Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination

Unlocking flexibility assets from the consumer side and developing a well-functioning flexibility market (FM) is crucial to address the oncoming challenges in the EU power grid. In these conditions, the coordination between distribution system operators (DSOs) and transmission system operators (TSOs...

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Main Authors: Damian Sieraszewsk, Ole Kjarland Olsen, Dmytro Ivanko, Irina Oleinikova, Hossein Farahmand
Format: Article
Language:English
Published: IEEE 2023-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10107373/
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author Damian Sieraszewsk
Ole Kjarland Olsen
Dmytro Ivanko
Irina Oleinikova
Hossein Farahmand
author_facet Damian Sieraszewsk
Ole Kjarland Olsen
Dmytro Ivanko
Irina Oleinikova
Hossein Farahmand
author_sort Damian Sieraszewsk
collection DOAJ
description Unlocking flexibility assets from the consumer side and developing a well-functioning flexibility market (FM) is crucial to address the oncoming challenges in the EU power grid. In these conditions, the coordination between distribution system operators (DSOs) and transmission system operators (TSOs) remains a critical task for optimally harvesting flexibility services. For that reason, this paper focuses on investigating the instruments for FM market design and modelling, which ensures proper TSO-DSO coordination. First, the paper introduces the scheme and strategy for FM operation and coordination in Norwegian conditions. After, the multi-period hybrid AC/DC-OPF model for FM modelling is presented. This model combines optimal power flow (OPF) methods consisting of a second-order cone (SOC)-ACOPF, which is applied for the distribution grid and DC-OPF for the transmission grid. The model was validated and tested based on grid configurations from existing projects, where it showed high accuracy and applicability. Finally, an example of solving grid challenges in a distribution grid with the help of flexibility services was presented. The outcomes of this paper propose valuable tools for establishing an effective flexibility exchange mechanism between TSO and DSO.
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spelling doaj.art-cb0376d2eb334b2f9a51a1148919de452023-04-27T23:00:39ZengIEEEIEEE Access2169-35362023-01-0111400934010610.1109/ACCESS.2023.326942310107373Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO CoordinationDamian Sieraszewsk0Ole Kjarland Olsen1Dmytro Ivanko2https://orcid.org/0000-0003-2442-8637Irina Oleinikova3Hossein Farahmand4https://orcid.org/0000-0003-1125-8296Department of Electric Power Engineering, Norwegian University of Science and Technology, Trondheim, NorwayDepartment of Electric Power Engineering, Norwegian University of Science and Technology, Trondheim, NorwayDepartment of Electric Power Engineering, Norwegian University of Science and Technology, Trondheim, NorwayDepartment of Electric Power Engineering, Norwegian University of Science and Technology, Trondheim, NorwayDepartment of Electric Power Engineering, Norwegian University of Science and Technology, Trondheim, NorwayUnlocking flexibility assets from the consumer side and developing a well-functioning flexibility market (FM) is crucial to address the oncoming challenges in the EU power grid. In these conditions, the coordination between distribution system operators (DSOs) and transmission system operators (TSOs) remains a critical task for optimally harvesting flexibility services. For that reason, this paper focuses on investigating the instruments for FM market design and modelling, which ensures proper TSO-DSO coordination. First, the paper introduces the scheme and strategy for FM operation and coordination in Norwegian conditions. After, the multi-period hybrid AC/DC-OPF model for FM modelling is presented. This model combines optimal power flow (OPF) methods consisting of a second-order cone (SOC)-ACOPF, which is applied for the distribution grid and DC-OPF for the transmission grid. The model was validated and tested based on grid configurations from existing projects, where it showed high accuracy and applicability. Finally, an example of solving grid challenges in a distribution grid with the help of flexibility services was presented. The outcomes of this paper propose valuable tools for establishing an effective flexibility exchange mechanism between TSO and DSO.https://ieeexplore.ieee.org/document/10107373/TSO-DSO interactionpower flow modelingflexibility marketdistributed energy resourcesdistributed flexibility assets
spellingShingle Damian Sieraszewsk
Ole Kjarland Olsen
Dmytro Ivanko
Irina Oleinikova
Hossein Farahmand
Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination
IEEE Access
TSO-DSO interaction
power flow modeling
flexibility market
distributed energy resources
distributed flexibility assets
title Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination
title_full Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination
title_fullStr Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination
title_full_unstemmed Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination
title_short Multi-Period Hybrid AC/DC-OPF Model for Flexibility Market Clearing With Seamless TSO-DSO Coordination
title_sort multi period hybrid ac dc opf model for flexibility market clearing with seamless tso dso coordination
topic TSO-DSO interaction
power flow modeling
flexibility market
distributed energy resources
distributed flexibility assets
url https://ieeexplore.ieee.org/document/10107373/
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