Ulrich Noebauer

Senior Technical Data Specialist

Dachau, Bavaria, Germany
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Summary

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Senior
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Ulrich Noebauer is a Senior Technical Data Specialist with 11 years of experience bridging fundamental (astro-)physics research and production-grade AI solutions in the insurance sector. He holds a PhD in Physics and spent nearly a decade developing Monte Carlo radiation-hydrodynamics simulation code—contributions that include back-end work on the widely used open-source TARDIS supernova code. At Munich Re he shapes AI and advanced-analytics initiatives from cybersecurity feature stores to LLM-augmented underwriting and AI-based aerial risk assessment, having built and operationalized classification and segmentation pipelines on AWS SageMaker. His background in HPC, numerical simulation (Python/C/Fortran), and geospatial analysis gives him a rare combination of scientific rigor and practical MLOps experience. He is comfortable moving projects from prototype to production, including live remote-inspection systems and inference pipelines, and mentors teams in ML lifecycle best practices. Notably, his transition from publishing astrophysics research to deploying real-world AI products reflects both deep technical roots and an ability to translate complex models into business impact.
code11 years of coding experience
job10 years of employment as a software developer
bookDr. rer. nat. Physics, Dr. rer. nat. Physics at Technical University of Munich
bookAbitur, Abitur at Gymnasium Wertingen
languagesGerman, English, Italian
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Github Skills (13)

simulations10
simulation10
monte-carlo10
astrophysics10
python10
rad10
radiation10
cython9
c119
c179
pandas8
data-analysis8
numpy8

Programming languages (4)

CSSCJupyter NotebookPython

Github contributions (5)

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tardis-sn/tardis

Apr 2015 - Oct 2018

TARDIS - Temperature And Radiative Diffusion In Supernovae
Role in this project:
userBack-end Developer
Contributions:152 commits, 95 PRs, 24 pushes in 3 years 6 months
Contributions summary:Ulrich primarily focused on back-end development tasks within the TARDIS project. Their commits reveal modifications and additions related to the core model and Monte Carlo simulations, including the implementation of new features such as the ability to emit virtual packets within a certain frequency range and the handling of isotope abundances. They also worked on improving the formal integral method. These changes show a focus on expanding the functionality and improving the performance of the simulation.
pythonscienceastrophysicssupernovasupernovae
tardis-sn/tardisanalysis

Aug 2015 - Oct 2017

For now, a collection of useful analysis tools for TARDIS
Contributions:46 commits, 20 PRs, 9 pushes in 2 years 2 months
pythonanalysisanalysis-toolstardiswolfram-language
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Ulrich Noebauer - Senior Technical Data Specialist