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Inhaltsverzeichnis
- An Overview of the Fundamentals of Modal Analysis.
- to Signal Processing.
- 1: Fundamentals of Signal Processing.
- 2: Advanced Signal Processing.
- Rules for the Exchange and Analysis of Dynamic Information.
- I: Basic Definitions and Test Scenarios.
- II: Numerically Simulated Results for a Deterministic Excitation with no External Loads.
- III: Numerically Simulated and Experimental Results for a Deterministic Excitation with External Loads.
- IV: Numerically Simulated and Experimental Results for a Random Excitation.
- V: Q-Transmissibility Matrix vs. Single Point Transmissibility in Test Environments.
- PartVI: Current Practice and Standards.
- Theoretical Models for Modal Analysis.
- Fundamentals of Time Domain Modal Identification.
- Modal Identification Methods in the Frequency Domain.
- Parametric Identification Based on Pseudo-Tests.
- Updating of Analytical Models — Basic Procedures and Extensions.
- Model Quality Assessment and Model Updating.
- Damage Detection and Evaluation I.
- Damage Detection and Evaluation II Field Applications to Large Structures.
- Structural Modification.
- Damping: an Introduction to Viscoelastic Models.
- Description of Damping and Applications.
- Existence and Normalization of Complex Modes for Post Experimental Use in Modal Analysis.
- Active Control of Structures.
- Acoustic Modal Analysis.
- Neural Networks for Modal Analysis.
- Advanced Optimisation Methods for Model Updating.
- Modal Analysis for Rotating Machinery.
- Nonlinearity in Modal Analysis.