ROAI provides Xelo, an AI-powered planning engine that designs and optimizes robotic automation processes for manufacturing. This system verifies target feasibility, intelligently assigns tasks to robots, and generates collision-free motion paths. The platform significantly reduces lead time and cycle time by automating complex robot programming and task allocation.
Funding
$988K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Manual factory planning and robot task programming are time-consuming processes that require specialized engineering expertise. This leads to extended lead times for automation deployment and limits the ability to rapidly adapt production lines to new products or configurations.
Solution
ROAI offers an AI-powered platform that automates the entire workflow for factory planning and robot task execution. The system generates optimal robot poses, assigns tasks efficiently, and creates collision-free motion trajectories for various robotic systems. This accelerates manufacturing automation by streamlining the process from initial layout validation to on-site robot programming. The platform's capabilities enable rapid simulation of new product introductions and optimize existing production lines for enhanced efficiency.
Target Audience
The primary customers are manufacturing engineers and automation integrators seeking to accelerate the design, simulation, and deployment of robotic systems in production environments.
Features
- AI-driven Pose Finder for identifying feasible robot poses and filtering unreachable targets.
- Automated Task Assignment and Scheduling to optimize robot workload and task sequencing.
- Motion Planner that generates collision-free robot trajectories.
- End-effector recommendation engine based on a data repository for accelerated design.
- Simulation tools for rapid assessment of new product integration and cycle time prediction.
- Laser-based calibration analysis for precise robot motion correction in virtual environments.
- Support for diverse robotic systems including 6-axis robots, AGVs, and humanoid robots.
- Generation of robot manufacturer-specific program formats for direct deployment.