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Real time hybrid control system for the advanced static VAr compensator
M. E. A. Farrag
*
, G. A. Putrus
, L. Ran
*
Corresponding author for this work
Research output
:
Chapter in Book/Report/Conference proceeding
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Keyphrases
Static Var Compensator
100%
Hybrid Control Systems
100%
Response Speed
60%
Pulse Width Modulation
60%
Hybrid Controller
40%
Short Circuit Level
40%
Controller
20%
Flexible AC Transmission System Devices
20%
Support System
20%
Output Voltage
20%
Switching Mechanism
20%
Fuzzy Logic
20%
System Fault
20%
Systems Change
20%
Real-time Controller
20%
Fault Level
20%
Reactive Power
20%
Switching Function
20%
Power Oscillation
20%
System Voltage
20%
Conventional PI Controller
20%
Damping Energy
20%
Modulation Parameters
20%
DS1103
20%
Multi-Options
20%
Engineering
Control System
100%
Pulse Width Modulation
100%
Hybrid Time
100%
Flexible AC Transmission Systems
33%
Support System
33%
Reactive Power
33%
Output Voltage
33%
Fault Level
33%
Switching Function
33%