Doctoral students on power electronics for wireless power transfer (Burdwan)

Doctoral students on power electronics for wireless power transfer (Burdwan)

13 Aug
|
Emerging Scholars Council
|
Burdwan

13 Aug

Emerging Scholars Council

Burdwan

Are you interested in advanced power electronics and wireless power transfer for future electric mobility solutions? Join our team and contribute to the development of innovative and high-performance converter technologies within an international research project focused on bidirectional charging and vehicle-grid integration.

About Us

We at the Division of Electric Power Engineering conduct research within a broad range of topics in electric power technology. Our purpose is to develop interdisciplinary research areas within the university as well as with external partners. Our research is based on a solid theoretical basis and extensive experimental verification in our laboratories. Research activities at the division are organized in two research units: (1) Electrical Machines and Power Electronics, and (2) Power Grid and Components.

In the research unit Electrical Machines and Power Electronics, we are about 25 persons, of which two third are PhD students. Our research directions include: (1) electrical machines; (2) traction inverters; (3)



high frequency power electronics and charging; (4) electric drive systems, and (5) battery energy storage.

About The Research Project

The research project is part of a larger project, BiWPT, funded by EU under MSCA doctoral network. The BiWPT project has a mission to train a recent generation of experts who possess the skills and fundamental knowledge required to effectively address the challenges of bidirectional WPT systems for electric mobility, enabling vehicle-grid integration in support of Europe’s energy transition. Chalmers' part of the project will hire 2 doctoral candidates (DC) to achieve 2 objectives:

Design, implementation, and control of compact and cost-effective wireless power transfer converters capable of robust bidirectional operation. The DC will investigate suitable topologies, materials, and components to achieve high efficiency and scalability up to 500 kW. Advanced control algorithms will be developed

📌 Doctoral students on power electronics for wireless power transfer (Burdwan)
🏢 Emerging Scholars Council
📍 Burdwan

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