Nova Patents
IL223155A

Mobile human interface robot

Abstract

This record has no abstract on file.

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

26 claims: 15 independent, 11 dependent

  1. 1
    Claims:1. A human interface robot (100) comprising: a controller (500);a camera (320, 320a, 320b, 450, 450a, 450b) in communication with the controller (500);and a display (310, 310a, 310b, 312) in communication with the controller (500);wherein the controller (500) displays received image data on the display (310, 310a, 310b, 312) as an image (1602);identifies at least one shape (1610, 1610a, 1610b) in the image (1602);and displays a shape specific label (1620) on the image (1602) at least near the shape (1610, 1610a, 1610b), the shape specific label (1620) identifying the at least one shape (1610, 1610a, 1610b).
  2. 4
    The mobile human interface robot (100) of any of the preceding claims, wherein the label (1620) comprises at least one of identification information, a hyper text markup language link, an email address, a web page address, and a text entry field. 54
  3. 5
    The mobile human interface robot (100) of any of the preceding claims, wherein the controller (500) receives voice signals from a user and alters the voice signals, preferably altering a volume level of the voice signals, the controller (500) optionally identifying a first language corresponding to the voice signals and producing translated signals corresponding to a second language and/or processing the voice signals and transcribing dictation corresponding to the voice signals.
  4. 6
    The mobile human interface robot (100) of any of the preceding claims, wherein the controller (500) communicates with a cloud computing service (1420) and preferably with a remote computing device (310, 1404, 1422, 1430, 1450, 1470, 1480) in communication with the cloud computing service (1420), the remote computing device (310, 1404, 1422, 1430, 1450, 1470, 1480) communicating with the robot (100) through the cloud computing service (1420).
  5. 8
    The mobile human interface robot (100) of any of the preceding claims, further comprising a mediating security device (350) controlling communications between the controller (500) and a computing device (310, 1404, 1422, 1430, 1450, 1470, 1480), preferably the mediating security device (350) comprising an authorization chip for authorizing communication traffic between the computing device (310, 1404, 1422, 1430, 1450, 1470, 1480) and the robot (100).
  6. 10
    The mobile human interface robot (100) of any of the preceding claims, wherein the display (310, 310a, 310b, 312) comprises a tablet computer (310, 310a, 310b) detachably supported by the robot (100) and in wireless communication with the controller (500), preferably the tablet computer (310, 310a, 310b) comprises a touch screen (312) having a display area of at least 150 square inches and/or is movable with at least one degree of freedom while attached to the robot (100).
  7. 12
    The mobile human interface robot (100) of any of the preceding claims, wherein the camera (320, 320a, 320b, 450, 450a, 450b) is movable within at least one degree of freedom separately from the display (310, 310a, 310b, 312).
  8. 13
    The mobile human interface robot (100) of any of the preceding claims, wherein the camera (320, 320a, 320b, 450, 450a, 450b) comprises a volumetric point cloud imaging device (450, 450a, 450b) positioned to be capable of obtaining a point cloud from a volume of space adjacent the robot (100), preferably the volumetric point cloud imaging device (450, 450a, 450b) is positioned at a height of greater than about one foot above a ground surface and directed to be capable of obtaining a point cloud from a volume of space that includes a floor plane in a direction of movement of the robot (100).
  9. 14
    The mobile human interface robot (100) of any of the preceding claims, further comprising a holonomic drive system (200) in communication with the controller (500), the holonomic drive system (200) having first, second, and third driven drive wheels (210a, 210b, 56 210c), each drive wheel (210a, 210b, 210c) trilaterally spaced about a vertical center axis (Z) of a base (120) and each having a drive direction (Drive) perpendicular to a radial axis (Slip) with respect to the vertical center axis (Z).
  10. 15
    The mobile human interface robot (100) of any of the preceding claims, further comprising:a base (120) defining a vertical center axis (Z) and supporting the controller (500);an extendable leg (130) extending upward from the base (120);and a torso (140) supported by the leg (130), actuation of the leg (130) causing a change in elevation of the torso (140), the display (310, 310a, 310b, 312) supported above the torso (140);preferably, the robot (100) further comprises: a neck (150) supported by the torso (140);and a head (160) supported by the neck (150), the neck (150) capable of panning and tilting the head (160) with respect to the torso (140), the display (310, 310a, 310b, 312) detachably supported by the head (160).
  11. 16
    A method of operating a robot (100), the method comprising:receiving image data from a camera (320, 320a, 320b, 450, 450a, 450b) mounted on the robot (100) corresponding to an image (1602);identifying at least one shape (1610, 1610a, 1610b) in the image (1602);and displaying on a display (310, 310a, 310b, 312) of the robot (100) a shape specific label (1620) on the image (1602) at least near the shape (1610, 1610a, 1610b), the shape specific label (1620) identifying the at least one shape (1610, 1610a, 1610b).
  12. 20
    The method of any of claims 16-19, further comprising receiving three-dimensional image data from a volumetric point cloud imaging device (450, 450a, 450b) positioned to be capable of obtaining a point cloud from a volume of space adjacent the robot (100), and preferably positioned at a height of greater than 1 or 2 feet above a ground surface and directed to be capable of obtaining a point cloud from a volume of space that includes a floor plane in a direction of movement of the robot (100).
  13. 21
    The method of any of claims 16-20, wherein the label (1620) comprises at least one of identification information, a hyper text markup language link, an email address, a web page address, and a text entry field.
  14. 22
    The method of any of claims 16-21, further comprising receiving voice signals from a user and altering the voice signals, preferably altering a volume level of the voice signals.
  15. 25
    The method of any of claims 16-24, further comprising communicating with a cloud computing service (1420) and preferably with a remote computing device (310, 1404, 1422, 1430, 1450, 1470, 1480) in communication with the cloud computing service (1420), the remote 58 computing device (310, 1404, 1422, 1430, 1450, 1470, 1480) communicating with the robot (100) through the cloud computing service (1420).