International Transactions on Computer Hardware and Electrical Engineering
Vol. 5, No. 4, Dec. 2019
Control Paradigms for Multi-Cluster Microgrids: Centralized or Decentralized Schemes | Miscellaneous
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a Thai Nguyen University of Technology, Thai Nguyen, Việt Nam
Dr. Minh Y Nguyen
Corresponding Author Affiliation: Thai Nguyen University of Technology, Thai Nguyen, Việt Nam Tel: 0966996399 E-mail: minhy@tnut.edu.vn Dr. Minh Y Nguyen's publications in ICSES
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This article has been retracted by International Computer Science and Engineering Society (ICSES) because of ethical misconduct, scientific distortion, or administrative error, and cannot be downloaded and used for any purpose based on the violation in ICSES Ethics in Publicationcall_made |
Retraction Note by the Editor-in-Chief
Highlights and Novelties
1- Introduce the multi-cluster structure of Microgrids with distributed generation, energy storage and aggregate loads.
2- Review the control paradigm for Microgrids which is classified into two approaches: centralized and decentralized schemes.
3- Discuss the challenges of Microgrid and distributed generation in controls, operations and applications.
Manuscript Abstract
Microgrid (MG) is a small-scale, medium- or low-voltage system with Distributed Generation (DG) and Energy Storage (ES) to supply power to local loads or communities. It can be built either in forms of AC, DC, hybrid or multiple electrical network considering the nature of the power generation of DG and loads [1-2]. Different forms of DG such as Photovoltaic (PV), Fuel Cell (FC), Microturbine (MT), etc. are adapted by power electronic interfaces which allows flexibility and controllability of MG in various operation modes. The control of MG is mainly designed based on the legacy of droop and load frequency controls, etc. but can be performed either in centralized or decentralized paradigm [3]. From the grid’s point of view, MG can be seen as a single controllable entity with better energy security, reliability, flexibility and efficiency [4]. To realize these advantages, many researches have been done with respect to the planning, configuration, operation and control of MG considering various market models.
Keywords
Microgrid distributed generation control schemes multi-cluster topology
Copyright and Licence
© Copyright was transferred to International Computer Science and Engineering Society (ICSES) by all the Authors. This manuscript is published in Open-Access manner based on the copyright licence of Creative Commons Attribution Non Commercial 4.0 International (CC BY-NC 4.0).
Cite this manuscript as
Minh Y Nguyen, "Control Paradigms for Multi-Cluster Microgrids: Centralized or Decentralized Schemes," International Transactions on Computer Hardware and Electrical Engineering, vol. 5, no. 4, pp. 1-3, Dec. 2019.
For External Scientific Databeses
--BibTex--
@article{al._298 title="Control Paradigms for Multi-Cluster Microgrids: Centralized or Decentralized Schemes", author="Minh Y Nguyen", journal="International Transactions on Computer Hardware and Electrical Engineering (ITCHEE)", volume="5", number="4", pages="1-3", year="2019", month="12", day="30", publisher= "International Computer Science and Engineering Society (ICSES)", doi="", url="http://www.i-cses.com/files/download.php?pID=298"}
--EndNote--
%0 Journal Article %T Control Paradigms for Multi-Cluster Microgrids: Centralized or Decentralized Schemes %A Minh Y Nguyen %J International Transactions on Computer Hardware and Electrical Engineering (ITCHEE) %V 5 %N 4 %P 1-3 %D 2019 %I International Computer Science and Engineering Society (ICSES) %U http://www.i-cses.com/files/download.php?pID=298 %8 2019-12-30 %R %@ 2467-294X
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