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Lunar Outpost
Task and Motion Planning Engineer
Career Insights for Robotics Software Engineer
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What they do
A Robotics Software Engineer develops and builds software systems related to the operation and development of robots, typically for the manufacturing or transportation industries.
$146,369 / year median in Colorado
+20% projected growth
Job Description
Task and Motion Planning Engineer Lunar Outpost - 3.0 Golden, CO Job Details Full-time $100,000 - $130,000 a year 22 hours ago Benefits Paid holidays Health insurance Dental insurance Tuition reimbursement Paid time off 401(k) 4% Match Parental leave Vision insurance 401(k) matching Qualifications Software engineering Programming languages Bachelor's degree Agile software development Risk assessment Cross-functional communication Full Job Description Are you passionate about shaping the future of humanity's presence in space? Lunar Outpost, a trailblazer in space robotics, invites you to join our team ! Lunar Outpost is dedicated to creating a sustainable presence in space, while also driving positive impacts here on Earth. We are seeking a talented, experienced Task and Motion Planning Engineer As a Task and Motion Planning Engineer, you will play a pivotal role in the development of cutting-edge decision making and planning systems for our lunar rovers and orbital assets. Working at the intersection of autonomy, robotics, and space exploration, you will design, develop, and implement sophisticated software solutions that enable coordination of cross-domain autonomous systems. Your work will not only contribute to groundbreaking missions but also to technologies that have the potential to benefit humanity on Earth. Collaborating with cross-disciplinary engineering teams, you will help drive the integration of these systems into a unified, state-of-the-art autonomy stack, pushing the boundaries of what's possible in space exploration. Take the #NextLeap with Lunar Outpost and work on the Pegasus LTV, which will carry NASA astronauts farther than they've ever been before on the lunar surface! Key Responsibilities Lead the design and development of decentralized decision-making algorithms for lunar rovers and orbital assets Develop and implement robust software capable of enabling autonomous operations in challenging lunar environments Collaborate with systems, mechanical, electrical, and thermal engineering teams to integrate and optimize autonomy software with asset hardware Utilize simulation techniques to improve autonomous system performance and reliability under various conditions in space Conduct field tests and simulations to validate and refine algorithms and software systems Ensure software systems adhere to industry standards for safety, reliability, and performance in space exploration contexts Develop and maintain technical documentation, including ICDs and verification plans Participate in design reviews, trade studies, and technical risk assessments Stay at the forefront of autonomy and robotics technology, incorporating the latest advancements into our projects Required Qualifications Bachelor's degree or higher in Computer Science, Robotics Engineering, or related field At least 3 years of relevant professional experience in developing autonomy software for autonomous systems, with a proven track record in navigation, perception, or belief space planning. Applicants should have expertise in at least one of the following areas: Methods for solving Markov decision processes (e.g., value iterate, Monte Carlo tree search, reinforcement learning) Coordinated planning and control of multi-agent systems Motion planning methods (e.g., A•, FMM, RRT) Belief space planning (e.g., BRM, RRBT) Tasking and scheduling Orbital planning and control algorithms Expertise in programming languages such as C++, Python, and familiarity with ROS (Robot Operating System) Comfortable working in research-oriented, agile, and interdisciplinary teams Track record of innovation in networking, robotics, or space systems, as demonstrated by patents, publications, or significant project achievements Exceptional ability to communicate complex technical concepts and collaborate across various engineering disciplines U.S. Citizen Preferred Qualifications M.S. or Ph.D. in a field relevant to autonomy or robotics directly applicable to autonomous navigation and guidance Experience with autonomous systems in space, or other extreme, unstructured, environments. Familiarity with space operating systems (e.g., VxWorks) and software (e.g., cFS) Familiarity with containers (e.g., Docker) and virtualization software (e.g., VirtualBox) Experience with the end-to-end development and deployment of network software systems in space exploration missions