The Role
Research, design, implement, test, and deploy robotics software for autonomous air vehicles including perception, planning (RRT/RRT*), sensor integration, multi-sensor calibration, simulation with Gazebo, and field testing on physical platforms.
Summary Generated by Built In
SENIOR ROBOTICS SOFTWARE ENGINEER
Near Earth Autonomy seeks a Senior Robotics Software Engineer in Pittsburgh, PA to research, design, develop, refine, test, and deploy software systems for autonomous air vehicles to enable static obstacle detection and avoidance and safe landing on ground; research, design, develop, refine, test, and deploy software systems for autonomous air vehicles to enable mission planning, air traffic sensing and avoidance, flight without GPS, contingency management, and safe and precision landing on ground and on moving platforms; implement these capabilities on sensing and computing hardware and integrate them onto aerial platforms ranging from small quadcopters to helicopters; design and implement software stacks for autonomous vehicles; design and test autonomous aircraft systems using the Gazebo plugin within the Gazebo Sim simulation environment; research and implement techniques to increase algorithms’ real-time efficiency; perform calibration of multi-sensor systems; and deploy and test robotics software on physical mobile robots in field conditions. Occasional local telecommuting is permitted.
Requirements: Master’s degree or foreign equivalent in Robotics, Computer Science, Electrical Engineering, Mechanical Engineering, Computer Engineering, Aerospace Engineering, or related field. Five years of industry and/or research experience in robotics and/or autonomous flight domains. Experience must include: (i) design and implementation of sensing and perception algorithms and software stacks, including integrating sensor interfaces and processing data streams; (ii) point cloud and obstacle map generation from 3d sensor data and processing for obstacle detection on air or on ground; (iii) design and test of robotics systems and infrastructure using the Gazebo plugin within the Gazebo Sim simulation environment; (iv) deployment and test of robotics software on physical mobile robots in field conditions; (v) advanced object-oriented programming in C++ for real-time robotics systems, including implementation of efficient algorithms and sensor interfaces; (vi) design and implementation of robotics applications using ROS (Robot Operating System) and ROS2, including node communication, environment setup, and architectural infrastructure; (vii) software development in a Linux environment using the Git version control system to maintain packages and manage release history across distributed teams and tools using Docker for environment reproducibility; and (viii) technical support to robotics software co-developers. Must have knowledge of (i) RRT/RRT* path planning algorithms and integration of motion planners with robotics systems; (ii) extrinsic calibration of multi-sensor systems composed of lidars and cameras; and (iii) tools to unify data streams. Travel required within U.S. about 6 times per year, about 3 days per trip for flight tests and demonstrations.
Apply online: https://nearearthautonomy.applytojob.com/apply/IpJPpfVzxO/Senior-Robotics-Software-Engineer
Skills Required
- Master's degree or foreign equivalent in Robotics, Computer Science, Electrical/Mechanical/Computer/Aerospace Engineering, or related field
- Five years of industry and/or research experience in robotics and/or autonomous flight domains
- Design and implementation of sensing and perception algorithms and software stacks, including integrating sensor interfaces and processing data streams
- Point cloud and obstacle map generation from 3D sensor data for obstacle detection (air and ground)
- Experience designing and testing robotics systems and infrastructure using the Gazebo plugin within Gazebo Sim
- Deployment and testing of robotics software on physical mobile robots in field conditions
- Advanced object-oriented programming in C++ for real-time robotics systems, including efficient algorithms and sensor interfaces
- Design and implementation of robotics applications using ROS and ROS2 (node communication, environment setup, architecture)
- Software development in a Linux environment using Git for version control and Docker for reproducible environments
- Provide technical support to robotics software co-developers and distributed teams
- Knowledge of RRT/RRT* path planning algorithms and integrating motion planners with robotics systems
- Extrinsic calibration of multi-sensor systems composed of lidars and cameras
- Experience with tools/techniques to unify and synchronize data streams from multiple sensors
- Willingness to travel within the U.S. ~6 times per year for 3-day flight tests and demonstrations
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The Company
What We Do
Creating a future where autonomous flight is safe and accessible.


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