Port-Hamiltonian framework in power systems domain: A survey

Many nonlinear physical phenomena, including various power systems, can be modeled, analyzed, and controlled using the framework of port-Hamiltonian systems. Moreover, this framework can offer more advanced methods to cope with modern challenges in the energy sector. This paper presents a comprehens...

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Main Authors: Maris Tõnso, Vadim Kaparin, Juri Belikov
Format: Article
Language:English
Published: Elsevier 2023-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S235248472301315X
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author Maris Tõnso
Vadim Kaparin
Juri Belikov
author_facet Maris Tõnso
Vadim Kaparin
Juri Belikov
author_sort Maris Tõnso
collection DOAJ
description Many nonlinear physical phenomena, including various power systems, can be modeled, analyzed, and controlled using the framework of port-Hamiltonian systems. Moreover, this framework can offer more advanced methods to cope with modern challenges in the energy sector. This paper presents a comprehensive and systematic survey of recent studies on the application of the port-Hamiltonian approach to power systems. Over a hundred of relevant research works are reviewed to show the vast capabilities of this approach and point out its possible gaps. The works are classified according to the type of power systems under study. The analysis of the articles shows that the vast majority of them are dedicated to controller design, a much smaller part of the works deals with the modeling and stability issues, and only a few consider the problem of optimal control. Moreover, the paper discusses current challenges and future trends in this direction.
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spelling doaj.art-895a80240f3542bbb365ed988742f0cb2023-12-23T05:21:41ZengElsevierEnergy Reports2352-48472023-11-011029182930Port-Hamiltonian framework in power systems domain: A surveyMaris Tõnso0Vadim Kaparin1Juri Belikov2Department of Software Science, Tallinn University of Technology, Akadeemia tee 21B, Tallinn, 12618, EstoniaCorresponding author.; Department of Software Science, Tallinn University of Technology, Akadeemia tee 21B, Tallinn, 12618, EstoniaDepartment of Software Science, Tallinn University of Technology, Akadeemia tee 21B, Tallinn, 12618, EstoniaMany nonlinear physical phenomena, including various power systems, can be modeled, analyzed, and controlled using the framework of port-Hamiltonian systems. Moreover, this framework can offer more advanced methods to cope with modern challenges in the energy sector. This paper presents a comprehensive and systematic survey of recent studies on the application of the port-Hamiltonian approach to power systems. Over a hundred of relevant research works are reviewed to show the vast capabilities of this approach and point out its possible gaps. The works are classified according to the type of power systems under study. The analysis of the articles shows that the vast majority of them are dedicated to controller design, a much smaller part of the works deals with the modeling and stability issues, and only a few consider the problem of optimal control. Moreover, the paper discusses current challenges and future trends in this direction.http://www.sciencedirect.com/science/article/pii/S235248472301315XPort-Hamiltonian systemsPower systemsMicrogridsPassivity based controlInterconnection and damping assignment
spellingShingle Maris Tõnso
Vadim Kaparin
Juri Belikov
Port-Hamiltonian framework in power systems domain: A survey
Energy Reports
Port-Hamiltonian systems
Power systems
Microgrids
Passivity based control
Interconnection and damping assignment
title Port-Hamiltonian framework in power systems domain: A survey
title_full Port-Hamiltonian framework in power systems domain: A survey
title_fullStr Port-Hamiltonian framework in power systems domain: A survey
title_full_unstemmed Port-Hamiltonian framework in power systems domain: A survey
title_short Port-Hamiltonian framework in power systems domain: A survey
title_sort port hamiltonian framework in power systems domain a survey
topic Port-Hamiltonian systems
Power systems
Microgrids
Passivity based control
Interconnection and damping assignment
url http://www.sciencedirect.com/science/article/pii/S235248472301315X
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AT vadimkaparin porthamiltonianframeworkinpowersystemsdomainasurvey
AT juribelikov porthamiltonianframeworkinpowersystemsdomainasurvey