Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries

Abstract This paper proposes a novel energy and reserve scheduling model for power systems with high penetration of wind turbines (WTs). The objective of the proposed model is to minimize the total operation cost of the system while static and dynamic security is guaranteed by preserving the frequen...

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Main Authors: Maryam Mohiti, Mohammadreza Mazidi, Mostafa Kermani, Davoud Abootorabi Zarchi
Format: Article
Language:English
Published: Wiley 2023-04-01
Series:IET Generation, Transmission & Distribution
Online Access:https://doi.org/10.1049/gtd2.12592
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author Maryam Mohiti
Mohammadreza Mazidi
Mostafa Kermani
Davoud Abootorabi Zarchi
author_facet Maryam Mohiti
Mohammadreza Mazidi
Mostafa Kermani
Davoud Abootorabi Zarchi
author_sort Maryam Mohiti
collection DOAJ
description Abstract This paper proposes a novel energy and reserve scheduling model for power systems with high penetration of wind turbines (WTs). The objective of the proposed model is to minimize the total operation cost of the system while static and dynamic security is guaranteed by preserving the frequency nadir, RoCoF, and quasi‐steady‐state frequency in the predefined range. Likewise, a supervisory, control, and data acquisition (SCADA) system is developed which allows Vanadium Redox Flow Batteries (VRFBs) to continuously communicate and participate in the primary frequency response. To cope with the uncertainties, adaptive information gap decision theory is used that ensures a target operating cost for the risk‐averse operator of the power system. The proposed scheduling model is applied on a modified IEEE 39 bus test system to verify the impacts of the fast reserve provided by the VRFBs in the dynamic frequency security enhancement of the power system with high penetration of WTs.
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spelling doaj.art-170ecd4580b4498ba0b8d62ee16af6122024-11-20T10:45:46ZengWileyIET Generation, Transmission & Distribution1751-86871751-86952023-04-011781780179810.1049/gtd2.12592Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteriesMaryam Mohiti0Mohammadreza Mazidi1Mostafa Kermani2Davoud Abootorabi Zarchi3Department of Electrical Engineering Chalmers University of Technology Göteborg SwedenDepartment of Electrical Engineering Chalmers University of Technology Göteborg SwedenDepartment of Electrical Engineering Chalmers University of Technology Göteborg SwedenDepartment of Electrical Engineering Yazd University Yazd IranAbstract This paper proposes a novel energy and reserve scheduling model for power systems with high penetration of wind turbines (WTs). The objective of the proposed model is to minimize the total operation cost of the system while static and dynamic security is guaranteed by preserving the frequency nadir, RoCoF, and quasi‐steady‐state frequency in the predefined range. Likewise, a supervisory, control, and data acquisition (SCADA) system is developed which allows Vanadium Redox Flow Batteries (VRFBs) to continuously communicate and participate in the primary frequency response. To cope with the uncertainties, adaptive information gap decision theory is used that ensures a target operating cost for the risk‐averse operator of the power system. The proposed scheduling model is applied on a modified IEEE 39 bus test system to verify the impacts of the fast reserve provided by the VRFBs in the dynamic frequency security enhancement of the power system with high penetration of WTs.https://doi.org/10.1049/gtd2.12592
spellingShingle Maryam Mohiti
Mohammadreza Mazidi
Mostafa Kermani
Davoud Abootorabi Zarchi
Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries
IET Generation, Transmission & Distribution
title Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries
title_full Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries
title_fullStr Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries
title_full_unstemmed Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries
title_short Frequency‐constrained energy and reserve scheduling in wind incorporated low‐inertia power systems considering vanadium flow redox batteries
title_sort frequency constrained energy and reserve scheduling in wind incorporated low inertia power systems considering vanadium flow redox batteries
url https://doi.org/10.1049/gtd2.12592
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AT mohammadrezamazidi frequencyconstrainedenergyandreserveschedulinginwindincorporatedlowinertiapowersystemsconsideringvanadiumflowredoxbatteries
AT mostafakermani frequencyconstrainedenergyandreserveschedulinginwindincorporatedlowinertiapowersystemsconsideringvanadiumflowredoxbatteries
AT davoudabootorabizarchi frequencyconstrainedenergyandreserveschedulinginwindincorporatedlowinertiapowersystemsconsideringvanadiumflowredoxbatteries