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Hardware in the Loop Emulation of Ship Propulsion Systems at Model Scale
L.J.G. Huijgens
Ship Design, Production and Operations
Research output
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Thesis
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Dissertation (TU Delft)
193
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Dive into the research topics of 'Hardware in the Loop Emulation of Ship Propulsion Systems at Model Scale'. Together they form a unique fingerprint.
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Engineering
Accident Prevention
20%
Bridges
20%
Combines
20%
Computational Fluid Dynamics
20%
Compute
20%
Computer
20%
Computer Simulation
20%
Design
20%
Design Choice
20%
Design Process
60%
Development
20%
Diesel Engine
20%
Electric Motor
20%
Energy Conservation
20%
Energy Efficiency
20%
Engine
40%
Engine Power
20%
Environment
60%
Environmental Impact
20%
Environmental Regulations
20%
Experiments
100%
Friction
20%
Fuel Cell Technology
20%
Full Scale
40%
Gearbox
20%
Hydrodynamics
40%
Machinery
40%
Maneuverability
60%
Model Basin
20%
Model Experiment
20%
Model Scale
100%
Numerical Methods
40%
Performance
20%
Periodic Time
20%
Prediction
60%
Profitability
20%
Propeller Cavitation
20%
Propulsion System
100%
Reduce Emission
20%
Reduction
20%
Requirement
40%
Safety Performance
20%
Scale Effect
20%
Scale Model
60%
Ship Design
60%
Ship Models
60%
Ship Propulsion
100%
Ships
80%
Test Setup
20%
INIS
bridges
7%
carbon dioxide
7%
cavitation
7%
compliance
7%
computational fluid dynamics
7%
computerized simulation
7%
computers
7%
constraints
7%
control
7%
cost
7%
design
46%
diesel engines
7%
dynamics
30%
electric motors
7%
emission
7%
energy efficiency
7%
engines
23%
environment
23%
environmental impacts
7%
friction
7%
fuel cells
7%
hydrodynamics
15%
increasing
15%
interactions
15%
machinery
15%
models (scale)
100%
performance
15%
pollution regulations
7%
power
15%
power systems
7%
prediction
23%
propulsion
23%
propulsion systems
100%
reduction
7%
safety
15%
scale models
23%
seas
15%
ships
100%
simulation
15%
sprays
7%
Keyphrases
Hardware-in-the-loop Simulation
100%
Hardware-in-the-loop Test
66%
Novel Power System
33%
Novel Propulsion Systems
33%
Physical Scale Model
33%
Propulsion Engine
33%
Rough Seas
33%
Spray Forming
33%