Load frequency control and automatic generation control -- Bio-inspired optimization algorithms -- Literature survey -- Load frequency control of single area thermal power system with biogeography based optimization technique -- Investigated thermal power system -- Controller design and objective function -- Biogeography based optimization technique -- Results and analysis -- Conclusion -- Automatic generation control of multi-area interconnected thermal power system with SMES unit and ACO- PID controller -- Thermal power system under study -- Superconducting magnetic energy storage (SMES) unit -- PID controller design -- Ant colony optimization -- Simulation results and discussions -- Conclusion -- FPA optimized PID controller for performance improvement of multi-area interconnected thermal power system with non-linearities -- Investigated multi-area interconnected power system -- Controller design and objective function -- Flower pollination algorithm (FPA) -- Simulation result and analysis -- Conclusion -- Challenges and future perspectives.
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SUMMARY OR ABSTRACT
Text of Note
This book discusses in-depth role of optimization to optimize the controller parameters. Many comparative studies to evaluate the performance of different optimization techniques are included with different scenarios of the load frequency controller for single area as well as multi-area thermal power generating unit considering different algorithms--
ACQUISITION INFORMATION NOTE
Source for Acquisition/Subscription Address
Ingram Content Group
Stock Number
9780429943379
OTHER EDITION IN ANOTHER MEDIUM
International Standard Book Number
9781138598164
TOPICAL NAME USED AS SUBJECT
Cogeneration of electric power and heat.
Electric power systems-- Load dispatching-- Mathematics.
Interconnected electric utility systems-- Automation.
Mathematical optimization.
Nature-inspired algorithms.
PID controllers.
Cogeneration of electric power and heat.
Interconnected electric utility systems-- Automation.