Master Thesis - Hybrid ML + LLM-based Fault Detection and Explainability for Smart Building IoT Systems

Forschungszentrum Jülich GmbH

Jülich

On-site

EUR 12,000 - 17,000

Full time

14 days+
Application generator

Turn this role into an interview — a resume and cover letter built around what this employer wants.

Get past ATS filters

Benefits offered by this job

Flexible hours
Welcome Days
Welcome Guide
Health management program
On-site team collaboration
Remuneration for thesis work

Job summary

Forschungszentrum Jülich GmbH in Germany is inviting a Master Thesis project on Hybrid ML and LLM-based fault detection and explainability for smart building IoT systems. You will work within the Energy Systems Engineering group to implement online fault detection and communicate results to real users in a Living Lab setting.

The role involves installing occupancy sensors, designing experiments for occupancy estimation, and evaluating various ML-based approaches for accuracy, cost, and data

Qualifications

  • Ongoing master’s degree in computer science, data science, engineering, machine learning, or closely related field.
  • Strong knowledge of Python programming.
  • Strong knowledge of machine learning and artificial intelligence.
  • Knowledge of fault detection in sensor data.
  • Good analytical skills, initiative, and self-motivation.
  • Good command of English.
  • Excellent teamwork and communication skills.

Responsibilities

  • Install and configure occupancy detection sensors (e.g. PIR sensors, PQI meters, infrared camera).
  • Set up experimental plan for testing occupancy estimation approaches.
  • Analyze characteristics of approaches in terms of setup ease, cost, data quality, end-uses.
  • Assess combinations of approaches for detection accuracy and reliability.

Skills

Python
Machine learning
Fault detection in sensor data
Analytical skills
Teamwork & communication
Self-motivation

Education

Master's degree in CS/Data Science/Engineering

Job description

Master Thesis - Hybrid ML + LLM-based Fault Detection and Explainability for Smart Building IoT Systems

At the Institute of Climate and Energy Systems - Energy Systems Engineering (ICE-1), we develop advanced models and algorithms for the simulation and optimization of integrated multi-energy systems. Within the Living Lab Energy Campus (LLEC) project, large office buildings are equipped with many IoT devices, typically 5-10 devices per office room. These devices transmit real-time data such as the opening state of windows, doors as well as room air quality and luminance measurements to a cloud infrastructure. Additionally, through a user-facing energy dashboard with a desk booking system, building occupants can interact bidirectionally with the building systems. These occupant-building interactions are the basis for several avenues of research including the intelligent operation of heating and shading systems. As part of our team, you will contribute to the smooth and reliable operation of the building systems through implementation of online fault detection and diagnosis, and subsequent communication of the results to real users in a real-world setting.

Your Job
  • Installation and configuration of available occupancy detection sensors (e.g. PIR sensors, PQI meters, infrared camera, etc.)
  • Setup of suitable experimental plan for testing the occupancy estimation approaches
  • Analysis of characteristics of the various approaches in terms of ease of setup, cost, data quality, suitability for different end-uses, etc.
  • Analysis of combinations of approaches in terms of detection accuracy and reliability
Your Profile
  • Ongoing masters degree studies in computer science, data science, engineering, machine-learning, or other closely related field
  • Good knowledge of programming in Python
  • Good knowledge of machine-learning and artificial intelligence
  • Knowledge of fault detection in sensor data
  • Good analytical skills, initiative, and self motivation
  • Good command of the English language
  • Excellent teamwork and communication skills
Our Benefits for You

We work on the very latest issues that impact our society and are offering you the chance to actively help in shaping the change! We support you in your work with:

  • Meaningful Tasks: Your thesis deals with a future-oriented, socially relevant topic with direct practical relevance in an international environment
  • Practical relevance: Hands-on as well as theoretical work in a Living Lab setup with existing tools and supporting frameworks
  • Scientific environment: You can expect excellent scientific equipment, modern technologies, and qualified support from experienced colleagues
  • Personal responsibility: You organize your tasks independently—from preparation to implementation
  • Onboarding & teamwork: You can look forward to working in a dedicated, international, and collegial team. It is important to us that you quickly settle into the team and are given structured training for your tasks. We also support you from the very beginning and make your start easier with our Welcome Days and Welcome Guide
  • Work-life balance: We offer flexible working hours to help you balance your professional and personal life. You also have the option of flexible working (in terms of location), which is generally possible after consultation and in line with upcoming tasks and (on-site) appointments
  • Flexibility: Flexible working hours make it easier for you to balance work and study
  • Health & well-being: Your health is important to us. You can look forward to a comprehensive company health management programme with a wide range of options, including a beach volleyball court, running groups, yoga classes and much more. In addition, our company medical service and an experienced social counselling team are available to assist you on site
  • Fair remuneration: We will pay you a reasonable remuneration for your thesis

In addition to exciting tasks and a collegial working environment, we offer you much more: https://go.fzj.de/benefits

We welcome applications from people with diverse backgrounds, e.g. in terms of age, gender, disability, sexual orientation / identity, and social, ethnic and religious origin. A diverse and inclusive working environment with equal opportunities in which everyone can realize their potential is important to us.

The following links provide further information on diversity and equal opportunities: https://go.fzj.de/equality and on specific support options: https://go.fzj.de/womens-job-journey

Place of Employment: Jülich

Start Date: To the next possible date

Salary: We will pay you a appropriate remunerationfor your thesis

Application Deadline: The position will be published until it is successfully filled.

Get your free, confidential resume review.

or drag and drop your file here.

Similar jobs

Similar jobs worth comparing

Master Thesis - Physics-Informed Machine Learning for Dynamic Power System Characterization
Master Thesis - Physics-Informed Machine Learning for Dynamic Power System Characterization

Forschungszentrum Jülich GmbH • Jülich

On-site
EUR 11,000 - 16,000
Meaningful tasks
Practical relevance
Scientific environment
+6
Staff Scientist / PostDoc – Machine Learning for Scientific Applications
Staff Scientist / PostDoc – Machine Learning for Scientific Applications

Forschungszentrum Jülich • Jülich

On-site
EUR 52,000 - 68,000
30 days vacation
Flexible working hours
International environment
+3
Master Thesis - Efficient Markov Chain Monte Carlo Techniques for Studying Large-scale Metabolic Models
Master Thesis - Efficient Markov Chain Monte Carlo Techniques for Studying Large-scale Metabolic Models

Forschungszentrum Jülich GmbH • Jülich

Remote
EUR 8,900 - 12,000
Masterarbeit - Dekarbonisierungspfade des deutschen Gebäudesektors unter Berücksichtigung regul[...]
Masterarbeit - Dekarbonisierungspfade des deutschen Gebäudesektors unter Berücksichtigung regul[...]

Forschungszentrum Jülich GmbH • Jülich

On-site
EUR 13,392 - 20,088
Flexibilität bei der Arbeitszeitgestaltung
Angemessene Vergütung
Möglichkeit zur Promotion
Master Thesis - Efficient Markov Chain Monte Carlo Techniques for Studying Large-scale Metaboli[...]
Master Thesis - Efficient Markov Chain Monte Carlo Techniques for Studying Large-scale Metaboli[...]

Forschungszentrum Jülich GmbH • Jülich

On-site
EUR 8,928 - 13,392
Flexible working hours
Excellent scientific environment
Fair remuneration
+1
Master Thesis - AI-Accelerated Power Flow Analysis for Synthetic Electrical Distribution Grids
Master Thesis - AI-Accelerated Power Flow Analysis for Synthetic Electrical Distribution Grids

Forschungszentrum Jülich • Jülich

On-site
EUR 5,580 - 11,160
Flexible working hours
Home office option
Fair remuneration
+1
Student Assistant (with the possibility of a Bachelor- / Master Thesis) - Root and Soil Sample [...]
Student Assistant (with the possibility of a Bachelor- / Master Thesis) - Root and Soil Sample [...]

Forschungszentrum Jülich • Jülich

On-site
EUR 5,022 - 10,044
Meaningful Tasks
Practical relevance
Scientific environment
+7
Research Software Engineer – AI and Earth Observation
Research Software Engineer – AI and Earth Observation

Forschungszentrum Jülich • Jülich

On-site
EUR 60,000 - 75,000
30 days vacation
Flexible working hours
Pension scheme
+2
PhD Position in Economics - NLP-Based Analysis of Energy Policy-Related Public Opinions
PhD Position in Economics - NLP-Based Analysis of Energy Policy-Related Public Opinions

Forschungszentrum Jülich GmbH • Jülich

On-site
EUR 42,000 - 64,000
30 days annual leave
Flexible working hours
International environment
+1
Master Thesis - Efficient Markov Chain Monte Carlo Techniques for Studying Large-scale Metabolic Models
Master Thesis - Efficient Markov Chain Monte Carlo Techniques for Studying Large-scale Metabolic Models

Forschungszentrum Jülich • Jülich

On-site
EUR 8,900 - 13,000
Flexible working hours
Campus environment
Welcome Days and Welcome Guide
+2