ROSA (Rover Sequencing & Autonomy)

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ROSA is an open-source platform from NASA JPL designed for autonomous rover operations. It employs AI planning and constraint-based scheduling to automatically generate command sequences, validate them against mission rules, and enable rapid simulation and execution. ROSA streamlines mission planning, fault detection, and replanning for planetary robotics, reducing manual intervention and increasing reliability.
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May 09 2025
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ROSA (Rover Sequencing & Autonomy)

ROSA (Rover Sequencing & Autonomy)

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ROSA (Rover Sequencing & Autonomy)
ROSA is an open-source platform from NASA JPL designed for autonomous rover operations. It employs AI planning and constraint-based scheduling to automatically generate command sequences, validate them against mission rules, and enable rapid simulation and execution. ROSA streamlines mission planning, fault detection, and replanning for planetary robotics, reducing manual intervention and increasing reliability.
Added on:
Social & Email:
Platform:
May 09 2025
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What is ROSA (Rover Sequencing & Autonomy)?

ROSA (Rover Sequencing & Autonomy) is a comprehensive autonomy framework developed by NASA’s Jet Propulsion Laboratory for space robotics. It features a modular AI planner, constraint-aware scheduler, and built-in simulators that produce validated command sequences for rover operations. Users can define mission objectives, resource constraints, and safety rules; ROSA will generate optimal execution plans, detect conflicts, and support rapid replanning in response to unexpected events. Its plugin architecture allows integration with custom sensors, actuators, and telemetry analysis tools, facilitating end-to-end mission autonomy for planetary exploration.

Who will use ROSA (Rover Sequencing & Autonomy)?

  • Space robotics engineers
  • Autonomy researchers
  • Mission planners
  • Robotics software developers
  • University and lab researchers

How to use the ROSA (Rover Sequencing & Autonomy)?

  • Step1: Clone the ROSA repository from GitHub and install dependencies.
  • Step2: Configure your mission definition, including objectives, rover model, and constraints.
  • Step3: Launch the ROSA planner service and load the mission file.
  • Step4: Run the scheduling engine to generate command sequences.
  • Step5: Validate sequences using the built-in simulator and adjust parameters if needed.
  • Step6: Deploy the approved commands to your rover or ground testbed.

Platform

  • mac
  • windows
  • linux

ROSA (Rover Sequencing & Autonomy)'s Core Features & Benefits

The Core Features

  • AI mission planning and optimization
  • Constraint-based scheduling
  • Built-in command sequence simulator
  • Automatic conflict detection and replanning
  • Modular plugin architecture

The Benefits

  • Reduces manual mission sequencing effort
  • Ensures rule-compliant command generation
  • Speeds up simulation and testing
  • Improves fault tolerance and reliability
  • Facilitates rapid mission iteration

ROSA (Rover Sequencing & Autonomy)'s Main Use Cases & Applications

  • Autonomous Mars rover mission planning
  • Planetary surface exploration simulations
  • Research on AI planning algorithms
  • Hardware-in-the-loop rover testing
  • University robotics autonomy courses

FAQs of ROSA (Rover Sequencing & Autonomy)

ROSA (Rover Sequencing & Autonomy) Company Information

ROSA (Rover Sequencing & Autonomy) Reviews

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ROSA (Rover Sequencing & Autonomy)'s Main Competitors and alternatives?

  • CLARAty
  • ROSPlan
  • ROS 2 Autoware
  • NASA F’ framework
  • OpenRAVE

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