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Application of Fast Frequency Response in High-RES Penetrated Grid
KTH, School of Electrical Engineering and Computer Science (EECS).
KTH, School of Electrical Engineering and Computer Science (EECS).
2024 (English)Independent thesis Basic level (degree of Bachelor), 10 credits / 15 HE creditsStudent thesis
Abstract [en]

Wind power is predicted to be the largest power source in the electricity system bymid-century. Due to the intermittent behavior of wind, this will place demands onreserves and flexibility. How to achieve this flexibility and how to make the best useof reserves will therefore play a major role in the stability of the future power system.In this report, we have investigated the ability of Fast Frequency Response (FFR) tomaintain system frequency over 49.6 Hz and back to 49.8 Hz after 25 secondsfollowing an under-frequency event, given a power system with a high share ofrenewable power. Results suggests that it is possible to stabilize the system given adisturbance equivalent to 577 MW. Results also conclude that systems with loadsthat are frequency dependent require 150 MW less from the reserves to mitigate theeffects of the disturbance, compared to systems that do not have frequencydependent loads.

Abstract [sv]

Vindkraft förutspås vara det största kraftslaget i elsystemet i mitten av århundradet.På grund av vindens oregelbundenhet kommer detta ställa krav på reserver ochflexibilitet. Hur vi ska uppnå denna flexibilitet och hur vi använder reserverna påbästa sätt kommer därför spela en stor roll i hur stabiliteten upprätthålls i det framtidakraftsystemet. I den här rapporten har vi undersökt förmågan hossnabbfrekvensreserv (FFR) at bibehålla frekvensen över 49.6 Hz och återställa dentill 49.8 Hz inom 25 sekunder från en störning. Resultaten visar att det är möjligt attstabilisera ett kraftsystem med hög andel förnybar kraft givet en störningmotsvarande 577 MW. Resultaten visar också att system med frekvensberoendelaster kräver 150 MW mindre effekt från reserverna för att mildra effekterna avstörningen, jämfört med system som inte har frekvensberoende laster.

Place, publisher, year, edition, pages
2024. , p. 169-177
Series
TRITA-EECS-EX ; 2024:147
National Category
Electrical Engineering, Electronic Engineering, Information Engineering
Identifiers
URN: urn:nbn:se:kth:diva-358434OAI: oai:DiVA.org:kth-358434DiVA, id: diva2:1928551
Supervisors
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Kandidatexamensarbete i Elektroteknik 2024Available from: 2025-01-17 Created: 2025-01-17

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CiteExportLink to record
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Citation style
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