A literature review of next‐generation smart sensing technology in structural health monitoring

S Sony, S Laventure, A Sadhu - Structural Control and Health …, 2019 - Wiley Online Library
Advent of computationally efficient smartphones, inexpensive high‐resolution cameras,
drones, and robotic sensors has brought a new era of next‐generation intelligent monitoring …

[HTML][HTML] Review on smartphone sensing technology for structural health monitoring

H Sarmadi, A Entezami, KV Yuen, B Behkamal - Measurement, 2023 - Elsevier
Sensing is a critical and inevitable sector of structural health monitoring (SHM). Recently,
smartphone sensing technology has become an emerging, affordable, and effective system …

Utilization of unmanned aerial vehicle, artificial intelligence, and remote measurement technology for bridge inspections

P Chun, J Dang, S Hamasaki, R Yajima… - Journal of Robotics …, 2020 - jstage.jst.go.jp
In recent years, aging of bridges has become a growing concern, and the danger of bridge
collapse is increasing. To appropriately maintain bridges, it is necessary to perform …

Continuous dynamic monitoring of a large‐span arch bridge with wireless nodes based on MEMS accelerometers

G Zhang, C Moutinho… - Structural Control and …, 2022 - Wiley Online Library
The high cost of conventional monitoring systems limits their application range. In this paper,
microelectromechanical system (MEMS) accelerometers are adopted together with wireless …

Smartphone Prospects in Bridge Structural Health Monitoring, a Literature Review

E Ozer, R Kromanis - Sensors, 2024 - mdpi.com
Bridges are critical components of transportation networks, and their conditions have effects
on societal well-being, the economy, and the environment. Automation needs in inspections …

Image processing–based real‐time displacement monitoring methods using smart devices

A Shrestha, J Dang, K Nakajima… - Structural Control and …, 2020 - Wiley Online Library
Displacement measurement is one of the most important methods for structural health
monitoring. However, because of high cost and heavy on‐site installation, conducting …

Developing a semi-active adjustable stiffness device using integrated damage tracking and adaptive stiffness mechanism

S Azizi, K Karami, S Nagarajaiah - Engineering Structures, 2021 - Elsevier
Recently, the passive negative stiffness device (PNSD) is used to decrease the shear force
in the structure by providing an apparent yielding in the entire system. Usually, due to …

Deep learning-based real-time auto classification of smartphone measured bridge vibration data

A Shrestha, J Dang - Sensors, 2020 - mdpi.com
In this study, a simple and customizable convolution neural network framework was used to
train a vibration classification model that can be integrated into the measurement application …

Simulation of smartphone-based public participation in earthquake structural response emergency monitoring using a virtual experiment and AI

H Li, X Chen, H Chen, B Wang, W Li, S Liu, P Li, Z Qi… - Buildings, 2022 - mdpi.com
Structural health monitoring (SHM) is of great significance for post-earthquake damage
assessment. Smartphone-based monitoring techniques provide the possibility to perform …

Smartphone-based bridge seismic monitoring system and long-term field application tests

A Shrestha, J Dang, X Wang… - Journal of Structural …, 2020 - ascelibrary.org
In this study, a bridge seismic monitoring system was developed based on smartphones
connected together in the same project as a sensor network using a cloud server for easy …