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Rotor
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Intelligent Control
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Machine Dynamics
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Resonant Vibration
100%
Experimental Validation
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Control Method
50%
Actuation
50%
Control Algorithm
50%
Motivation
50%
Control Solution
50%
Operating Conditions
50%
High Power
50%
Design Aspects
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Ergonomics
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Active Systems
50%
Customer Focus
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Scientific Community
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Rotating Machines
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Technical Perspective
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Identification Method
50%
Work Process
50%
Machining Operations
50%
Process Quality
50%
System Identification
50%
Active Vibration Control
50%
Algorithm Implementation
50%
Measurement Problem
50%
Problem Identification
50%
Vibration Problems
50%
Synthetic Control Method
50%
Smart Machines
50%
Control Machines
50%
Engineering
Rotors
100%
Machine Dynamics
100%
Design Aspect
50%
Active System
50%
Active Vibration Control
50%
Control Synthesis
50%
Vibration Problem
50%
Ergonomics
50%
Main Result
50%
Actuation
50%
Control Algorithm
50%
INIS
control
100%
resonance
100%
rotors
100%
solutions
33%
dynamics
33%
algorithms
33%
durability
16%
comparative evaluations
16%
implementation
16%
design
16%
operation
16%
power
16%
industry
16%
communities
16%
validation
16%
synthesis
16%
ergonomics
16%
identification systems
16%
Physics
Active Vibration Control
100%
Vibration Problem
100%
System Identification
100%