Volker Scheffer, M.Sc.

Volker Scheffer, M.Sc.

Adresse
Technische Universität Hamburg
Elektrische Energietechnik
Harburger Schloßstraße 20
21079 Hamburg
Büro
Gebäude HS20
Raum 4.13a
Telefon
Tel: +49 40 42878 2240
Fax: +49 40 42878 2382
E-Mail
volker.scheffer(at)tuhh.de
Sprechzeiten
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Veröffentlichungen

[131418]
Title: Ensuring the Reliability of Control Reserve from Renewable Energies ETG-Fachbericht 160 "Netzregelung und Systemführung"
Written by: Becker, C.; Möws, S.; Scheffer, V.
in: September 2019 2019
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Address: Berlin
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[BibTex]

Note:

Abstract: In the future, wind and solar power plants must also be able to provide control reserve, whereby the challenges of participating in the control reserve market particularly consist in maintaining the high level of reliability required for the provision. This paper presents a methodology for the calculation of the maximum offerable amount of control reserve which can be provided by a spatially distributed pool of wind and solar power plants. This is done under consideration of the adherence to a given reliability level. A probabilistic approach is chosen, which models the stochastic dependencies of the forecast errors with the copula-theory. The methodology is compared with alternative calculation methods on the basis of an exemplary pool consisting of 32 plants. Finally, the amount of offerable control reserve is examined with a variation of the reliability target.

Betreute Abschlussarbeiten (abgeschlossen)

[131418]
Title: Ensuring the Reliability of Control Reserve from Renewable Energies ETG-Fachbericht 160 "Netzregelung und Systemführung"
Written by: Becker, C.; Möws, S.; Scheffer, V.
in: September 2019 2019
Volume: Number:
on pages:
Chapter:
Editor:
Publisher:
Series:
Address: Berlin
Edition:
ISBN:
how published:
Organization:
School:
Institution:
Type:
DOI:
URL:
ARXIVID:
PMID:

[BibTex]

Note:

Abstract: In the future, wind and solar power plants must also be able to provide control reserve, whereby the challenges of participating in the control reserve market particularly consist in maintaining the high level of reliability required for the provision. This paper presents a methodology for the calculation of the maximum offerable amount of control reserve which can be provided by a spatially distributed pool of wind and solar power plants. This is done under consideration of the adherence to a given reliability level. A probabilistic approach is chosen, which models the stochastic dependencies of the forecast errors with the copula-theory. The methodology is compared with alternative calculation methods on the basis of an exemplary pool consisting of 32 plants. Finally, the amount of offerable control reserve is examined with a variation of the reliability target.