Mirco Fabian Woidelko

M.Sc., M.A.
Research Assistant

Contact

Mirco Woidelko, M.Sc., M.A.
E-6 Elektrische Energietechnik
  • Elektrische Energietechnik
Office Hours
nach Vereinbarung
Harburger Schloßstraße 36,
21079 Hamburg
Building HS36, Room C2 1.013
Phone: +49 40 42878 4093
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Research Project

DisrupSys
Disruptive functions and technology for angle-based integrated grid operation in converter-dominated power systems with predominantly renewable energy supply

DisrupSys

Disruptive functions and technology for angle-based integrated grid operation in converter-dominated power systems with predominantly renewable energy supply

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2021 to 2024

Publications

TUHH Open Research (TORE)

Courses

Stud.IP
link to course in Stud.IP Studip_icon
Silicon Photonics (VL)
Subtitle:
This course is part of the module: Silicon Photonics
Semester:
WiSe 23/24
Course type:
Lecture
Course number:
lv2408_w23
Lecturer:
Dr. Timo Lipka
Description:
  • Introduction (historical view and trends in der SiliconPhotonics)
  • Fabrication Technology (SOI-Wafer, Deposition, Sputtering and Evaporation, Epitaxy, MOCVD, Lithography)
  • Planar Waveguide Fundamentals
  • Optical Materials in silicon Photonics
  • Waveguide Types(LossMechanisms,DispersionandPolarisation in Waveguides)
  • Coupling of Silicon Photonic Devices and Systems
  • Silicon Photonic Circuit Devices and Building Blocks (Passive Devices: Resonators,Interferometers, Mode Converters, Power Splitters,  Gratings, Polarizers and Rotators)
  • Materialfundamentals and components for tuning and switching
  • Integration of active Devices (Laser,Detector, Modulators)
  • Photonics and Electronics Integration
  • Photonic Interconnects
  • Optical Multiplexing
  • Switch Fabrics and Routers
  • Silicon Photonics for Sensing
Performance accreditation:
m1611 - Silicon Photonics<ul><li>p1552 - Silicon Photonics: mündlich</li></ul>
ECTS credit points:
4
Stud.IP informationen about this course:
Home institute: Institut für Mikrosystemtechnik (E-7)
Registered participants in Stud.IP: 23
Documents: 15

Supervised Theses

ongoing
completed

2023

  • Babendererde, A. (2023). Regelung eines Umrichters zum Anschluss eines Wasserstoffspeicherkraftwerks an die Höchstspannungsebene.

2022

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

  • Lindner, J. (2022). Primärregelungskonzepte für einen Batteriepufferspeicher eines Wasserstoffspeicherkraftwerkes.

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