| name | electric-motor-design |
| description | Electric motor and drive unit design and optimization expertise |
| allowed-tools | ["Read","Write","Glob","Grep","Edit","WebFetch","WebSearch","Bash"] |
| metadata | {"version":"1.0","category":"automotive-engineering","tags":["electrification","motor","inverter","drive-unit"]} |
| graph | {"domains":["domain:automotive-engineering"],"skillAreas":["skill-area:sensor-fusion","skill-area:motion-planning","skill-area:physics-simulation"],"roles":["role:systems-integration-engineer","role:embedded-engineer"]} |
Electric Motor Design Skill
Purpose
Enable electric motor and drive unit design and optimization including electromagnetic analysis, thermal modeling, and control algorithm development.
Capabilities
- Motor topology selection (PMSM, induction, SRM)
- Electromagnetic FEA simulation (JMAG, Motor-CAD, ANSYS Maxwell)
- Efficiency map generation and analysis
- Thermal modeling and cooling design
- NVH analysis for electric motors
- Demagnetization analysis
- Inverter sizing and selection
- Field-oriented control (FOC) algorithm development
Usage Guidelines
- Select motor topology based on performance and cost requirements
- Optimize efficiency across typical drive cycles
- Design cooling for continuous and peak power requirements
- Analyze NVH characteristics for acceptable noise levels
- Validate demagnetization resistance at extreme temperatures
- Document motor specifications and control parameters
Dependencies
- JMAG
- Motor-CAD
- ANSYS Maxwell
- MATLAB/Simulink
Process Integration
- PTE-002: Electric Drive Unit Development
- PTE-003: Hybrid Powertrain Integration
- PTE-004: Powertrain Calibration and Optimization