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Robotics Simulation Jobs in Kentucky (NOW HIRING)

Dyna Robotics makes general-purpose robots powered by a proprietary embodied AI foundation model ... POSITION OVERVIEW As a Research Engineer/Scientist focused on Simulation, you will build the ...

$95K - $123K/yr

Background in robotics simulation, physical AI, or large-scale content creation pipelines. * Experience building "self-healing" or automated remediation workflows. * Experience with cluster ...

$95K - $123K/yr

Background in robotics simulation, physical AI, or large-scale content creation pipelines. * Experience building "self-healing" or automated remediation workflows. * Experience with cluster ...

Build simulations and conduct real-world experiments to validate and improve robotic system performance. * Collaborate closely with hardware, controls, mechanical, and other engineering disciplines.

Robotics Software Engineer Hiring Department: Department of Computer Science Position Open To: All ... Develop automated testing, continuous integration, simulation, hardware-in-the-loop testing ...

These include robotics simulation, synthetic data generation, multi-step model training, and inference, all on a large scale! We are seeking a hands-on Solutions Architect with deep expertise in ...

Dyna Robotics makes general-purpose robots powered by a proprietary embodied AI foundation model ... The mechanical team owns major structural design and simulation, so you will work closely with them ...

Autonomous Systems Modeling and Simulation Engineer About the role Themodeling and simulation ... or robotic platforms--that can be used in performance prediction, controls development ...

We're redefining how robots are deployed. Our platform enables users to simulate, test, and optimize entire robotic systems in parallel. By removing the barriers that have kept advanced robotics out ...

Real-world robotics cannot be fully validated in simulation; physical hardware behavior and real-environment variability require hands-on QA judgment. You will hire and mentor a QA team, define ...

Validate perception algorithms through simulation prior to deployment. * Optimize perception ... Robotics, Computer Science, Computer Engineering, Electrical Engineering, Mechanical Engineering ...

Our Autonomous Vehicle Simulation team builds systems that help engineers develop, test, debug, and ... Bachelor's degree in Mechanical Engineering, Robotics, Computer Science, Electrical Engineering ...

... simulation and real-world environments * Raise the technical bar in hiring -- define role ... D. in Computer Science, Robotics, or a related field with a concentration in computer vision ...

Robotics Programming Manager Novoe is one of North America's leading trailer manufacturers, proudly ... Direct the use of simulation software (e.g., Fanuc Roboguide, Lincoln Electric WeldPro) to test and ...

Robotics Programming Manager 9 days ago Requisition ID: 3198 Novae is one of North America ... Direct the use of simulation software (e.g., Fanuc Roboguide, Lincoln Electric WeldPro) to test and ...

$150K/yr

We are now advancing our platform toward the next generation ofAI-driven robotics, combining autonomous systems,perception, simulation, and scalable software to create smarter, more adaptive ...

Write custom scripts to program factory automation tools like robotics and conveyance systems. * Leverage Data: Extract actionable insights from simulation data, employing statistical methods to ...

Showing results 21-40

Robotics Simulation information

What is robotics simulation?

Robotics simulation is the use of computer software to model and test the behavior of robots in a virtual environment. This allows engineers and researchers to design, program, and optimize robots without needing physical prototypes, saving time and resources. Simulations can replicate real-world conditions, enabling the analysis of robot movement, sensor data, and task performance before implementation. Robotics simulation is commonly used in developing autonomous systems, industrial automation, and research applications.

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

To thrive as a Robotics Simulation Engineer, you need a strong background in robotics, computer science, and mathematics, often supported by a relevant degree such as electrical engineering or mechanical engineering. Familiarity with simulation tools like Gazebo, ROS (Robot Operating System), MATLAB/Simulink, and programming languages such as Python or C++ is essential. Problem-solving, attention to detail, and effective teamwork are key soft skills that help in designing and refining complex simulation models. These abilities are crucial for creating accurate simulations that accelerate development, testing, and deployment of robotic systems.

What are some typical challenges faced when working in robotics simulation, and how can they be addressed?

Professionals in robotics simulation often encounter challenges such as accurately modeling real-world physics, ensuring simulation fidelity, and integrating with hardware or software systems. Addressing these requires a strong understanding of both robotics and simulation tools, as well as effective collaboration with engineers, software developers, and testers. Staying updated with advancements in simulation platforms and maintaining clear documentation are key strategies to overcome these challenges and ensure the simulations provide meaningful insights for development and testing.

What is the difference between Robotics Simulation vs Robotics Software Engineer?

AspectRobotics SimulationRobotics Software Engineer
Required CredentialsBachelor's in Robotics, Computer Science, or related; experience with simulation toolsBachelor's or higher in Computer Science, Robotics, or related; programming skills
Work EnvironmentResearch labs, simulation platforms, development teamsSoftware development teams, robotics companies, tech firms
Industry UsageTesting algorithms, virtual prototyping, system validationDeveloping robot control software, algorithms, and integration
Common Search/ComparisonYesYes

Robotics Simulation focuses on creating virtual environments to test and validate robotic systems, while Robotics Software Engineers develop the actual software that controls robots. Both roles often collaborate but serve different stages of robotics development, with simulation emphasizing testing and validation, and software engineering focusing on implementation and coding.

What are popular job titles related to Robotics Simulation jobs in Kentucky?

For Robotics Simulation jobs in Kentucky, the most frequently searched job titles are:

What cities in Kentucky are hiring for Robotics Simulation jobs?

Cities in Kentucky with the most Robotics Simulation job openings:

Infographic showing various Robotics Simulation job openings in Kentucky as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 15% Part Time, and 2% Contract. Highlights an 86% Physical, 3% Hybrid, and 11% Remote job distribution.

Research Engineer/Scientist, Simulation Redwood City, CA Fulltime

On-site

Other

Posted 26 days ago


Key responsibilities

  • Build a pipeline to reconstruct real, facility-scale environments into simulation, including 3D reconstruction and photorealistic re-rendering.

  • Procedurally generate navigable environments and obstacles to stress-test loco-manipulation policies across various spaces.

  • Generate synthetic training data for policies that jointly reason about base positioning and arm manipulation, and build simulation benchmarks to evaluate these policies.


Job description

Dyna Robotics makes general-purpose robots powered by a proprietary embodied AI foundation model that generalizes and self-improves across varied environments with commercial-grade performance. Dyna's robots have been deployed at customers across multiple industries. Its frontier model has the top generalization and performance in the industry.

Dyna Robotics has raised over $140M, backed by top investors including CRV, First Round Capital, Robostrategy, Salesforce Ventures, NVentures, Amazon, Samsung Next, and LG Technology Ventures. Our team brings together engineers and researchers from Google, Meta, Apple, Amazon, Cruise, Aurora, NVIDIA, along with academic roots at Stanford, Berkeley, MIT, UPenn, and beyond. We’re positioned to redefine the landscape of robotic automation.

POSITION OVERVIEW

As a Research Engineer/Scientist focused on Simulation, you will build the simulated worlds that power Dyna's loco-manipulation policies. Our robot is a wheeled mobile manipulator. Mobility and manipulation are tightly coupled, not two separate problems, so simulating one without the other misses what actually matters for our policies. You’ll own the pipeline end-to-end: from real-to-sim reconstruction of the facility-scale environments our robots navigate, through procedural scene generation, to sim-based training data and evaluation for policies that jointly control base motion and arm manipulation.

WHAT YOU'LL DO

Real-to-Sim Reconstruction: Build a pipeline that reconstructs real, facility-scale environments into simulation (3D reconstruction, photorealistic re-rendering). That means full rooms and aisles our wheeled base navigates, not just tabletop scenes.

Facility-Scale Scene Generation: Procedurally generate navigable environments (layouts, obstacles, object placement) that stress-test loco-manipulation policies across the range of spaces our robots actually operate in.

Loco-Manipulation Sim-for-Data-Gen: Generate synthetic training data for policies that jointly reason about base positioning and arm manipulation (approach angles, reachability, obstacle-aware repositioning), and feed real-world failure modes back into new sim scenarios.

Loco-Manipulation Evaluation: Build simulation benchmarks that test the joint base+arm policy (VLA / imitation learning / diffusion models) as a whole, not manipulation in isolation on a fixed base.

Rendering for ML, Not Just Physics: Push photorealistic rendering quality specifically to close the sim-to-real gap for vision-based loco-manipulation. Rendering fidelity is a first-class deliverable, not an afterthought on top of physics accuracy.

Cross-Team Collaboration: Partner with the AI Research team on where simulated data and evaluation most accelerate loco-manipulation policy development, and with Data Ops on what's worth capturing in the real world vs. generating in sim.

WHAT YOU'LL BRING
  • MS or PhD in CS/Robotics/Graphics, or equivalent hands-on experience. We care more about demonstrated depth building simulation/rendering systems than a fixed years-of-experience bar.

  • Hands-on experience with simulation stacks (MuJoCo, Isaac Sim/Isaac Lab, SAPIEN, Omniverse, Blender, or similar) for robotics or graphics.

  • Experience with procedural scene/asset generation, domain randomization, or photorealistic rendering pipelines at scale (not academic-scale one-off scenes).

  • Familiarity with training/evaluating manipulation or loco-manipulation policies (imitation learning, VLA, diffusion, or RL) and how simulated data actually feeds into them.

  • Experience simulating mobile bases (wheeled, tracked, or holonomic) is a real plus. Most of the field's simulation talent comes from fixed-arm tabletop manipulation or legged-humanoid balance/gait work, and neither maps cleanly onto a wheeled mobile manipulator.

  • Prior research or engineering background in loco-manipulation or whole-body control itself, coordinating mobile-base motion with arm manipulation, independent of any simulation-specific experience.

  • Strong Python skills; comfort with PyTorch or JAX for anything touching model training/eval.

  • Senior enough to define your own research agenda and exercise independent judgment on where simulation adds the most leverage. This is closer to a founding-type ownership role than a narrow IC slot on an existing pipeline.

BONUS POINTS FOR
  • Experience with real-to-sim-to-real pipelines (3D reconstruction, NeRF/Gaussian splatting, differentiable rendering).

  • Exposure to world-model / video-prediction research (e.g. learned dynamics or latent world models) as a complement to classical physics simulation.

  • GPU-scale physics simulation experience (CUDA, large-batch parallel sim) rather than single-instance sim.

  • Background simulating wheeled/mobile manipulators specifically (e.g. Boston Dynamics Stretch, warehouse/logistics robotics) rather than legged humanoids or fixed-base arms.

  • Publications at CoRL, RSS, ICRA, NeurIPS, CVPR, or SIGGRAPH.

  • Experience leading or mentoring within a small research team.

At Dyna Robotics, we build technology for the real world, which requires a team as diverse as the environments our robots inhabit. We are an equal opportunity employer committed to technical rigor and mutual respect.

Don't let a checklist stop you. Data shows that underrepresented groups often only apply if they meet 100% of the criteria. We value problem-solving and grit over keyword matching. If you're passionate about the intersection of geometry and robotics, we want to hear from you, even if you don't check every box.

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