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Impact load identification method based on frequency response pattern recognition and dynamic sensor filter strategy

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摘要 Identification of impact loads plays important role in marine structures health monitoring but is diffi-cult to be measured directly most time.This study investigates a two-stage framework for impact load localization and reconstruction,consisting of load region identification and local refined nodal search.For the region identification,a novel frequency response feature preprocessing method based on FFT is proposed and incorporated into a multi-layer perceptron(MLP)neural network as the embedding func-tion of the Matching Network(MN),the core model adopted for pattern recognition.Based on the region probabilities predicted by MN,a local refined nodal search strategy is provided,which is initialized by a region correction method for amending the possible region misclassification and further guided by error metrics with iteration search strategy.Moreover,the inverse problem in this study is formulated in the discretized state space expression with the reduced modal coordinates.For improving the load inverse accuracy affected by Zero Order Hold(ZOH)simplification in this formulation,a dynamic sensor filter strategy is provided.Eventually,a numerical experiment of impact load identification on a steel plate is performed and discussed,whose results indicate the validity and robustness of the proposed method.
出处 《Journal of Ocean Engineering and Science》 2025年第4期411-425,共15页 海洋工程与科学(英文)
基金 supported by National Natural Science Founda-tion of China(Grant No.U2241266,Grant No.51979163 and Grant No.51809168) Marine Equipment Foresight Innovation Union Project(ZCJDQZ202304B02) the Fundamental Research Funds for the Central Universities.
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