About
Full-Body VR Teleoperation for Humanoid Robots
Configure immersive VR control capabilities that allow operators to transfer full-body movements to compatible humanoid robots through supervised teleoperation.
Avatar Teleoperation enables research, education, demonstrations, and controlled testing scenarios by transforming human motion into robotic actions through VR-based interaction.
Extend Humanoid Robot Capabilities Through Immersive Control
Avatar Teleoperation provides a complete VR control layer for compatible humanoid robots, allowing operators to control robot movement through mapped body motion.
The configuration combines VR hardware, motion tracking, and robotic control workflows to support supervised teleoperation without requiring organizations to build a teleoperation stack from scratch.
Supported Humanoid Platforms
| Platform | Compatibility |
|---|---|
| Unitree G1 U1 | Supported |
| Unitree G1 EDU U2 | Supported |
| Unitree R1 EDU U2 | Supported |
Key Capabilities:
Maps operator body movements to humanoid robot motion, enabling coordinated control of upper and lower body movements.
Provides an intuitive VR-based interface for supervised robotic operation.
Supports humanoid movement scenarios, including walking and lower-body motion control on compatible platforms.
Enables upper-body manipulation workflows depending on the installed robot configuration.
Capture and review teleoperation sessions for training, research, and analysis.
Support controlled operation through defined safety zones and supervised workflows.
What's Included:
VR teleoperation setup
Motion tracking configuration
Control workflow configuration
Compatibility assessment
System calibration support
Deployment preparation guidance
How It Works:
We confirm your robot, VR hardware, and environment meet requirements.
Configure motion mapping, define physical boundaries, and test E-stop.
Operator controls the robot via VR in the same physical space.
Optional remote control after confirming latency and bandwidth.
Capture sessions for review, research data collection, or operator training.
Hardware Requirements:
| Category | Requirements |
|---|---|
| Required |
|
| Recommended |
|
| Customer-Provided |
|
Use Cases:
Explore human-robot motion transfer, teleoperation workflows, and robotic behavior studies.
Provide students with hands-on experience in humanoid robot control and interaction.
Create immersive experiences showcasing humanoid robot capabilities.
Record and analyze operator sessions for learning and evaluation.
Safety Requirements:
- Controlled indoor environments with defined safety zones
- Trained operator/instructor required at all times
- Clear E-stop points (robot, operator, supervising operator)
- Internet teleoperation limited to latency-tolerant tasks with network pre-qualification
Ongoing Support:
Keep Your Robotic Workflow Optimized
Futurology provides optional ongoing support to help maintain and optimize Avatar Teleoperation deployments.
Support may include:
- Configuration adjustments
- Technical reviews
- Deployment reassessment after hardware or environment changes
- Workflow optimization
FAQ:
1. Which robots does Avatar Teleoperation support?
2. Which VR headsets can I use?
3. What's the difference between local and internet teleoperation?
- Local teleoperation: allows the operator and robot to operate in the same physical environment and network.
- Internet teleoperation: enables remote operation over a network connection but requires evaluation of latency, bandwidth, and stability.
4. What network quality is required?
5. How do safety boundaries and emergency stops work?
6. Can students use Avatar Teleoperation in classrooms?
7. What tasks are suitable for Avatar Teleoperation?
Suitable scenarios include:
- Demonstrations
- Motion data collection
- Training
- Research workflows
- Telepresence
- Controlled inspection scenarios
The system is not intended for hazardous or unsupervised operations.
8. How does session recording work?
9. What happens if the robot or environment changes?
Full-Body VR Teleoperation for Humanoid Robots
Configure immersive VR control capabilities that allow operators to transfer full-body movements to compatible humanoid robots through supervised teleoperation.
Avatar Teleoperation enables research, education, demonstrations, and controlled testing scenarios by transforming human motion into robotic actions through VR-based interaction.
Extend Humanoid Robot Capabilities Through Immersive Control
Avatar Teleoperation provides a complete VR control layer for compatible humanoid robots, allowing operators to control robot movement through mapped body motion.
The configuration combines VR hardware, motion tracking, and robotic control workflows to support supervised teleoperation without requiring organizations to build a teleoperation stack from scratch.
Supported Humanoid Platforms
| Platform | Compatibility |
|---|---|
| Unitree G1 U1 | Supported |
| Unitree G1 EDU U2 | Supported |
| Unitree R1 EDU U2 | Supported |
Key Capabilities:
Maps operator body movements to humanoid robot motion, enabling coordinated control of upper and lower body movements.
Provides an intuitive VR-based interface for supervised robotic operation.
Supports humanoid movement scenarios, including walking and lower-body motion control on compatible platforms.
Enables upper-body manipulation workflows depending on the installed robot configuration.
Capture and review teleoperation sessions for training, research, and analysis.
Support controlled operation through defined safety zones and supervised workflows.
What's Included:
VR teleoperation setup
Motion tracking configuration
Control workflow configuration
Compatibility assessment
System calibration support
Deployment preparation guidance
How It Works:
We confirm your robot, VR hardware, and environment meet requirements.
Configure motion mapping, define physical boundaries, and test E-stop.
Operator controls the robot via VR in the same physical space.
Optional remote control after confirming latency and bandwidth.
Capture sessions for review, research data collection, or operator training.
Hardware Requirements:
| Category | Requirements |
|---|---|
| Required |
|
| Recommended |
|
| Customer-Provided |
|
Use Cases:
Explore human-robot motion transfer, teleoperation workflows, and robotic behavior studies.
Provide students with hands-on experience in humanoid robot control and interaction.
Create immersive experiences showcasing humanoid robot capabilities.
Record and analyze operator sessions for learning and evaluation.
Safety Requirements:
- Controlled indoor environments with defined safety zones
- Trained operator/instructor required at all times
- Clear E-stop points (robot, operator, supervising operator)
- Internet teleoperation limited to latency-tolerant tasks with network pre-qualification
Ongoing Support:
Keep Your Robotic Workflow Optimized
Futurology provides optional ongoing support to help maintain and optimize Avatar Teleoperation deployments.
Support may include:
- Configuration adjustments
- Technical reviews
- Deployment reassessment after hardware or environment changes
- Workflow optimization
FAQ:
1. Which robots does Avatar Teleoperation support?
2. Which VR headsets can I use?
3. What's the difference between local and internet teleoperation?
- Local teleoperation: allows the operator and robot to operate in the same physical environment and network.
- Internet teleoperation: enables remote operation over a network connection but requires evaluation of latency, bandwidth, and stability.
4. What network quality is required?
5. How do safety boundaries and emergency stops work?
6. Can students use Avatar Teleoperation in classrooms?
7. What tasks are suitable for Avatar Teleoperation?
Suitable scenarios include:
- Demonstrations
- Motion data collection
- Training
- Research workflows
- Telepresence
- Controlled inspection scenarios
The system is not intended for hazardous or unsupervised operations.
8. How does session recording work?
9. What happens if the robot or environment changes?
Avatar Teleoperation — Full-Body
- Regular price
- $3,999.00
- Sale price
- $3,999.00
- Regular price
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