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This paper proposes a novel vibration-based damage detection approach.
In this work, a new wavelet-based damage detection approach has been proposed.
A practical closed loop control based damage detection scheme is presented aiming at detecting small damage in controlled structures.
A statistical pattern recognition based damage detection algorithm is proposed.
Traditional vibration based damage detection efforts focused mainly on the detection of fatigue cracking.
To achieve this goal, a simulation based damage detection method is used that incorporates the Concrete Damaged Plasticity model.
The paper establishes a sensitivity based damage detection method to use PSD.
The results obtained from a number of different damage scenarios confirm the feasibility of the proposed vibration based damage detection method for three dimensional asymmetric buildings.
The vibration based damage detection has practically no alternative as applied to the rotating shafts of steam turbines during operation.
Two different wavelet-based damage detection approaches were evaluated using experimental and simulated data.
In this paper, a new structural damage detection approach based on changes in the generalized flexibility matrix is presented.
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