Application deadline: All year round
This 4-year project is fully funded; students who are eligible to pay tuition fees at the Home rate are eligible to apply.
The successful candidate will receive an annual stipendof~£25,518andpaidtuitionfees.
Wearelookingforsomeonetostartassoonaspossible.
The project is an exciting opportunity to undertake industrially linked research in partnership with Rolls-Royce (RR) at the RR University Technology Centre (UTC) in Electrical Systems at University of Manchester(UoM). The UTC researches a wide range of underpinning electrical technologies for applications of on-board power systems for aircraft. The UoM's Department of Electrical and Electronic Engineering has ~95 academic staff, split across a number of research groups, is one of the largest UK departments of this type, and particularly strong in power engineering.
The aviation sector is undergoing a transformation as it moves towards more environmentally sustainable flight. This involves significant electrification where on-board electrical systems are increasingly critical to aircraft operation. Arc faults in aviation electrical systems remain a major reliability and safety concern: they can generate significant heat and damage, critically compromising system redundancy and operative ability. This PhD combines industrial and academic expertise to develop next‑generation understanding of propagation, detection and containment of the destructive nature of arc fault events in the context of modern aerospace power drive systems. The key objective is to characterise the nature of arc initiation & propagation and how arcing can be managed through system design or operation, with a view to retaining functionality when these occur and minimising their likelihood. This is also researched by the recently commenced multi‑million MOSFET (The Maturing Optimised Solutions for Aerospace Technology) research programme lead by RR in collaboration with UoM and an electrical systems specialist company (Aerospace HV), and this PhD will be actively supporting and running along side this project. This PhD offers a unique opportunity to contribute to the future of sustainable flight collaborating with leading aerospace companies.
Work will include the development of a laboratory test system able of emulating arc faults, fault inception and propagation operating environments in an aerospace power drive representative system architecture. This will enable experimental research on charaterising the underlying causes of fault inception, identifying critical contributors and operating margins/management procedures associated with these.
Based in the UoM RR UTC at the Energy Conversion Group, you will be responsible for undertaking the relevant research under the guidance of Dr Djurovic and his colleagues and in collaboration with relevant Rolls‑Royce and Aerospace HV staff.
We are interested in students with a strong understanding of power drives, high‑voltage engineering, electrical arcs and insulation systems. A strong interest in electrical transportation systems for aerospace is also desirable. Additional knowledge in power drive/insulation system laboratory testing is welcome but not a requirement.
Applicants should have, or expect to achieve, at least a 2.1 honours degree or a master’s in a relevant science/engineering related discipline. A background in electrical drives/HV is highly desirable.
#J-18808-Ljbffr
PhD Studentship - Arc Fault Analysis in Modern Aerospace Power Drive Systems in Manchester employer: The University of Manchester
The University of Manchester is an excellent employer, offering a vibrant work culture that values diversity and inclusivity. As a Sport Centre Assistant, you'll enjoy flexible shifts while contributing to a dynamic environment that prioritises high-quality experiences for all users. With ample opportunities for personal and professional growth, working at our esteemed institution allows you to make a meaningful impact in the community.
Contact Details:
The University of Manchester Recruitment Team