- Derive control strategies for the Vehicle Control Unit (VCU), with a focus on Torque Management and Energy Management.
- Translate customer needs and market trends into technical specifications for Chassis features.
- Engage with OEMs to align and finalize system requirements.
- Oversee the development and validation of propulsion control systems.
- Collaborate with engineering, software, vehicle integration, and manufacturing teams to ensure system-level performance and quality.
Required Skill Set:
- In-depth knowledge of propulsion systems in ICE, Hybrid, and Battery Electric Vehicles (BEVs).
- Expertise in VCU control strategy development, focusing on Torque and Energy Management across various drive modes.
- Proven ability to optimize control software to balance drivability and NVH (Noise, Vibration,
and Harshness) targets.
- Proficient in modeling, simulation, and tuning of control algorithms; experienced in integration and vehicle-level testing.
- Hands-on experience in product development and integration for PHEV/MHEV and BEV propulsion systems.
- Solid analytical skills in evaluating vehicle drive dynamics, stability, and performance through simulation and real-world data.
- Experience with system/vehicle-level dynamometer-based testing.
- Excellent communication and coordination skills; capable of working effectively with cross-functional, geographically distributed teams.
📌 Propulsion-System Architect (India)
🏢 Tata Elxsi
📍 India
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