Are you passionate about leveraging modern methodologies and tools to understand automotive systems, study, and predict the degradation or occurrence of a problem in a vehicle component/system? Would you love to accelerate efforts to build amazing experiences and software products in the Connected Vehicles space - with data? We are seeking a top-tier engineering professional who is data-driven, self-motivated, and detail-oriented to help develop and deliver breakthrough prognostic features.
Required Skills & Qualifications
Proficiency in MATLAB and C - Ability to model using MATLAB Simulink and generate C code for prognostics degradation models.
Master’s degree with 5 years of automotive experience in engineering and/or data analytics.
5 years of proven knowledge of Robust Engineering Fundamentals, including defining requirements, DFMEA, P-Diagrams, and validation.
Experience working with system modeling language (MagicDraw) and process/interface mapping.
Experience working with Atlassian JIRA, JAMA, and Team Center applications.
Ability to clearly communicate technical ideas/findings to cross-functional engineering teams.
Applicants must be able to work directly for Artech on W2.
Preferred Skills & Qualifications
PhD or Master's degree in Automotive Engineering, Systems Engineering, Mechanical Engineering, Electrical Engineering, Electronics Engineering, Computer Science, or a related field.
2 years of experience defining system requirements using Gherkin scenarios and utilizing MATLAB/Simulink for end-to-end feature modeling and system simulation.
2 years of experience performing systems analysis and designing systems, subsystems, or components.
Experience in leading the development of a feature from concept to production.
Day-to-Day Responsibilities
Define system boundaries, establish logical and physical architectures, and allocate prognostic functions across different physical components.
Use MATLAB and Simulink to design control logic, model physical system dynamics, and auto-generate production-grade, highly efficient C code.
Operate dynamic laboratory environments, including dyno testing and e-Daq systems.
Design the system to comply with ISO 26262 and ISO 21434 to ensure the prognostic pipeline is secure from edge to cloud.
Design optimized network communication and transport protocols.
Use SQL on cloud platforms to partition, decode, and analyze raw CAN bus and sensor telemetry.
Collaborate cross-functionally to integrate prognostic alerts into user-friendly smartphone applications.
For immediate consideration, please click APPLY to begin the screening process with Alex.
Numbers & Facts
Location
Dearborn, MI
Skills
Analysis Skillsunmatched
Atlassian JIRAunmatched
Automotive Engineeringunmatched
Automotive Manufacturingunmatched
C Programming Languageunmatched
Cloud Computingunmatched
Communication Skillsunmatched
Computer Networksunmatched
Computer Scienceunmatched
Cross-Functionalunmatched
Data Analysisunmatched
Design Failure Mode and Effects Analysis (DFMEA)unmatched
Detail Orientedunmatched
Electrical Engineeringunmatched
Electronic Engineeringunmatched
ISO (International Organization for Standardization)unmatched
Leadershipunmatched
Logic Designunmatched
MATLABunmatched
Mechanical Engineeringunmatched
Mobile Applicationsunmatched
Modeling Languagesunmatched
Network Designunmatched
Network Protocolsunmatched
Requirements Managementunmatched
SQL (Structured Query Language)unmatched
Sales Pipelineunmatched
Simulationunmatched
Software Engineeringunmatched
Systems Analysisunmatched
Systems Engineeringunmatched
Telemetryunmatched
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