Multi-domain and Control Model Integrator Analyst in Brazil at Jobgether
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Job Description
This position is listed on behalf of a partner company, who manages all applications and next steps. Our partner is looking for a Multi-domain and Control Model Integrator Analyst based in Brazil.
This is a highly technical opportunity focused on advancing modeling and control solutions for electrified vehicle propulsion systems.
You will lead the development of proprietary frameworks and sophisticated models based on first principles and real-world engineering requirements.
The role combines vehicle propulsion expertise, control strategy development, simulation, and software-oriented engineering.
You will integrate control logic with physical models to accurately represent complex hybrid and electrified powertrain behavior.
Working with multidisciplinary engineering teams, you will help solve technical challenges and improve modeling tools and workflows.
Your analyses and recommendations will directly support senior engineering stakeholders, component specialists, and powertrain decision-makers.
The environment is international, engineering-driven, and focused on innovation in next-generation automotive technologies.
- Lead the development of proprietary frameworks, models, and code for analyzing electrified propulsion technologies.
- Develop high-complexity models from first principles, translating physical and engineering concepts into robust simulation solutions.
- Integrate basic and advanced control logic governing the physical behavior of components and systems represented within proprietary frameworks.
- Develop and maintain pre-processing and post-processing tools to improve model usability, analysis efficiency, and engineering workflows.
- Support users in diagnosing and resolving technical issues associated with proprietary frameworks, codes, and simulation tools.
- Apply advanced knowledge of hybrid and electrified propulsion systems to model and evaluate system behavior, performance, and energy management.
- Develop and integrate control strategies for hybrid and electrified powertrains, including Torque Path strategies and energy-management optimization.
- Apply simulation and modeling techniques to support engineering analysis and technology development across multiple propulsion domains.
- Communicate technical findings, analyses, and recommendations through clear presentations and written reports for Chief Engineers, Centers of Excellence, component engineers, and powertrain managers.
- Collaborate with multidisciplinary engineering stakeholders to ensure models and control solutions meet technical requirements and project objectives.
- Contribute to continuous improvement of modeling methodologies, proprietary tools, and engineering processes.
- Master’s degree in Engineering, preferably Mechanical, Electrical, Aerospace, Industrial, or Automotive Engineering.
- Previous professional experience within the automotive industry.
- Advanced written and spoken English communication skills.
- Deep understanding of vehicle propulsion systems, including internal combustion engines, transmissions, axles, drivelines, batteries, and electric motors.
- Strong knowledge of hybrid and electrified vehicle control strategies and energy-management optimization.
- Solid understanding of Torque Path strategies for hybrid and electrified propulsion systems.
- Knowledge of Equivalent Consumption Minimization Strategy (ECMS) for energy management.
- Advanced proficiency with engineering and simulation tools such as MATLAB/Simulink, Stateflow, and GT-Suite.
- Strong proficiency with Microsoft Office, particularly Excel, Word, and PowerPoint, as well as Microsoft Teams.
- Strong analytical and problem-solving capabilities, with the ability to translate complex physical systems into reliable models and control logic.
- Excellent technical communication skills and the ability to present complex engineering results to both technical specialists and senior stakeholders.
- Knowledge of fluid dynamics and heat transfer is considered an advantage.
- Experience with production controls is a plus.
- Experience using Git for code versioning and collaborative development workflows is desirable.
- Experience with vehicle testing or engineering data analysis is an additional advantage.
- Ability to work effectively in multidisciplinary, collaborative, and international engineering environments.
- Opportunity to work on advanced hybrid and electrified vehicle propulsion technologies.
- Exposure to complex engineering challenges spanning modeling, simulation, controls, and powertrain systems.
- International and multidisciplinary working environment.
- Opportunity to contribute to proprietary engineering frameworks and next-generation automotive solutions.
- Collaboration with senior engineering professionals, Chief Engineers, component specialists, and powertrain teams.
- Professional development through technically challenging projects and exposure to advanced automotive technologies.
- Inclusive workplace committed to equality, diversity, and inclusion.
- Opportunity to develop expertise across multiple engineering domains within a global automotive environment.