DE ASIMO WALLPAPER

de asimo

ASIMO became capable of responding to the movement of people and the surrounding situations. The front sensor is located at the lower portion of the torso together with the ground sensor. Accent color for the all-new ASIMO available in variations in addition to grey – blue, green and yellow. Views Read Edit View history. Pairs of black markings are used to provide targets for its autonomous navigation. ASIMO environment identifying sensors which include visual, ground, and ultrasonic sensors. ASIMO is capable of predicting the direction a person will walk within the next few seconds based on information from pre-set space sensors and quickly determining to take an alternate path to avoid a collision with the person if the estimated locations of the person and the ASIMO intersect.

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The two cameras inside the head are used as a visual sensor to detect obstacles. ASIMO is a bipedal humanoid robot Honda has been developing with a goal to develop robots that will coexist with and be useful to people since its first introduction in The robot can detect the movements of multiple objects by using visual information captured by two camera “eyes” in its head and also determine distance and direction. Retrieved 8 November American Honda Motor Co.

As such, Honda continues its research into humanoid robots. Retrieved 12 July Honda has developed a highly functional compact multi-fingered hand, which has a tactile sensor and a force sensor imbedded on the palm and in each finger, respectively, and which acts to control each finger independently.

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As a result of acquiring the ability to make such agile motions, ASIMO has become capable of more flexibly adapting to changing external situations so that it can, as an example, walk over an uneven surface while maintaining a stable posture.

By df this site, you agree to the Terms of Use and Privacy Policy. The lower portion of the torso aimo ground sensor which comprises one laser sensor and one infrared sensor. The ground and front ultrasonic sensors are located at the bottom part of the torso.

Inthe latest version was introduced with world’s first autonomous behavior control technology. Webarchive template wayback links CS1 uses Japanese-language script ja CS1 Japanese-language sources ja Articles with Japanese-language external links Use dmy dates from June Articles containing video clips. Switching from a nickel metal ed in increased the amount of time ASIMO can operate before recharging.

ASIMO by Honda | The World’s Most Advanced Humanoid Robot

Advancements of Physical Capabilities. ASIMO is capable of predicting the direction a person will walk within the next few seconds based on information from pre-set space sensors and quickly determining to take an alternate path to avoid a collision with the person if the estimated locations of the person and the ASIMO intersect.

The laser sensor is used to detect ground surface. See also Androids Cyborgs Robot fetishism.

ASIMO – Wikipedia

The pre-loaded map and the detection of floor markings help the robot to precisely identify its present location and continuously adjust its position. With a greatly enhanced situation adaptive capacity both intelligently and physically, ASIMO moves one step closer to fe use in crowded public spaces and office environments. Retrieved from ” https: Coordination between visual and auditory sensors enables ASIMO to simultaneously recognize a face and voice, enabling ASIMO to recognize the voices of multiple people who are speaking simultaneously, which is difficult even for a human being to accomplish.

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Retrieved 12 June E0 was the first bipedal two-legged model produced as part of the Honda E serieswhich was an early experimental line of self-regulating, humanoid walking robot with wireless movements created between and ASIMO is capable of making sign language expressions which require the complex movement of fingers.

Asimo, The World’s Most Advanced Humanoid Robot

The Honda Asino technologies will appear throughout the show. Retrieved 14 September For instance, ASIMO will stop its current action and change its behavior to accommodate the intention of the other party. Retrieved 9 November The demonstration showed the robot’s ability to identify and avoid oncoming people, work with another ASIMO, recognize when to recharge its battery and perform new tasks, such as carrying a tray and pushing a cart.

Archived from the original on 28 June Honda began developing humanoid robots in the s, including several prototypes that preceded ASIMO. Honda and Ohio State University get grant to help Parkinson’s patients. The sole of the left foot is shown which is part of the Floor Reaction Control. Retrieved 27 July