You will develop a novel mathematical approach for the comprehensive modeling of pin winding systems (hairpin windings), thereby laying the foundation for innovative electric machine designs.
Furthermore, you research and formulate robust mathematical representations of highly complex real-world boundary conditions and constraints, including symmetry requirements, operating conditions, as well as manufacturing and production restrictions.
Your tasks include precisely analyzing and critically evaluating the computational complexity, feasibility, and runtime performance of your proposed discrete optimization algorithms.
Last but not least, you integrate your mathematical models into existing simulation tools to systematically evaluate and optimize winding schemes based on defined key performance indicators (KPIs).