrity Management (ICSHMIM2014, Nanjing, China, 24-26 September 2014), and addresses the most recent developments in the field of Structural Health Monitoring (SHM) and integrity management from around the world. It is also generally acknowledged that a clear advantage of SHM-technology over traditional NDT methods is the closer interaction and automation of sensing, diagnostics, prognostics and condition-based maintenance that SHM enables. As SHM is a system-level approach which integrates sensors/actuators networks with structures, software to interpret sensor signals, and hardware to process and manage the signals, its maturity based on the complexity and targeted solutions can be classified into four different sequential levels: detection, identification, quantification, and decision. Detection is the lowest maturity level that the technology can achieve. Once detection is confirmed with a highdegree of confidence, identification of the occurrence of the event in time and space domain is critical, which then can potentially lead to the quantification of the event. A more accurate quantification may lead to a better decision, which provides a much more efficient management solution for the structures than traditional inspection techniques, leading to a system platform for autonomous or intelligent structures.Structural Health Monitoring and Integrity Management will be invaluable to academics and professionals interested in applications encompassing traditional aerospace structures and civil infrastructures, in special equipment and marine/offshore structures, as well as in a variety of other structures and platforms
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