EDISON (Electric Drivetrain Integration by Simulation and OptimisatioN
In plain English
AI plain-English summaryA new electric motor design swaps expensive rare-earth magnets for cheaper ferrite ones, aiming to match the performance of current electric vehicle drivetrains while dodging fragile supply chains. Rare-earth magnets power most electric cars today because they are efficient and compact, but their supply is concentrated in a few countries and vulnerable to disruption. Ferrite magnets are abundant and cheap, yet until now they have been too weak for high-performance motors. This project tackles that gap by developing both a novel ferrite motor topology and the simulation tools needed to optimise its electromagnetic, thermal, and structural behaviour as a complete system. If successful, the work could reduce the cost and supply-chain risk of electric vehicle production without sacrificing range or efficiency. The analysis tools themselves—faster, reduced-order models that capture electro-mechanical interactions early in design—could be applied to other motor types, improving how manufacturers integrate drivetrains across the industry. A prototype will be tested to confirm real-world vehicle-level gains. The result is not a fundamental breakthrough in materials science, but an engineering advance that quietly makes electric vehicles cheaper and more resilient to produce.
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