Inertial Methodology for the Monitoring of Structures in Motion Caused by Seismic Vibrations

Author:

Rodríguez-Quiñonez Julio C.1ORCID,Valdez-Rodríguez Jorge Alejandro2ORCID,Castro-Toscano Moises J.1ORCID,Flores-Fuentes Wendy1ORCID,Sergiyenko Oleg3ORCID

Affiliation:

1. Facultad de Ingeniería, Universidad Autónoma de Baja California, Mexicali 21280, Mexico

2. School of Engineering, CETYS Universidad, Mexicali 21259, Mexico

3. Instituto de Ingeniería, Universidad Autónoma de Baja California, Mexicali 21280, Mexico

Abstract

This paper presents a non-invasive methodology for structural health monitoring (SHM) integrated with inertial sensors and signal conditioning techniques. The proposal uses the signal of an IMU (inertial measurement unit) tri-axial accelerometer and gyroscope to continuously measure the displacements of a structure in motion due to seismic vibrations. A system, called the “Inertial Displacement Monitoring System” or “IDMS”, is implemented to attenuate the signal error of the IMU with methodologies such as a Kalman filter to diminish the influence of white noise, a Chebyshev filter to isolate the frequency values of a seismic motion, and a correction algorithm called zero velocity observation update (ZVOB) to detect seismic vibrations and diminish the influence of external perturbances. As a result, the IDMS is a methodology developed to measure displacements when a structure is in motion due to seismic vibration and provides information to detect failures opportunely.

Publisher

MDPI AG

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