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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.
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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.
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