LAPSE:2023.25475
Published Article

LAPSE:2023.25475
Power Flow Management by Active Nodes: A Case Study in Real Operating Conditions
March 28, 2023
Abstract
The role of distributor system operators is experiencing a gradual but relevant change to include enhanced ancillary and energy dispatch services needed to manage the increased power provided by intermittent distributed generations in medium voltage networks. In this context, the paper proposes the insertion, in strategic points of the network, of specific power electronic systems, denoted as active nodes, which permit the remote controllability of the active and reactive power flow. Such capabilities, as a further benefit, enable the distributor system operators to provide ancillary network services without requiring any procurement with distributed generation systems owners. In particular, the paper highlights the benefits of active nodes, demonstrating their capabilities in reducing the inverse power flow issues from medium to high voltage lines focusing on a network cluster including renewable energy resources. As a further novelty, this study has accounted for a real cluster operated by the Italian distributor system operator Areti. A specific simulation model of the electrical lines has been implemented in DigSilent PowerFactory (DIgSILENT GmbH−Germany) software using real operating data obtained during a 1-year measurement campaign. A detailed cost-benefit analysis has been provided, accounting for different load flow scenarios. The results have demonstrated that the inclusion of active nodes can significantly reduce the drawbacks related to the reverse power flow.
The role of distributor system operators is experiencing a gradual but relevant change to include enhanced ancillary and energy dispatch services needed to manage the increased power provided by intermittent distributed generations in medium voltage networks. In this context, the paper proposes the insertion, in strategic points of the network, of specific power electronic systems, denoted as active nodes, which permit the remote controllability of the active and reactive power flow. Such capabilities, as a further benefit, enable the distributor system operators to provide ancillary network services without requiring any procurement with distributed generation systems owners. In particular, the paper highlights the benefits of active nodes, demonstrating their capabilities in reducing the inverse power flow issues from medium to high voltage lines focusing on a network cluster including renewable energy resources. As a further novelty, this study has accounted for a real cluster operated by the Italian distributor system operator Areti. A specific simulation model of the electrical lines has been implemented in DigSilent PowerFactory (DIgSILENT GmbH−Germany) software using real operating data obtained during a 1-year measurement campaign. A detailed cost-benefit analysis has been provided, accounting for different load flow scenarios. The results have demonstrated that the inclusion of active nodes can significantly reduce the drawbacks related to the reverse power flow.
Record ID
Keywords
active node, internet of energy, power flow control, smart grid, solid-state transformer
Subject
Suggested Citation
Bifaretti S, Bonaiuto V, Pipolo S, Terlizzi C, Zanchetta P, Gallinelli F, Alessandroni S. Power Flow Management by Active Nodes: A Case Study in Real Operating Conditions. (2023). LAPSE:2023.25475
Author Affiliations
Bifaretti S: Department of Industrial Engineering, Tor Vergata University of Rome, 00133 Rome, Italy [ORCID]
Bonaiuto V: Department of Industrial Engineering, Tor Vergata University of Rome, 00133 Rome, Italy [ORCID]
Pipolo S: Department of Electrical and Electronic Engineering, University of Nottingham, Nottingham NG7 2RD, UK
Terlizzi C: Department of Industrial Engineering, Tor Vergata University of Rome, 00133 Rome, Italy [ORCID]
Zanchetta P: Department of Electrical and Electronic Engineering, University of Nottingham, Nottingham NG7 2RD, UK; Department of Electrical, Computer and Biomedical Engineering, University of Pavia, 27100 Pavia, Italy
Gallinelli F: Areti S.p.A., Distributor System Operator, 00154 Rome, Italy
Alessandroni S: Areti S.p.A., Distributor System Operator, 00154 Rome, Italy
Bonaiuto V: Department of Industrial Engineering, Tor Vergata University of Rome, 00133 Rome, Italy [ORCID]
Pipolo S: Department of Electrical and Electronic Engineering, University of Nottingham, Nottingham NG7 2RD, UK
Terlizzi C: Department of Industrial Engineering, Tor Vergata University of Rome, 00133 Rome, Italy [ORCID]
Zanchetta P: Department of Electrical and Electronic Engineering, University of Nottingham, Nottingham NG7 2RD, UK; Department of Electrical, Computer and Biomedical Engineering, University of Pavia, 27100 Pavia, Italy
Gallinelli F: Areti S.p.A., Distributor System Operator, 00154 Rome, Italy
Alessandroni S: Areti S.p.A., Distributor System Operator, 00154 Rome, Italy
Journal Name
Energies
Volume
14
Issue
15
First Page
4519
Year
2021
Publication Date
2021-07-27
ISSN
1996-1073
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Original Submission
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PII: en14154519, Publication Type: Journal Article
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LAPSE:2023.25475
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https://doi.org/10.3390/en14154519
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Mar 28, 2023
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