UBTECH’s Walker Brings Humanoid Robots to Homes and Offices

In the rapidly evolving world of robotics, UBTECH’s latest creation, the Walker humanoid service robot, marks a significant advancement. Designed to seamlessly integrate into both home and office environments, the Walker robot exemplifies robotics’ potential to perform a wide range of tasks, offering a glimpse into a future where robots could become commonplace in daily life.

The Walker robot is engineered with precision, featuring 36 high-performance servo joints that enable it to move fluidly and precisely. This is complemented by a suite of sensory systems allowing the robot to perceive its environment in ways similar to humans, including vision for recognizing objects and faces, hearing for responding to voice commands, and spatial awareness for navigating complex environments.

One of Walker’s standout features is its adaptability to various terrains. The robot is designed to walk smoothly across different surfaces, including carpet, tile, grass, and even up and down stairs. This adaptability is achieved through advanced motion control algorithms and gait planning, which ensure that the robot maintains balance and stability regardless of the surface it is on.

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In addition to its mobility, the Walker robot is equipped with arms that possess 7 degrees of freedom each. This allows for a wide range of arm movements and the ability to manipulate objects with a remarkable level of dexterity for a machine. Whether picking up household items or performing tasks in an office setting, the Walker demonstrates a level of flexibility and precision that brings it closer to performing tasks in a human-like manner.

Safety and interaction are critical aspects of the Walker’s design. The robot’s full-body flexibility ensures that interactions with humans are safe and natural. Its ability to mimic human movements makes it less intimidating and more capable of integrating into human environments.

Navigation and autonomous path planning are critical components of Walker’s technology. The robot employs U-SLAM navigation, which allows it to map its environment and plan paths autonomously. This is enhanced by the robot’s ability to process visual information to recognize faces, objects, and scenes, enabling it to navigate complex environments and interact with humans more meaningfully.

The Walker also introduces smart home integration, allowing users to control household devices. This feature points to the potential for humanoid robots to become assistants in managing home environments, from controlling lights and appliances to providing reminders and alerts.

On the technical side, the Walker robot stands 145cm tall and weighs 77kg, with a structure that supports a wide range of movements. It operates on a lithium iron phosphate battery, which provides up to 2 hours of usage on a full charge. Intel processors power the robot and run on a combination of operating systems, including Ubuntu, Linux RT Preempt, ROS, and Android. This robust technical foundation allows the Walker to perform tasks reliably and efficiently.

UBTECH’s Walker robot is not just a technological marvel; it represents a step towards integrating robotics into everyday life. With its advanced capabilities, the Walker has the potential to assist with tasks in homes and offices, making it a significant development in the field of humanoid robotics. As technology advances, the possibilities for robots like the Walker are vast, pointing to a future where human-robot collaboration becomes a common aspect of daily life.

Source: UBTECH


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