Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid

The power system responsiveness may be improved by determining the ideal size of each component and performing a reliability analysis. This study evaluated the design and optimization of an islanded hybrid microgrid system with multiple dispatch algorithms. As the penetration of renewable power incr...

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Main Authors: Sk. A. Shezan, Kazi Nazmul Hasan, Akhlaqur Rahman, Manoj Datta, Ujjwal Datta
Format: Article
Language:English
Published: MDPI AG 2021-11-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/21/7217
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author Sk. A. Shezan
Kazi Nazmul Hasan
Akhlaqur Rahman
Manoj Datta
Ujjwal Datta
author_facet Sk. A. Shezan
Kazi Nazmul Hasan
Akhlaqur Rahman
Manoj Datta
Ujjwal Datta
author_sort Sk. A. Shezan
collection DOAJ
description The power system responsiveness may be improved by determining the ideal size of each component and performing a reliability analysis. This study evaluated the design and optimization of an islanded hybrid microgrid system with multiple dispatch algorithms. As the penetration of renewable power increases in microgrids, the importance and influence of efficient design and operation of islanded hybrid microgrids grow. The Kangaroo Island in South Australia served as the study’s test microgrid. The sizing of the Kangaroo Island hybrid microgrid system, which includes solar PV, wind, a diesel engine, and battery storage, was adjusted for four dispatch schemes. In this study, the following dispatch strategies were used: (i) load following, (ii) cycle charging, (iii) generator order, and (iv) combination dispatch. The CO<sub>2</sub> emissions, net present cost (NPC), and energy cost of the islanded microgrid were all optimized (COE). The HOMER microgrid software platform was used to build all four dispatch algorithms, and DIgSILENT PowerFactory was used to analyze the power system’s responsiveness and dependability. The findings give a framework for estimating the generation mix and required resources for an islanded microgrid’s optimal functioning under various dispatch scenarios. According to the simulation results, load following is the optimum dispatch technique for an islanded hybrid microgrid that achieves the lowest cost of energy (COE) and net present cost (NPC).
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spelling doaj.art-06d3948791b241758c90a262c13b968b2023-11-22T20:45:51ZengMDPI AGEnergies1996-10732021-11-011421721710.3390/en14217217Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a MicrogridSk. A. Shezan0Kazi Nazmul Hasan1Akhlaqur Rahman2Manoj Datta3Ujjwal Datta4School of Electrical Engineering and Industrial Automation, Engineering Institute of Technology, Melbourne, VIC 3000, AustraliaSchool of Engineering, RMIT University, Melbourne 3000, AustraliaSchool of Electrical Engineering and Industrial Automation, Engineering Institute of Technology, Melbourne, VIC 3000, AustraliaSchool of Engineering, RMIT University, Melbourne 3000, AustraliaCollege of Engineering and Science, Victoria University, P.O. Box 14428, Melbourne 8001, AustraliaThe power system responsiveness may be improved by determining the ideal size of each component and performing a reliability analysis. This study evaluated the design and optimization of an islanded hybrid microgrid system with multiple dispatch algorithms. As the penetration of renewable power increases in microgrids, the importance and influence of efficient design and operation of islanded hybrid microgrids grow. The Kangaroo Island in South Australia served as the study’s test microgrid. The sizing of the Kangaroo Island hybrid microgrid system, which includes solar PV, wind, a diesel engine, and battery storage, was adjusted for four dispatch schemes. In this study, the following dispatch strategies were used: (i) load following, (ii) cycle charging, (iii) generator order, and (iv) combination dispatch. The CO<sub>2</sub> emissions, net present cost (NPC), and energy cost of the islanded microgrid were all optimized (COE). The HOMER microgrid software platform was used to build all four dispatch algorithms, and DIgSILENT PowerFactory was used to analyze the power system’s responsiveness and dependability. The findings give a framework for estimating the generation mix and required resources for an islanded microgrid’s optimal functioning under various dispatch scenarios. According to the simulation results, load following is the optimum dispatch technique for an islanded hybrid microgrid that achieves the lowest cost of energy (COE) and net present cost (NPC).https://www.mdpi.com/1996-1073/14/21/7217renewable energysolar energywind energyislanded microgridoptimization
spellingShingle Sk. A. Shezan
Kazi Nazmul Hasan
Akhlaqur Rahman
Manoj Datta
Ujjwal Datta
Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid
Energies
renewable energy
solar energy
wind energy
islanded microgrid
optimization
title Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid
title_full Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid
title_fullStr Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid
title_full_unstemmed Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid
title_short Selection of Appropriate Dispatch Strategies for Effective Planning and Operation of a Microgrid
title_sort selection of appropriate dispatch strategies for effective planning and operation of a microgrid
topic renewable energy
solar energy
wind energy
islanded microgrid
optimization
url https://www.mdpi.com/1996-1073/14/21/7217
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