Transformation of Microgrid to Virtual Power Plant – A Comprehensive Review

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Abstract

To provide continuity of balancing demand and generation, renewable sources will be more active than today in near future due to the tendency of massive investment on renewable energy sources (RESs) by countries. However, due to the uncertain and intermittent nature of RESs, RESs would create problems on power system operations such as power quality, efficiency, stability and reliability. Owing to having problems with RESs integration, virtual power plant (VPP) has introduced to make this integration smooth without compromising the grid stability and reliability along with offering many other techno-economic benefits. This study reviews structures, types, architecture and operations of VPP along with the status of present implementations worldwide. The types of VPP are introduced in details with the optimisation algorithm used with each type. In addition, VPP is linked with the most of the components in power systems such as distributed generation, active prosumers, transmission system operator and distribution system operator, grid services such as fault ride through, reactive power control as well as with the help of technology such as communications, control and optimisations. This study gives a comprehensive outline of transforming microgrid to VPP that is useful for researchers, consumers, prosumers and utility operators.

Description

Kamwa, Innocent/0000-0002-3568-3716; Onen, Ahmet/0000-0001-7086-5112; Muyeen, S M/0000-0003-4955-6889

Keywords

Reactive Power Control, Distributed Power Generation, Power Supply Quality, Power Grids, Renewable Energy Sources, Power System Operations, Power Quality, Virtual Power Plant, VPP, Power Systems, Distributed Generation, Transmission System Operator, Distribution System Operator, Power Control, Renewable Sources

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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OpenCitations Citation Count
123

Volume

13

Issue

11

Start Page

1994

End Page

2005
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