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Rotor trim by a neural model-predictive auto-pilot
C. L. Bottasso
, L. Riviello
Politecnico di Milano
Research output
:
Contribution to conference
›
Paper
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peer-review
4
Scopus citations
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Dive into the research topics of 'Rotor trim by a neural model-predictive auto-pilot'. Together they form a unique fingerprint.
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Engineering
Rotors
100%
Neural Model
100%
Control Law
50%
Control Strategy
50%
Predictive Control Model
50%
System Response
50%
Nonlinear Model
50%
Optimal Control Problem
50%
Multibody Model
50%
Predictive Capability
50%
Rotorcraft
50%
Augmented System
50%
Reference Model
50%
Flight Condition
50%
Proportional Control
50%
Finite Element Analysis
50%
Tunnel
50%
Keyphrases
Neural Model
100%
Predictive Models
100%
Autopilot
100%
Rotor Trim
100%
Controller
20%
Control Law
20%
Control Strategy
20%
Control System
20%
Finite Element
20%
System Response
20%
Reduced Model
20%
Rotor
20%
Element-by-element
20%
Optimal Control Problem
20%
Flight Condition
20%
Multibody Model
20%
Wind Tunnel
20%
Predictive Ability
20%
Nonlinear Model Predictive Control
20%
Rotorcraft
20%
Aeromechanics
20%
Neural Element
20%
Adaptive Neural Network
20%
Proportional Control
20%
Adaptive Element
20%