What happens when a virtual motor can respond as fast as the real thing? FPGA-based motor simulation makes it possible to create highly responsive digital representations of electric machines that operate in real time with production control hardware.
The performance of modern motor control systems depends on dynamics occurring within microseconds. Capturing these effects requires simulation platforms capable of executing detailed electrical machine models with extreme determinism and low latency. FPGA technology provides a powerful solution by enabling parallel execution of motor model equations in real time.
This presentation shows how FPGA technology is enabling a new generation of motor simulation for EV development.
Join this webinar, presented by dSPACE, to discover how detailed machine models can be executed with deterministic timing, enabling realistic validation of motor controllers, inverters, protection strategies, and fault scenarios. The discussion will highlight practical implementation techniques and real-world applications that demonstrate the value of FPGA-based simulation in accelerating powertrain development and reducing validation risk.
Sep 17, 2026, 10:15 am EDT
Register now—it’s free!
See the complete session list for the Virtual Conference on EV Engineering here.
Broadcast live from September 14 to 17, 2026, the conference content will encompass the entire EV engineering supply chain and ecosystem, including motor and power electronics design and manufacturing, cell development, battery systems, testing, powertrains, thermal management, circuit protection, wire and cable, EMI/EMC and more.
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