The shift towards the electrification of automobiles and the growth of {the electrical} grid for renewable vitality integration has led to a substantial improve within the demand for energy electronics units and modernized cable methods — purposes that can assist guarantee a constant and long-term electrical energy provide. Simulation is used to drive the design of recent energy electronics units (similar to solar energy and wind turbine methods), that are required to function effectively for various ranges of energy manufacturing and energy consumption (within the case of electrical automobiles). A multiphysics modeling and simulation strategy performs a important position in assembly design objectives and lowering the general manufacturing time.
The COMSOL Multiphysics® software program affords a variety of capabilities for the modeling of vitality transmission and energy electronics, together with quasistatic and time-harmonic electromagnetic fields. Moreover, the COMSOL® software program options distinctive capabilities for coupling thermal and structural results with electromagnetic fields. Results similar to induction heating and Joule heating, in addition to structural stresses and strains brought on by thermal growth, may be studied with user-friendly modeling options.
On this webinar, we’ll present an summary of the modeling and simulation performance within the COMSOL® software program for the design of high-power cables and units for energy electronics.
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