PhD Research

PhD Studentship: Battery degradation modelling and SOX estimation for EV applications

Oxford Brookes University

Not stated

Location
Oxford, United Kingdom
Funding
UK Students, EU Students, International Students; £21,805
Application deadline
23 October 2026

About the project

3 Year, full-time PhD studentship

Eligibility: Open to home, EU and international students

Bursary p.a: £21,805

University fees and bench fees: This studentship will cover university fees at the HOME RATE ONLY. International students and EU students without Settled Status will need to cover the difference between the home and the international fee rates. Visas and associated costs are not covered.

Closing date: 23 rd October 2026

Interviews: TBC (online)

Start date: January 2027

Project Title: Battery degradation modelling and SOX estimation for EV applications

Director of Studies: Prof Shahab Resalati

Supervisors: Dr Aydin Azizi

Contact: Prof Shahab Resalati ( sresalati@brookes.ac.uk )

Requirements: Entry requirements:

Essential Criteria

Desirable Criteria

English language requirements:

International/EU applicants must have a valid IELTS Academic test certificate (or equivalent) with an overall minimum score of 6.0 and no score below 5.5 issued in the last 2 years by an approved test centre.

  • Master’s degree (or equivalent) in Electrical Engineering, Control Engineering, Mechatronics, Robotics, or a related discipline with a strong focus on dynamic systems.
  • Strong background in state-space modelling, estimation theory, and control systems.
  • Good understanding of Lithium-ion battery systems, BMS, and battery models, including equivalent circuit and electrochemical models.
  • Proven ability to develop and implement state estimation algorithms, such as Kalman filters and observers, for real-time applications.
  • Proficiency in MATLAB and Simulink for modelling, simulation, and validation using experimental or real-world data.
  • Strong analytical, independent research, and communication skills, with motivation to publish in leading journals and conferences.
  • Experience with advanced state estimation methods, including Extended/Unscented Kalman Filters and particle filters.
  • Knowledge of battery degradation, ageing, and state estimation (SOC, SOH, SOP), including diagnostics and prognostics.
  • Familiarity with reduced-order electrochemical models and hybrid physics-based/data-driven approaches.
  • Practical experience in battery testing, parameter identification, and data acquisition.
  • Familiarity with automotive systems, electric vehicles, and embedded BMS constraints.
  • Experience with system identification, uncertainty-aware modelling, large datasets, and machine learning.
  • Evidence of research capability through a thesis, publications, conference presentations, or relevant industrial experience.

Project Description

Accurate battery degradation modelling and estimation of electrochemical states are essential for improving electric vehicle performance, safety, and lifetime. This PhD, in collaboration with Jaguar Land Rover, will develop physics-informed, state-based estimation algorithms for Lithium-ion battery systems. The project will integrate electrochemical degradation models with advanced estimation methods, including Kalman filtering and observer-based techniques, to enable real-time prediction of internal states and ageing mechanisms. Emphasis will be placed on balancing model fidelity, computational efficiency, and robustness under varying operating conditions. The outcomes will support next-generation BMS with improved diagnostics, prognostics, and control for automotive applications.

Application process

Please contact us directly at tde-tdestudentships@brookes.ac.uk before applying . Apply directly via the university portal here: https://www.brookes.ac.uk/study/how-to-apply/applying-directly . Please include the following in your application:

For any queries, please contact tde-tdestudentships@brookes.ac.uk

  • A cover letter
  • A CV
  • Details of two referees, at least one from an academic background
  • Copies of your previous degree certificates and transcripts
  • A scan of your passport
  • Evidence of a valid IELTS or other valid English language qualification, in line with Oxford Brookes’ requirements (international and EU candidates only)
  • Evidence of funding (international and EU candidates only)

Research areas

PhD Research