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Swarm Robot Jobs in Virginia (NOW HIRING)

... robot and swarm systems. A defining feature of this role: the cognitive layer is not a conventional digital controller. Its outputs come from biological (organoid-based) and engineered neural ...

Swarm Robot information

What is a swarm robot?

Swarm robots are groups of simple, relatively inexpensive robots that work together to accomplish tasks by following decentralized, collaborative behaviors inspired by social insects like ants or bees. Each robot operates using basic rules and local information, but collectively they can perform complex tasks such as exploration, mapping, or object transportation. This approach enhances flexibility, scalability, and robustness, making swarm robots useful in applications where adaptability and fault tolerance are important. Swarm robotics is a growing field in robotics research and engineering, with potential uses in agriculture, environmental monitoring, and search-and-rescue operations.

What are some common challenges faced when working on swarm robotics projects, and how can they be addressed?

Professionals working in swarm robotics often encounter challenges related to coordination, communication, and scalability. Ensuring reliable communication among a large number of robots can be complex, especially in dynamic environments. Additionally, developing algorithms that allow the swarm to adapt to new tasks or unexpected obstacles requires strong problem-solving skills. Collaborating closely with interdisciplinary teams—such as software engineers, hardware specialists, and researchers—can help address these challenges through regular testing, simulation, and iterative development.

What are the key skills and qualifications needed to thrive as a swarm robotics engineer, and why are they important?

To excel as a Swarm Robotics Engineer, you need a solid background in robotics, computer science, and algorithms, often supported by a relevant engineering degree. Experience with programming languages (such as Python, C++), robotics simulation tools (like ROS, Gazebo), and familiarity with multi-agent systems are crucial, along with certifications in robotics or AI being advantageous. Strong problem-solving, teamwork, and analytical thinking skills help you design and coordinate large-scale robot behaviors effectively. These competencies are essential for developing robust, scalable, and efficient swarm robotic systems that operate collaboratively in real-world environments.

What is the difference between Swarm Robot vs Robot Programmer?

AspectSwarm RobotRobot Programmer
CredentialsBasic robotics knowledge, programming skillsAdvanced programming certifications, robotics degrees
Work EnvironmentResearch labs, manufacturing, field testingSoftware development environments, offices, labs
Industry UsageSwarm robotics, automation, researchRobotics software development, automation systems
Search IntentUnderstanding swarm robotics applicationsLearning robot programming skills

Swarm Robots are physical devices used in automation and research, focusing on collective behavior. Robot Programmers develop software to control robots, including swarm systems. While both roles involve robotics, Swarm Robots are hardware-focused, whereas Robot Programmers specialize in coding and software development for robotic systems.

What are popular job titles related to Swarm Robot jobs in Virginia?

For Swarm Robot jobs in Virginia, the most frequently searched job titles are:

What job categories do people searching Swarm Robot jobs in Virginia look for?

The top searched job categories for Swarm Robot jobs in Virginia are:

What cities in Virginia are hiring for Swarm Robot jobs?

Cities in Virginia with the most Swarm Robot job openings:

Lead Perception & Controls Engineer

Devyantram

Ashburn, VA • On-site

$155K - $175K/yr

Full-time

Re-posted 28 days ago


Job description

Devyantram is building a unified platform of bionic robots, from nanoscale to humanoid, powered by a bionic brain system that fuses biotechnology, nanotechnology, and AI to tackle global challenges in climate, medicine, and defense.
Role Summary
You will design the real-time sensing-to-action layer of Devyantram's robots, bridging perception, planning, control, and learning. This role owns how the CEREBRION bionic brain interacts with the physical world through sensors and actuators, and how the robot stays stable, precise, and adaptive in the loop, from single embodiments to coordinated multi-robot and swarm systems. A defining feature of this role: the cognitive layer is not a conventional digital controller. Its outputs come from biological (organoid-based) and engineered neural substrates coupled with optical processing, and a central part of your job is bridging that unconventional, non-deterministic compute to deterministic real-time control.
Key Responsibilities
• Architect end-to-end perception to control pipelines.
• Lead sensor fusion across vision, depth, tactile, and proprioceptive modalities.
• Develop closed-loop control for manipulation, locomotion, and balance.
• Apply both learning-based and classical control methods (MPC, whole-body control, RL hybrids).
• Own the ROS2-based control stack and simulation-to-real transfer.
• Integrate outputs from the platform's cognitive compute layer, which combines biological (organoid-based) and engineered neural substrates with optical processing, into deterministic real-time control loops, and own the rate, latency, and uncertainty mismatch across that boundary.
• Design multi-robot and swarm coordination: distributed estimation and control, multi-agent planning, consensus, and formation or collective behaviors across many agents and scales.
• Drive performance benchmarking in simulation and on hardware.
• Generate core controls and autonomy IP in coordination with patent counsel.
Required Qualifications
• MS or PhD in Robotics, Controls, EE, CS, or a related field.
• 8+ years in robotics, controls, or real-time autonomy, including deployment on physical systems.
• Strong foundation in control theory, robot dynamics and kinematics, and real-time systems.
• Excellent Python and C++.
• Deep ROS2 experience.
Strongly Preferred
• Humanoid or legged-robot control.
• Whole-body control, MPC, or task-space inverse dynamics.
• Vision-based manipulation and navigation.
• Experience with Isaac Sim, MuJoCo, or Gazebo.
• Hybrid classical-plus-learning control systems.
• Unconventional control systems, including bionic approaches.
• Multi-agent or swarm robotics, distributed control, or multi-robot coordination.
• Decentralized estimation and control (consensus, distributed MPC, or similar).
A Successful Candidate Will Be Measured By
• Stability, precision, and adaptability of robot behavior.
• Latency and robustness of closed-loop performance.
• Coordination, robustness, and scalability of multi-agent and swarm behavior.
• Clean integration across the cognition-to-actuation boundary, including the bridge from the unconventional cognitive substrate to real-time control.
The pay offered for this position may vary based on several individual factors, including job-related knowledge, skills, and experience. The total compensation package may also include additional components/benefits depending on the specific role. This information will be shared if an employment offer is extended.
The pay range for this role is:
155,000 - 175,000 USD per year (Ashburn, VA)