1

Vehicle Dynamics Simulation Engineer Jobs in Massachusetts

A System Modeling & Simulation Engineer (DMTS) designs, develops, validates, and maintains dynamic simulations and infrastructure for rapid assessment, integration, and test of complex systems.

A System Modeling & Simulation Engineer (DMTS) designs, develops, validates, and maintains dynamic simulations and infrastructure for rapid assessment, integration, and test of complex systems.

A System Modeling & Simulation Engineer (DMTS) designs, develops, validates, and maintains dynamic simulations and infrastructure for rapid assessment, integration, and test of complex systems.

... simulation studies to include but not limited to system and component performance, engineering ... Develop relevant models and constraints to run complex dynamic structural, thermal, or other ...

$135K - $152K/yr

... simulation studies to include but not limited to system and component performance, engineering ... Develop relevant models and constraints to run complex dynamic structural, thermal, or other ...

$135K - $152K/yr

... simulation studies to include but not limited to system and component performance, engineering ... Develop relevant models and constraints to run complex dynamic structural, thermal, or other ...

next page

Showing results 1-20

Vehicle Dynamics Simulation Engineer information

What does a vehicle dynamics simulation engineer do?

A Vehicle Dynamics Simulation Engineer is responsible for analyzing and predicting how vehicles behave under various driving conditions using computer simulations. They create and validate models of vehicles to assess performance, safety, and handling characteristics before physical prototypes are built. Their work helps optimize vehicle designs, reduce development costs, and improve overall driving experience. They collaborate closely with design, testing, and software teams to ensure simulation results align with real-world performance.

What are the key skills and qualifications needed to thrive as a vehicle dynamics simulation engineer?

To thrive as a Vehicle Dynamics Simulation Engineer, you need a solid background in mechanical or automotive engineering, vehicle dynamics, and numerical modeling, often supported by a relevant degree. Expertise in simulation tools such as MATLAB/Simulink, CarSim, Adams, and familiarity with programming languages like Python or C++ are typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help you analyze complex data and work efficiently in cross-functional teams. These competencies are crucial for accurately predicting and optimizing vehicle performance, ensuring safety, and driving innovation in automotive development.

What are the most common challenges faced by vehicle dynamics simulation engineers when integrating simulation results with real-world vehicle testing?

One of the main challenges Vehicle Dynamics Simulation Engineers encounter is ensuring that simulation models accurately reflect real-world vehicle behavior. This often involves extensive validation and correlation work, where discrepancies between simulated and actual test data must be carefully analyzed and resolved. Factors such as tire modeling, environmental conditions, and sensor accuracy can introduce variability, requiring close collaboration with test engineers and data analysts. Additionally, staying updated with the latest simulation tools and methodologies is critical to address evolving vehicle architectures and technologies.

What cities in Massachusetts are hiring for Vehicle Dynamics Simulation Engineer jobs?

Cities in Massachusetts with the most Vehicle Dynamics Simulation Engineer job openings:

Senior Staff Robotics Simulation Engineer - Thermal & Fluids Analysis

Waltham, MA • On-site

Boston Dynamics
Industrial Automation Equipment Manufacturing • 51 - 200 employees

$154K - $180K/yr

Full-time

Posted 23 days ago


Key responsibilities

  • Design and develop structural components and assemblies for the Atlas robot, ensuring performance and cost efficiency.

  • Select appropriate production processes and create detailed CAD models, drawings, and specifications for manufacturing.

  • Troubleshoot design issues, manage vendor collaborations, and mentor junior team members on structural design and production best practices.


Job description

Boston Dynamics is looking for a Senior Staff Robotics Simulation Engineer to join our Virtual Product Development team.
As a Senior Staff Robotics Simulation Engineer focusing on Thermal & Fluids Analysis. You will be responsible for defining the global thermal management strategy and multi-physics simulation roadmap for Boston Dynamics' next-generation robotic platforms. This role transcends traditional analysis by establishing the foundational methodologies, standardized workflows, and high-fidelity correlation frameworks required for complex robotic actuators. As a top-level subject matter expert, you will bridge the gap between advanced thermal-fluid science and scalable hardware production, ensuring that our robots can operate reliably in the world's most challenging environments.
Boston Dynamics is a world leader in mobile robots, tackling some of the toughest robotics challenges. For years, our awe-inspiring viral videos on YouTube have shown the world what remarkably capable robots can do. Now we are quickly becoming a recognized leader in automation solutions for industrial applications and warehouse logistics.
What You'll Do:
  • Define the long-term vision for thermal and fluid dynamics simulation across the organization, aligning virtual product development (VPD) with the hardware engineering roadmap.
  • Create and enforce standardized, practical CFD evaluation processes that transition our capabilities from academic research to high-velocity industrial execution (EVT/DVT/PVT).
  • Lead the design of sophisticated thermal experiments and instrumentation strategies to synchronize simulation models with empirical data, achieving industry-leading predictive accuracy.
  • Drive structural and thermal trade-off decisions for high-torque actuators, influencing mechanical architecture to optimize heat dissipation, weight, and power density.
  • Build and govern a comprehensive, proprietary database of robotics-specific parameters, including advanced air models, radiation emissivity, and contact resistance coefficients.
  • Lead the integration of thermal-fluid analysis with Static/Dynamic FEA, evaluating the holistic impact of thermal gradients on structural integrity and robotic precision.
  • Serve as a key advisor to leadership on technical risks and hardware scalability, influencing design decisions across mechanical, electrical, and control software teams.
  • Lead the technical review board for all thermal/fluid-related analyses and mentor other engineers to elevate the organization's collective simulation expertise.

What You Bring:
  • Strategic Execution: Translate high-level product goals into concrete simulation milestones, delivering robust hardware solutions even under extreme technical ambiguity.
  • Systemic Collaboration:Navigate complex organizational structures to align divergent technical requirements into a unified, high-performance system design.
  • Disruptive Innovation: Identify and implement cutting-edge simulation technologies (e.g., AI-driven optimization, real-time thermal digital twins) to maintain a competitive edge.
  • Organizational Maturity: Proactively identifies gaps in current development processes and implements structural changes to boost engineering efficiency.

Your Core Skills:
  • Unrivaled proficiency in Ansys Fluent/Mechanical, STAR-CCM+, or Simcenter Flotherm, with deep experience in custom UDF (User Defined Function) development.
  • Doctoral-level understanding of conduction, convection, and radiation, specifically in the context of high-power-density electromechanical systems.
  • Proven ability to lead complex lab setups, utilizing high-end data acquisition (DAQ) and sensing technologies to validate virtual twins.
  • Mastery of Python, C++, or MATLAB to build proprietary simulation tools and automate enterprise-level workflows.
  • Deep knowledge of high-performance materials, aerospace-grade coatings, and advanced manufacturing processes for robotic components.

Required Experience:
  • PhD or MS in Mechanical Engineering, Aerospace Engineering, or Thermal Science with a focus on fluid dynamics and heat transfer.
  • 10+ years of professional experience, with a proven record of establishing simulation departments or leading large-scale virtual validation programs for complex products.
  • Demonstrated success in taking a product from blank-sheet architecture through mass production, specifically managing the thermal challenges of high-density actuators.

We are interested in every qualified candidate who is eligible to work in the United States. However, we are not able to sponsor visas for this position.
The salary range for this position will be clearly stated in the job posting as required by Massachusetts law. The base pay range for this position is between $154,000 - $180,000. Base pay will depend on multiple individualized factors including, but not limited to internal equity, job related knowledge, skills and experience. This range represents a good faith estimate of compensation at the time of posting.
Boston Dynamics will never ask you to divulge your personal financial or account information as part of its recruiting process.
#LI-MD1