PhD on Conditional Generative Modelling of Local High-Impact Events under Structured Scenarios

CAS in Medication Safety University of Bern

Bern

Vor Ort

CHF 50.000 - 60.000

Vollzeit

Vor 2 Tagen
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Benefits dieser Stelle

International reputation
Strong research infrastructure and国际网络
Collaborative environment and ambition
Individual career support

Zusammenfassung

The University of Bern invites applications for a PhD position in Statistics focusing on conditional generative modelling of local high-impact events under structured scenarios. The project sits within IMSV and the NCCR CLIM+ programme, offering strong collaboration across international teams.

Start date is November 1, 2026, for four years at full 100% effort. The successful candidate will develop and evaluate conditional generative modelling approaches for local-scale climate events, engage

Qualifikationen

  • MSc in statistics or closely related field with strong mathematical background.
  • Strong programming skills (Python and/or R).
  • Knowledge and practical experience of generative machine learning.
  • Experience in working with large datasets, ideally hydrological, meteorological or climate observations/simulations.
  • Very good oral and written communication skills in English.
  • Motivation to work in an interdisciplinary and international environment.

Kenntnisse

Python
R
Generative ML
Large datasets
English communication

Ausbildung

MSc in statistics or closely related field

Jobbeschreibung

PhD on Conditional Generative Modelling of Local High-Impact Events under Structured Scenarios

Start Date: November 1, 2026, or by arrangement

Employment Relationship: 100%, 4 years

Institution / Workplace: Bern

About The Project

We invite applications for a PhD position in Statistics focusing on conditional generative modelling of local high-impact events in a changing climate. Generative models are increasingly used in weather forecasting and climate research, notably to downscale global predictions and projections to local scales. Their use for studying future high-impact events raises fundamental statistical and computational challenges, including the integration of heterogeneous data sources, conditioning on complex information, and generalisation to climate conditions beyond those represented in the training data.

In this PhD project, we will investigate existing and develop new conditional generative modelling approaches for studying future high-impact events at local scales under prescribed, structured conditioning scenarios. These may include large-scale dynamical storylines and event-prone regimes. The project will address methodological questions in conditional generation, the representation and integration of conditioning information, and the generation of plausible local outcomes under changing and potentially unprecedented climate conditions.

Research and Collaborative Environment

The PhD student will be hosted at the Institute of Mathematical Statistics and Actuarial Science (IMSV) of the University of Bern, joining the Uncertainty Quantification and Spatial Statistics group led by Prof. David Ginsbourger. IMSV is an engaged, open-minded institute where mathematical statistics and probability theory meet data and models arising from various scientific and societal challenges.

The position is part of the NCCR CLIM+ programme on Climate Extremes and Society, funded by the Swiss National Science Foundation (SNSF). More specifically, the PhD project will contribute to the work package "Local Risks: Impacts and Adaptation" and involve participation in tasks covering topics such as the downscaling and debiasing of input data for hydrological models. Regular interactions and potential collaborations with the teams of Prof. Manuela Brunner (ETH Zurich, WSL), Dr. Christian Grams (MeteoSwiss), Prof. Michael Lehning (EPFL Valais Wallis, WSL), and Prof. Olivia Romppainen-Martius (University of Bern) are planned.

The NCCR CLIM+ supports Switzerland in the transformation towards a climate-resilient society. Together with stakeholders, the interdisciplinary NCCR CLIM+ research community tackles unexplored solution spaces to the climate crisis and develops a blueprint for actionable climate research worldwide. NCCR CLIM+ broadly communicates and shares knowledge, and trains a new generation of experts with the necessary domain and transdisciplinary knowledge.

Equal Opportunity and Diversity

The NCCR CLIM+ strives to implement equal opportunity at hiring. At NCCR CLIM+ we believe that diversity of thought, background and experience creates better research

Profile of the candidate
  • A MSc degree in statistics or a closely related field with strong mathematical background
  • Strong programming skills (ideally in Python and/or R)
  • Knowledge and ideally practical experience of generative machine learning
  • Experience in working with large datasets, ideally hydrological, meteorological or climate observations/simulations
  • Very good oral and written communication skills in English
  • Motivation to work in an interdisciplinary and international working environment and a collaborative mindset
Benefits
  • International reputation
  • Strong research infrastructure and international network
  • Collaborative environment and ambitious team
  • Individual career support
Working at the University of Bern

The University of Bern not only offers exciting tasks but also an environment that actively promotes development, diversity, and equal opportunities. Discover what makes us stand out as an employer and how you can grow with us.

Questions about the position

Prof. Dr. David Ginsbourger (david.ginsbourger@unibe.ch)

Questions about the application

Prof. Dr. David Ginsbourger (david.ginsbourger@unibe.ch)

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