Christina Eckel

M.Sc.
Research Assistant

Contact

Christina Eckel, M. Sc.
E-6 Elektrische Energietechnik
  • Elektrische Energietechnik
Office Hours
nach Vereinbarung
Harburger Schloßstraße 22a,
21079 Hamburg
Building HS22a, Room 2.002
Phone: +49 40 42878 2377
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Research Project

Stability and Grid Control in Transmission Systems with inverter-coupled resources

Stability and Grid Control in Transmission Systems with inverter-coupled resources

Hamburg University of Technology (TUHH); Duration: 2021 to 2025

Publications

TUHH Open Research (TORE)

2024

2023

2022

Courses

Stud.IP
zur Veranstaltung in Stud.IP Studip_icon
Join Nano Challenges of the ECIU University (PBL) [MA]
Untertitel:
This course is part of the module: Non-technical Courses for Master
Semester:
SoSe 24
Veranstaltungstyp:
PBL -Projekt-/problembasierte Lehrveranstaltung (Lehre)
Veranstaltungsnummer:
lv2852_s24
DozentIn:
Prof. Dr. Kerstin Kuchta, Dipl.-Ing., Sascha Diedler
Beschreibung:

Join multidisciplinary and international teams at the ECIU University and solve nano challenges linked to the SDG11 - Sustainable cities and communities, provided by business and societal partners across Europe. Participation in nano challenges will allow you to make a real impact in the community, city, or region by solving real-time local, national, and global challenges with a new way of learning - the challenge-based learning.

Generalprocedure of a challenge:

  1. The nano challenge is provided by a city, region or business stakeholder and is entered on the ECIU UniversityChallenge platform (engage.eciu.eu).
  2. You register to the nano challenge you find relevant on the platform.
  3. An international and interdisciplinary team is formed from registered participants from all ECIU partner universities and a team facilitator from the host university is assigned.
  4. You work with the team on the nano challenge, engage, investigate, and propose non-technical solutions using the challenge-based learning methodology (https://eciu.tuhh.de/challenge-based-learning/).
  5. During the process, you can select relevant micro-modules from ECIU member universities that help you gain additional knowledge or skills that are relevant to solve the nano challenge.
  6. Finally, teams deliver their outputs- which may include services, products, research questions, start-ups and spin-offs.

By working in multi-disciplinary and/or international teams, you will build up inter-cultural competences and increase your network of expertise by developing problem-solving and team-work skills.

TUHH is major part of the ECIU University leading institution related to the Challenge-based learning. All ECIU challenges will constantly be updated at the challenge platform: engage.eciu.eu

“Nano challenges” are the smallest unit of challenges in the ECIU University and are supposed to be done within 1-2 days. Focus is to define your actual challenge, find suitable solution(s) and create ideas for further steps. https://eciu.tuhh.de/cbl-in-more-detail/

This course is aimed at Master students from member universities of the ECIU network (www.eciu.org). The course requires an independent approach to work, the willingness to learn independently about new non-technical topics and research methods, and the motivation to learn and participate in an international/disciplinary team.

Leistungsnachweis:
tm2852 - Join Nano Challenges of the ECIU University (Projekt-/problembasierte Lehrveranstaltung)<ul><li>p1718-2021 - Join Nano Challenges of the ECIU University: Subject theoretical and practical work</li></ul>
ECTS-Kreditpunkte:
1
Weitere Informationen aus Stud.IP zu dieser Veranstaltung
Heimatinstitut: NTA - Nicht-technisches Angebot (0-NTA)
beteiligte Institute: Institut für Circular Resource Engineering and Management [CREM] (V-11)
In Stud.IP angemeldete Teilnehmer: 6
Anzahl der Dokumente im Stud.IP-Downloadbereich: 1

Supervised Theses

ongoing

2024

  • Bahe, B. (2024). Nichtlineare Stabilitätsuntersuchungen in einem leistungselektronisch dominierten elektrischen Energiesystem.

completed

2024

  • Boehm, E. (2024). Einfluss des Netzäquivalents auf die Stabilität eines Netzes mit netzbildenden und netzfolgenden Umrichtern.

  • Helmich, L. M. (2024). Entwicklung und Simulation eines Effektivwertmodells für STATCOM-Anlagen mit neuartigen Regelstrategien für Pendeldämpfungen in PowerFactory.

  • Rüter, C. (2024). Einfluss der Netzstärke auf die Kleinsignalstabilität netzbildender Umrichter mit virtueller Oszillator-Regelung.

  • Schultheiß, J. (2024). Impedanzbasierte Stabilitätsanalyse zur Bewertung der Stabilitätsgrenzen von DC- und AC-Netzen.

2023

  • Chouiter, B. (2023). Dynamic Phasor Modelling and Comparison to Classical EMT Models.

  • Helmich, L. M. (2023). Entwicklung und Simulation einer Regelstrategie für die Pendeldämpfung durch STATCOM-Geräte.

  • Kamma, J. (2023). Umrichtermodellierung zur Repräsentation von Interaktionen im Sinne der Converter-Driven Stability.

  • Mißfeldt, C. (2023). Einfluss von Zeitverzögerungen auf die Converter-Driven Stability.

  • Rosenau, Y. (2023). Einfluss netzbildender Umrichter-Regelungsstrukturen auf die "Converter-Driven Stability".

2022

  • Kumar, M. (2022). Modellierung und Vergleich des Frequenzverhaltens dezentraler Anlagen mit netzbildenden Eigenschaften oder beigestellter Schwungmasse.

  • Lim, I. (2022). Modelling and Integration of a Hydrogen Storage Power Plant in the 10-Machine New-England Power System.

  • Rieckborn, N. (2022). Modellierung des Umwandlungsprozesses eines Wasserstoffspeicherkraftwerks.