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New Thermal Module
The new Thermal module support (Beta) for AFMs includes blown-over and natural convection, water- jacket cooling, and shaft groove cooling. It also supports adaptive rotor templates, demagnetization methods, a hybrid method for AC loss, and Lab module support, including Ansys Maxwell-Lab link (Beta).
Unified Performance Map
A unified performance map now supports induction machines with automated Ansys Maxwell–Motor‑CAD integration. Magnetizing and leakage inductance and iron loss Look-Up-Tables (LUTs) improve model accuracy, while automatic steady‑state detection and enhanced Python data‑transfer significantly cut analysis time across all types of electric machines.
Enhancing Predictions
Deliver faster, more accurate magnetic and loss predictions using Multi-Static with Losses option. It is further improved using model symmetry and automatic symmetry detection which reduces setup time. This increase confidence in early-stage evaluations.
NVH Considerations
Noise, vibration, and harshness (NVH) are essential aspects that must be considered when designing and optimizing a motor. Using Ansys Motor-CAD with Ansys optiSLang, we show how to optimize the motor’s noise alongside the motor’s electromagnetic, thermal, and mechanical requirements.
Webinar Series
This webinar series showcases solutions spanning all aspects of electric machine design - be it concept design and development, cooling system development, noise, vibration, and harshness (NVH), or system-level optimization.
Democratization of Simulation
Learn how Ansys Motor-CAD simulations can help you determine whether an interior permanent magnet (IPM), an induction magnet (IM) or a wound field synchronous magnet (WFSM) is the best motor design for an EV.