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  5. Neutral Current Optimization Control for Smart Transformer-fed Distribution System under Unbalanced Loads
 
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Neutral Current Optimization Control for Smart Transformer-fed Distribution System under Unbalanced Loads

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Download NCR_final version.pdf1.2 MB
Author(s)
Chen, Junru 
Zhu, Rongwu 
Ibrahim, Ismail 
O'Donnell, Terence 
Liserre, Marco 
Uri
http://hdl.handle.net/10197/12444
Date Issued
11 May 2020
Date Available
20T17:19:30Z August 2021
Abstract
EU In a 3-phase 4-wire LV distribution system, unbalanced loads lead to neutral current (NC) looping resulting in increase of power losses and variation of neutral potential. Compared to the conventional power transformer, Smart Transformer (ST) has strict current limitations to avoid overcurrent. However, its advantages on the downstream LV grid voltage regulation can provides the capability to regulate excessive NC. This paper proposes a closed-loop NC optimization control in order to, on the one hand, minimize the NC current in the normal operation satisfying the standard EN 50160 requirement, on the other hand, suppress the NC current in extreme cases to avoid the overcurrent damage of the ST. The proposed control strategies are validated by experimental tests via the hardware-in-the-loop setup and a case study based on a 350kVA, 10kV/400V, ST-fed distribution network under unbalanced loading profile according to the 3-phase 4-wire distribution grid in Manchester area. The results clearly prove the effectiveness and flexibility of the proposed NC optimization control strategies on the NC suppression and minimization.
Sponsorship
European Research Council
Science Foundation Ireland
Type of Material
Journal Article
Publisher
IEEE
Journal
IEEE Journal of Emerging and Selected Topics in Power Electronics
Volume
9
Issue
2
Start Page
1696
End Page
1707
Copyright (Published Version)
2020 IEEE
Keywords
  • Voltage control

  • Inverters

  • Voltage measurement

  • Power transformers

  • Minimization

  • Standards

DOI
10.1109/JESTPE.2020.2993927
Language
English
Status of Item
Peer reviewed
ISSN
2168-6777
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
Owning collection
Electrical and Electronic Engineering Research Collection
Scopus© citations
7
Acquisition Date
Jan 28, 2023
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Jan 28, 2023
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