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Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

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Nội dung chi tiết: Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

A thesis presented for the award ofDoctor of PhilosophyBYQuang An PhanSupervisors: Dr. Michael D. MurphyDr. Ted ScullyDepartment of Process. Energy an

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods nd Transport Engineering Cork Institute of Technology. Cork. Ireland438001 declare dial this diesis lias nol previously been submitted for a degree al

Cork Institute of Technology-. Ireland or any other university. I declare that the work contained in this thesis is my own.Quang An PhanDecember. 201 Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

9II would like to thank Cork Institute of Technology for the opportunity to conduct my PhD sincere gratitude to my supervisors. Dr Michael D.Murphy an

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

d Dr Ted Scully, for their guidance, knowledge and patience.I would like to thank my family for all of their support. From Cork Institute of Technolog

A thesis presented for the award ofDoctor of PhilosophyBYQuang An PhanSupervisors: Dr. Michael D. MurphyDr. Ted ScullyDepartment of Process. Energy an

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods nology who have helped me throughout the years.IIDECLARATION.................................................................iACKNOWLEDGEMENTS........

...................................................11Contents..................................................................TĨTList of Figures..... Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

......................................................VIIList of Tables.............................................................XVList of Publicat

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

ions.....................................................XVIINomenclature..............................................................xvm1.1Abbreviat

A thesis presented for the award ofDoctor of PhilosophyBYQuang An PhanSupervisors: Dr. Michael D. MurphyDr. Ted ScullyDepartment of Process. Energy an

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods ...........................................................XXIChapter 1Introduction......................................................11.1Backgroun

d to research...............................................1.................11.1.2Microgrids and energy management.................................. Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

51.2Problem statement....................................................61.3Research objectives..................................................71.4

Control of energy storage utilisation for a building integrated microgrid using multi objective metaheuristic optimisation methods

Research methodology.................................................7Chapter 2- Literature Review...............................................8

A thesis presented for the award ofDoctor of PhilosophyBYQuang An PhanSupervisors: Dr. Michael D. MurphyDr. Ted ScullyDepartment of Process. Energy an

A thesis presented for the award ofDoctor of PhilosophyBYQuang An PhanSupervisors: Dr. Michael D. MurphyDr. Ted ScullyDepartment of Process. Energy an

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