Research Assistant (Fixed Term)

CamWebDir

Cambridge

Remote

GBP 29,000 - 36,000

Full time

5 days ago
Be an early applicant
Application generator

Don’t send a generic resume — generate a resume and cover letter tailored to this exact role.

Get past ATS filters

Job summary

University of Cambridge seeks a Research Assistant (Fixed Term) to develop data-driven and AI-based methods for improving energy efficiency of buildings and reducing carbon footprint. You will work on decarbonising heat in the UK’s existing building stock using data, modelling, and intelligent control.

The role involves building unified data pipelines, analyzing real-time and historical data, and prototyping approaches in a real deployment environment, at Queens’ College Cambridge, in

Qualifications

  • Energy systems experience is desirable.
  • Familiarity with building data and ML methods is an asset.

Responsibilities

  • Develop data-driven and AI-based methods for improving building energy efficiency.
  • Create unified datasets and data pipelines from sensors, energy systems, and weather data.
  • Develop predictive models for heating/electricity demand and operating costs.
  • Prototype and deploy methods in real buildings in collaboration with deployment teams.

Skills

Energy systems
Building simulation
Reinforcement learning
Control
Sensor data
Physics-informed ML

Job description

# Research Assistant (Fixed Term)UUniversity of CambridgeCB2 1TNvia University of CambridgePosted 28 Sep 2026Apply on cam.ac.uk →Fixed-term: The funds for this post are available for 9 months in the first instance.Role SummaryWe seek to appoint a Research Assistant to contribute to a research programme developing data-driven and AI-based methods for improving the energy efficiency of buildings and reducing their carbon footprint.Decarbonising heat in the UK's existing building stock is challenging, particularly for existing and heritage buildings where conventional retrofit can be costly, disruptive or constrained by the building fabric. This project explores a complementary technology-led approach: using data, physical modelling and intelligent control to understand a building's dynamic energy performance and improve the efficiency and economics of low-carbon heating systems.The project combines machine learning, physical modelling, data engineering and optimisation with a real-world deployment setting. An initial testbed is provided by buildings at Queens' College, Cambridge, where energy and heating data are being collected to better understand building performance and identify opportunities for practical intervention.The successful candidate will work with heterogeneous sources of building data and help develop an integrated computational framework for modelling building dynamics, predicting energy demand and operating costs, and identifying and ultimately testing interventions that can improve efficiency. This will involve both research and prototype development, with an emphasis on methods that can ultimately be deployed and evaluated in real buildings.Areas of work are expected to include a combination of:• developing and maintaining unified datasets and data pipelines integrating building sensors, energy systems, weather and other relevant sources.• analysing real-time and historical building-performance data and developing quantitative and economic measures against which interventions can be evaluated,• developing predictive machine-learning models for quantities such as heating demand, electricity demand and operating costs, including their dependence on weather and building conditions,• investigating machine-learning approaches, potentially including physics-informed models, reinforcement learning, and other methods for sequential decision-making and control,• investigating interfaces with existing building-management and control systems.An important feature of the project is that research will be carried out in dialogue with a real deployment environment. The successful candidate will therefore have considerable scope to help define and refine research questions, prototype new approaches, and respond to practical issues that arise from the data and buildings themselves.Team and EnvironmentThe successful candidate will work with Dr Challenger Mishra in the Department of Computer Science and Technology.Experience in energy systems, building simulation, reinforcement learning, control, sensor data or physics-informed machine learning would be useful but is not required. We encourage applications from candidates who meet the expected qualifications even if they do not meet all of the desirable criteria.ApplicationApplicants should upload a full curriculum vitae (CV) and a one-page covering letter outlining their relevant past experience, and include contact details for two referees.Please note that applicants may be reviewed on a regular basis and may be invited to interview prior to the closing date. The University reserves the right to close the position early if a suitable appointment is made.Click the 'Apply' button below to register an account with our recruitment system (if you have not already) and apply online.Questions about the post and the recruitment process may be addressed to the HR Team at hr-admin@cst.cam.ac.ukPlease quote reference NR51196 on your application and in any correspondence about this vacancy.The University actively supports equality, diversity and inclusion and encourages applications from all sections of society.The University has a responsibility to ensure that all employees are eligible to live and work in the UK.
Get your free, confidential resume review.

or drag and drop your file here.

Similar jobs

Similar jobs worth comparing

Energy-Efficient Buildings ML Research Assistant
Energy-Efficient Buildings ML Research Assistant

CamWebDir • Cambridge

Remote
GBP 29,000 - 36,000
Research Software Engineer (Part Time, Fixed Term)
Research Software Engineer (Part Time, Fixed Term)

CamWebDir • Cambridge

Remote
GBP 20,000 - 25,000
Research Assistant in Thermal Infrared Remote Sensing at The University of Cambridge
Research Assistant in Thermal Infrared Remote Sensing at The University of Cambridge

Urbandesignlab • Cambridge

On-site
GBP 32,000 - 42,000
Senior Technical Analyst
Senior Technical Analyst

CamWebDir • Cambridge

Remote
GBP 55,000 - 75,000
HR Advisor (Fixed Term)
HR Advisor (Fixed Term)

CamWebDir • Cambridge

On-site
GBP 34,000 - 40,000
Development opportunities
Generous pension contributions
36 days annual leave
+4
Senior Software Engineer (Fixed Term)
Senior Software Engineer (Fixed Term)

University of Cambridge • Cambridge

Hybrid
GBP 47,000 - 74,000
Hybrid work model
Defined benefit pension
41 days annual leave
Research Office Projects Manager
Research Office Projects Manager

CamWebDir • Cambridge

On-site
GBP 55,000 - 65,000
Research Assistant (Part Time, Fixed Term)
Research Assistant (Part Time, Fixed Term)

CamWebDir • United Kingdom

Remote
GBP 20,000 - 30,000
Senior Building Services Technician
Senior Building Services Technician

CamWebDir • Cambridge

Hybrid
GBP 35,000 - 48,000
Hybrid working
Annual leave
Pension scheme
+1
HR Administrator (Fixed Term)
HR Administrator (Fixed Term)

University of Cambridge • Cambridge

Hybrid
GBP 24,000 - 32,000
Hybrid working
36 days annual leave
Pension scheme
+3