[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"job-motion-planning-robotics-jobs":3},{"Ques":4,"Slug":25,"Header":26,"job_category":60},{"title":5,"content":6},"Frequently Asked Questions",[7,10,13,16,19,22],{"A":8,"Q":9},"These roles build algorithms that generate safe, feasible trajectories for vehicles in real time. The work typically spans behavior planning, path planning, trajectory optimization, collision checking, and integrating planning with perception, localization, and controls in ADAS\u002FAV systems.","What are motion planning robotics jobs in automotive robotics?",{"A":11,"Q":12},"Yes. The position is Remote and FULL_TIME, based in the US.","Is this role remote and full-time?",{"A":14,"Q":15},"Skills aligned to motion planning robotics include motion planning, trajectory optimization, model predictive control, collision avoidance, behavior planning, path planning, sampling-based planning (RRT), graph search (A*), ROS, C++, Python, real-time systems, and autonomous driving simulation with scenario-based testing.","What skills should match this motion planning job posting intent?",{"A":17,"Q":18},"Expect questions on planning algorithms (A*, RRT, lattice, splines), constraint handling, cost function design, collision checking, vehicle kinematics\u002Fdynamics, real-time feasibility, and how you evaluate planning quality using scenario metrics and closed-loop simulation.","What is the typical interview focus for motion planning engineers?",{"A":20,"Q":21},"Employers commonly include technology companies, automotive robotics programs, AI labs, and tech startups building autonomy stacks, simulation platforms, and safety evaluation systems.","What types of employers hire for these roles via Rex.zone?",{"A":23,"Q":24},"Rex.zone may list remote contract, freelance, entry-level, and senior roles depending on current openings. This specific posting is for a full-time mid-senior role, but you can browse Rex.zone for other modifiers and levels.","Are contract, freelance, or senior options available on Rex.zone?","motion-planning-robotics-jobs",{"desc":27,"title":28,"content":29},"Motion planning robotics jobs focus on building search-recognizable autonomy workflows for Rex.zone: trajectory generation, collision avoidance, behavior planning, and real-time control for automotive robotics (ADAS and autonomous driving). In this full-time remote role at Rexzone (US), you will develop and evaluate planning algorithms that connect perception outputs to safe, comfortable vehicle motion under constraints. You will work with simulation and scenario-based testing to improve model performance, planning safety, and on-road robustness. This posting supports informational intent (what motion planning is), navigational intent (Rex.zone), and transactional intent (apply for remote full-time robotics engineering work).","Motion Planning Robotics Jobs",[30,33,36,39,42,45,48,51,54,57],{"h2":31,"desc":32},"Job Title","Motion Planning Robotics Engineer",{"h2":34,"desc":35},"LinkedIn Job Metadata","Title: Motion Planning Robotics Engineer\nDate: 25-02-2026\nCompany: Rexzone\nCountry: US\nRemote Type: Remote\nEmployment Type: FULL_TIME\nExperience Level: Mid-Senior\nIndustry: Technology\nJob Function: Engineering\nSkills: Motion Planning, Trajectory Optimization, Model Predictive Control, Collision Avoidance, Behavior Planning, Path Planning, Sampling-Based Planning, A Star, RRT, ROS, C Plus Plus, Python, Real-Time Systems, Autonomous Driving Simulation, Scenario-Based Testing\nSalary Currency: USD\nSalary Min: 63360\nSalary Max: 126720\nPay Period: YEAR",{"h2":37,"desc":38},"About Rex.zone","Rex.zone connects specialized engineering talent with remote roles across autonomy, robotics, and AI\u002FML production systems. Teams hiring through Rex.zone span tech startups, automotive robotics programs, and engineering organizations building planning stacks, simulation tooling, and safety-focused evaluation.",{"h2":40,"desc":41},"What You Will Do","Design and implement motion planning and trajectory generation modules for automotive robotics; develop behavior planning and constraint-based planning policies; integrate planning with perception and localization outputs; build scenario-based testing in simulation to validate safety and comfort; tune cost functions and constraints for real-time feasibility; conduct root-cause analysis for planning failures using logs, metrics, and visualization; collaborate with systems, controls, and infrastructure engineers to improve runtime performance; document planning assumptions, interfaces, and evaluation results to support planning QA and safety reviews.",{"h2":43,"desc":44},"Core Workflows And Concepts","Typical workflows include path planning, trajectory optimization, model predictive control, and collision checking across structured roads and dynamic agents. You will apply n-gram relevant concepts such as planning under uncertainty, kinematic constraints, safety envelopes, time-to-collision, drivable area constraints, map-based routing, and closed-loop simulation to drive model performance improvement and training data quality for scenario libraries.",{"h2":46,"desc":47},"Required Qualifications","Mid-senior experience shipping robotics or autonomy features; strong programming in C++ and Python; hands-on experience with planning algorithms (A*, RRT\u002FRRT*, lattice planning, spline optimization, MPC); understanding of vehicle dynamics, constraints, and safety considerations; experience with ROS or comparable robotics middleware; ability to design evaluation metrics, run ablation studies, and communicate tradeoffs clearly in engineering reviews.",{"h2":49,"desc":50},"Preferred Qualifications","Experience in autonomous driving stacks (ADAS or AV); familiarity with simulation tooling and scenario generation; experience with real-time systems profiling and optimization; knowledge of formal methods or safety validation; experience integrating planning with prediction modules and multi-agent interaction.",{"h2":52,"desc":53},"Tools And Tech Stack","C++\u002FPython planning services, ROS\u002FROS2 (or equivalent), simulation and replay tooling, CI pipelines for regression tests, metrics dashboards for scenario outcomes, and log-based debugging with visualization for trajectories, costs, and constraint violations.",{"h2":55,"desc":56},"Remote And Collaboration","This is a Remote full-time role in the US. You will collaborate asynchronously with distributed teams, participate in design reviews, and deliver planning features with measurable improvements in safety, comfort, and scenario pass rates.",{"h2":58,"desc":59},"How To Apply","Apply via Rex.zone with a resume highlighting motion planning ownership, trajectory optimization work, and scenario-based evaluation results. Include links to relevant publications, open-source contributions, or technical portfolios when available.","Robotics Engineering"]