A robust health monitoring and identification (HMI) technique for determination of impact positions and forces and the assessment of impulse energies for damage assessment is developed with configurable distributed sensor networks. Its functional modules are primarily based on advanced data processing and imaging techniques, as well as on model computations and dynamic response evaluators. Correlations with test results indicate that this HMI technique is an effective tool of online diagnosis and assessment, which is possibly applicable for large scale fiber composite structures.
«
A robust health monitoring and identification (HMI) technique for determination of impact positions and forces and the assessment of impulse energies for damage assessment is developed with configurable distributed sensor networks. Its functional modules are primarily based on advanced data processing and imaging techniques, as well as on model computations and dynamic response evaluators. Correlations with test results indicate that this HMI technique is an effective tool of online diagnosis an...
»