Powertrain Controls Simulation Model Developer - Plant Modeling
Job in
Dearborn, Wayne County, Michigan, 48120, USA
Listed on 2026-07-24
Listing for:
Ford Motor Company
Full Time
position Listed on 2026-07-24
Job specializations:
-
Software Development
Job Description & How to Apply Below
The Core Modeling and Simulation team supports powertrain controls developers and calibrators with an ecosystem of advanced simulation tools used to validate modern control systems. The Core Modeling and Simulation Team is responsible for creating, maintaining, and scaling the virtual vehicle ecosystem. Their primary mission is to eliminate the dependency on physical prototypes during the software development cycle. This is not a traditional mechanical engineering team, nor is it a pure software team.
It is a hybrid group of multi-disciplinary experts. The team operates like a modern software development house, applying software engineering best practices to physical modeling. Joining this team means having a massive lever of influence; your models will directly impact the development and safety of almost every vehicle in the Ford lineup.
Our Mission:
We build Ford's "digital twins" to eliminate dependency on physical prototypes during the software development cycle. We create the virtual playground where embedded software controls and calibration teams can safely test, break, and perfect vehicle code.
Our Culture & Dynamics:
We are a hybrid group of multi-disciplinary experts-combining physical systems modeling (thermodynamics, electromagnetics, fluid dynamics) with modern software engineering. We pride ourselves on a culture of mentorship, collaborative code reviews, and cross-functional learning.
Our Technical Ecosystem:
We operate like a modern software development house. We manage our codebase using Git, track our work in Jira, and utilize an automated Continuous Integration (CI) pipeline to run unit, system, and full-vehicle validation maneuvers.
Our Reach:
We are a highly visible hub within Ford, collaborating daily with Physical Component Design Teams, Embedded Controls Teams, and Calibration/ADAS teams to distribute our plant models as Functional Mock-up Units (FMUs).
In this role, you will focus on Plant Modeling; building the high-fidelity virtual representations of the physical vehicle hardware (the "plant," such as engines, electrical networks, and transmissions) that we use to test and validate our control software. By creating these virtual environments, you enable our teams to run comprehensive Model-in-the-Loop (MIL), Software-in-the-Loop (SIL), and Hardware-in-the-Loop (HIL) testing scenarios long before physical prototypes are built.
Ford's Electric Vehicles, Digital and Design (EVDD) team is charged with delivering the company's vision of a fully electric transportation future. EVDD is customer-obsessed, entrepreneurial, and data-driven and is dedicated to delivering industry-leading customer experience for electric vehicle buyers and owners. The Core Modeling and Simulation Team drives Ford's virtual-first validation strategy. We design and maintain high-fidelity, real-time plant models that represent engines, transmissions, electrical systems, and batteries.
Through a modern software workflow (Git, Jira, CI/CD) and distribution as FMUs, we enable MIL/SIL/HIL testing across ICE, Hybrid, and BEV programs. This team is the cross-functional hub for physical modeling, providing scalable, reusable solutions that accelerate safe, high-quality vehicle development.
What you'll do...
* Architect & Design Plant Models:
Define system architectures, subsystem interfaces, and component models in Simulink and Simscape. Ensure models are detailed enough to validate control systems but fast enough to run in real-time (or faster) on HIL and SIL simulators.
* Lead Whitespace Projects:
Own the end-to-end development, integration, and validation of our new Simscape-based diesel engine and electrical system models.
* Develop Parameterization Strategies:
Establish strategies for populating and tuning plant models using data sourced from physical component testing, dyno runs, and vehicle calibration activities.
* Integrate with Simulation
Infrastructure: Design robust model interfaces, paying special attention to virtual sensors and actuators to ensure seamless integration with our automated MIL/SIL/HIL testing processes.
* Validate & Automate:
Apply an iterative development approach. Use our automated Continuous Integration (CI) pipeline to run unit, system, and full-vehicle validation maneuvers, comparing simulation results against physical vehicle data.
* Collaborate Cross-Functionally:
Partner with a deeply experienced team of modelers, controls engineers, and ADAS teams. Build an internal network of Ford system experts to align simulation capabilities with future vehicle product cycles.
* Apply your knowledge and experience with automotive systems to develop models which are appropriately detailed, yet fast enough, to support validation of ECU…
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