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Table of Contents
Part I: Introduction
Power and Renewable Energy Systems
Demand Side Management
Algebraic Modelling Languages
Structure of the Book
References
Part II: Mathematical Optimization Models
Mathematical Modelling and Solution Approaches
Energy Response Mathematical Models
Demand Response Mathematical Models
Part III: Algebraic Modelling Languages Research Applications
Dynamic Economic Emissions Dispatch
Generator Maintenance Scheduling
Combined Heat and Power (CHP) Dispatch
Hybrid Grid Connected Renewable Energy Sources (RES) Powered Microgrid with Demand Response
Optimal Power Flow (OPF)
Unit Commitment (UC)
Transmission Network Expansion Planning
Generation Capacity Expansion Planning
Distribution Network Expansion Planning
Part IV: Conclusion and Extensions
Further Research and Extensions.
Power and Renewable Energy Systems
Demand Side Management
Algebraic Modelling Languages
Structure of the Book
References
Part II: Mathematical Optimization Models
Mathematical Modelling and Solution Approaches
Energy Response Mathematical Models
Demand Response Mathematical Models
Part III: Algebraic Modelling Languages Research Applications
Dynamic Economic Emissions Dispatch
Generator Maintenance Scheduling
Combined Heat and Power (CHP) Dispatch
Hybrid Grid Connected Renewable Energy Sources (RES) Powered Microgrid with Demand Response
Optimal Power Flow (OPF)
Unit Commitment (UC)
Transmission Network Expansion Planning
Generation Capacity Expansion Planning
Distribution Network Expansion Planning
Part IV: Conclusion and Extensions
Further Research and Extensions.