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Job Description
Job Description:
We are seeking an experienced Powertrain Systems Engineer to lead system-level analysis, requirement engineering, and functional decomposition for next-generation propulsion systems. The role involves working across mechanical, electrical, and software domains to define, analyze, and validate powertrain system behavior across the V-model development lifecycle. The candidate will collaborate with cross-functional teams and support agile development of advanced propulsion technologies including conventional and hybrid systems.
Key responsibilities:
Perform powertrain system function analysis and functional decomposition for vehicle propulsion systems Lead requirements elicitation, definition, and traceability from system level down to software level across the V-model lifecycle Develop and maintain high-level propulsion system functional requirements using
IBM DOORS / IBM DOORS
Next Generation (DNG) Define and document system attributes, interfaces, and requirements traceability in DNG Identify, analyze, and document propulsion system operating modes and system behaviors Understand and model energy conversion, storage, and delivery mechanisms in propulsion systems Ensure compliance with automotive standards, including OBD (On-Board Diagnostics) requirements Participate in Agile development processes, including backlog planning, sprint reviews, and risk identification Develop simulation and virtual models for propulsion features/functions using MATLAB/Simulink Create system architecture models using SysML tools such as IBM Rhapsody Collaborate with cross-functional teams including software, calibration, validation, and hardware engineering teams Support system validation, integration, and change management across the product lifecycle
Professional Skills:
Powertrain system engineering (conventional & hybrid propulsion systems) System-level function analysis & functional decomposition Requirements engineering & traceability (V-Model lifecycle)
IBM DOORS / DOORS
Next Generation (DNG) for requirements management Propulsion system operating modes definition & analysis Automotive powertrain architecture & vehicle system understanding Vehicle dynamics and overall vehicle behavior understanding MATLAB / Simulink for simulation and virtual modeling Sys
ML / IBM
Rhapsody for system modeling and architecture design Automotive standards compliance (including OBD - On-Board Diagnostics) Agile methodology (backlog planning, sprint participation, risk identification) Cross-functional collaboration (software, calibration, validation, hardware teams) Change management and vehicle development lifecycle understanding Technical documentation and requirement specification development