Simulation Integration Engineer
Role details
Job location
Tech stack
Job description
DUTIES: Work closely with stakeholders to identify requirements, schedule, and deploy simulation projects to enable virtual vehicle design, development, and validation. Engage with cross functional team members to coordinate on-time delivery of simulation components to meet requirements and timing. Integrate plant models and other ECU models with controller software source code and perform virtual system verification based on requirements. Obtain, develop, parameterize, and test virtual controller models to be used across different components such as HWIO, RTOS, controller I/O, and other ECU behavioral models. Perform simulation correlation activities based on experimental data. Create, maintain, and improve standard simulation architectures. Provide support for released simulations, including detailed documentation, and assist users with testing and troubleshooting. Design, develop, verify, and execute automated test suites. Assist initiatives to benchmark and adopt next-generation simulation technology and tools. Identify, implement, and standardize new simulation development processes of engineering. Provide process and architecture feedback improvements. Work in and using the SAFe and Agile construct. 25% travel to client sites domestically. Hybrid Work Policy - 3 Days In-Office, 2 Days Remote - Must Be Able To Report To Listed Local Office.
Requirements
REQUIREMENTS: Bachelor's degree in Electrical Engineering, Mechanical Engineering, Software Engineering, Computer Science, Aerospace Engineering, or related field of study. Two (2) years of experience as a System Verification and Validation Engineer, Hardware in Loop (HIL) Integration Engineer, Software Engineer, or related occupation Two (2) years of experience with: MATLAB, Simulink, dSPACE/VEOS, ETAS COSYM, and ECU behavioral models in the context of plant model development and integration; and Computer programming languages including C/C++ and Python. One (1) year of experience with: Modeling high voltage components; Embedded controls software and architectures, including AUTOSAR; and Automotive communication technologies including CAN, LIN, SPI, and Ethernet.