A Two-Step Structural Damage Detection Approach With Limited Instrumentation

Author:

Kim Hyoung M.1,Bartkowicz T. J.1

Affiliation:

1. McDonnell Douglas Aerospace, 13100 Space Center Blvd., Houston, TX 77059

Abstract

This paper describes a two-step damage detection and health monitoring approach that was developed for large and complex structures with a limited number of measurements. The first step identifies a general area of structural damage using the optimal model update method and a hybrid model reduction/eigenvector expansion technique. The second step locates a specific damaged structural component using a design sensitivity technique based on a priori information from the first damage detection step. Performance of the proposed damage detection approach was demonstrated with testing and analysis of a ten-bay hexagonal truss structure. Procedures developed for the damage detection are also directly applicable to test/dynamic math model correlation when the number of measurements is limited.

Publisher

ASME International

Subject

General Engineering

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