Finn Nußbaum

M.Sc.
Research Assistant

Contact

Finn Nußbaum, M. Sc.
E-6 Elektrische Energietechnik
  • Elektrische Energietechnik
Office Hours
nach Vereinbarung
Harburger Schloßstraße 22a,
21079 Hamburg
Building HS22a, Room 2.017
Phone: +49 40 42878 4092
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Research Project

KoLa
Optimized Load Management and Flexibility Coordination for Electrified Urban Public Transport

KoLa

Optimized Load Management and Flexibility Coordination for Electrified Urban Public Transport

Federal Ministry for Economic Affairs and Climate Action (BMWK); Duration: 2022 to 2026

Publications

TUHH Open Research (TORE)

2024

2023

Courses

Stud.IP
link to course in Stud.IP Studip_icon
Measurement Technology Lab for Mechanical Engineering
Semester:
SoSe 24
Course type:
Practical Course
Course number:
lvL1118_s24
Lecturer:
M. Sc. Mechatronics Finn Jannek Klar, Prof. Dr. Thorsten Kern
Description:
The module "Measurement Technology for Mechanical Engineering" is to be passed by all students with a project-based-learning exam by doing two practical courses (MSR & MT). Both of them need to be passed separately. The MT Lab involves ten experiments, each of which must be passed. The MT & MSR labs may be done in different semesters. To pass each experiment, you need to do five steps (details listed below) - You prepare yourself, reading the material for the experiment and attending the lecture - You execute an ILIAS-test (link in Stud.ip) to get approval for the live experiment - You book a seat in the lab for a time slot, which suits you, go there and receive the material - You execute the experiment in the lab, usually it takes around 1.5 hours for each experiment including recording of all data - You carry your data home and do some small post-processing-tasks on the data, submitting the results via Stud.ip vips We recommend doing one experiment every week. But you are free to arrange timing and sequence yourself. The ten experiments are: 1. mechanical measurements 2. motor power 3. resistive I: potentiometers 4. resistive II: strain-gauge & Wheatstone-bridge 5. capacitive I: general 6. capacitive II: acceleration 7. optical I: light reflection switch 8. optical II: diodes/phototransistors/photoresistors 9. magnetic: hall-sensor 10. piezo-electric Further information and the lab exercises can be found here: https://imek.atlassian.net/wiki/spaces/MLP/pages/12419749/Measurement+Technology+Lab+MT+Lab+new
Miscellaneous:
The module "Measurement Technology for Mechanical Engineering" is to be passed by all students with a project-based-learning exam by doing two practical courses (MSR & MT). Both of them need to be passed separately.

The MT Lab involves ten experiments, each of which must be passed. The MT & MSR labs may be done in different semesters. To pass each experiment, you need to do five steps (details listed below)

- You prepare yourself, reading the material for the experiment and attending the lecture
- You execute an ILIAS-test (link in Stud.ip) to get approval for the live experiment
- You book a seat in the lab for a time slot, which suits you, go there and receive the material
- You execute the experiment in the lab, usually it takes around 1.5 hours for each experiment including recording of all data
- You carry your data home and do some small post-processing-tasks on the data, submitting the results via Stud.ip vips

We recommend doing one experiment every week. But you are free to arrange timing and sequence yourself.

The ten experiments are:
1. mechanical measurements
2. motor power
3. resistive I: potentiometers
4. resistive II: strain-gauge & Wheatstone-bridge
5. capacitive I: general
6. capacitive II: acceleration
7. optical I: light reflection switch
8. optical II: diodes/phototransistors/photoresistors
9. magnetic: hall-sensor
10. piezo-electric

Further information and the lab exercises can be found here:
https://imek.atlassian.net/wiki/spaces/MLP/pages/12419749/Measurement+Technology+Lab+MT+Lab+new
Stud.IP informationen about this course:
Home institute: Institut für Mechatronik im Maschinenbau (M-4)
Registered participants in Stud.IP: 37
Documents: 2

Supervised Theses

ongoing

2024

  • Ahmed, Taha (2024). Development of an iterative multi-agent coordination framework for congestion prevention in low voltage grids.

  • Busch, Marcel (2024). Entwicklung eines Netzmodells zur szenarienbasierten Untersuchung von Engpässen in heutigen und zukünftigen städtischen Verteilnetzen.

  • Lindner, Joost (2024). Entwicklung einer probabilistischen Lastprognose für die Niederspannungsebene elektrischer Verteilnetze.

  • Ming, Zhao (2024). Conceptual Design for a grid demonstrator for teaching purposes and development of a suitable distribution grid simulation.

  • Wilke, Jan Jakob (2024). Definition leistungsbasierter Netzregeln zur Engpassvermeidung in elektrischen Verteilnetzen.

completed

2023

  • Kock am Brink, Jonas (2023). Entwicklung einer Engpassprognose für elektrische Verteilnetze mittels probabilistischer Verfahren.