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Real-time FPGA implementation of direct MPC for power electronics
Bartolomeo Stellato
, Paul J. Goulart
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Chapter in Book/Report/Conference proceeding
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Conference contribution
10
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Dive into the research topics of 'Real-time FPGA implementation of direct MPC for power electronics'. Together they form a unique fingerprint.
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Keyphrases
FPGA Implementation
100%
Direct Model Predictive Control
100%
Power Electronics
100%
Long Prediction Horizon
66%
Computational Complexity
33%
Current Control
33%
Computational Burden
33%
Stage number
33%
Integer Optimization
33%
Time Measurement
33%
Switching Frequency
33%
Sampling Time
33%
Controller Performance
33%
Current Switching
33%
Adaptive Dynamic Programming
33%
Current Reference
33%
Model Predictive Control
33%
Current Distortion
33%
Variable Speed Drive System
33%
Voltage Source Converter
33%
Control Horizon
33%
Reference Tracking
33%
Integer Optimal Control Problem
33%
3-level Voltage Vector
33%
Engineering
Power Electronics
100%
Field Programmable Gate Arrays
100%
Direct Model
100%
Predictive Control Model
100%
Prediction Horizon
50%
Optimisation Problem
25%
Dynamic Programming
25%
Measurement Time
25%
Computational Complexity
25%
Optimal Control Problem
25%
Switching Frequency
25%
Sampling Time
25%
Drive System
25%
Current Reference
25%
Voltage Source Converter
25%
Variable Speed Drives
25%
Computer Science
Predictive Model
100%
Field Programmable Gate Array
100%
Optimization Problem
25%
Computational Complexity
25%
Dynamic Programming
25%
Optimal Control Problem
25%
Switching Frequency
25%