Nova Patents
CA2178265C

Laser-based dimensioning system

Abstract

A method and apparatus for measuring the dimensions and determining thethree-dimensional, spatial volume of objects, particularly small objects. Reflected laser light sensors are employed. A stationary measurementembodiment of the apparatus may be employed to measure regular cuboidalobjects. A dynamic or in-motion, embodiment may be employed to measure thedimensions of cuboidal objects or a three-dimensional outline of objects ofirregular configuration.

CA2178265C, drawing sheet 1
Sheet 1 of 16

Term

No projected expiry on record.

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

70 claims: 15 independent, 55 dependent

  1. 1
    CA 02178265 2000-10-18 -45CLAIMS What is claimed is:1. An apparatus for measuring a cuboidal object, comprising: three light transducers, each having an emitter for emitting a light beam and a receiver offset from said emitter for receiving a reflection of said light beam associated therewith, said emitters being aimed in substantially mutually perpendicular relationship toward a three-dimensional volume of greater extent in each of said three dimensions than that of the largest cuboidal object to be placed therein for measurement, said emitters each being aimed across said three-dimensional volume to measure a distance between each of said light transducers and a perpendicularly facing side of a cuboidal object placed within said threedimensional volume with a comer of said cuboidal object immediately adjacent a zero point in an orientation providing a known distance between each of the emitters and sides of the cuboidal object opposite and parallel to the respective sides of said cuboidal object perpendicularly facing each of the emitters;said receivers each including a light sensor for generating a signal responsive to an angle of reflection of an associated light beam from said object;and a processor for converting said light sensor signals to linear distances between said emitters and said perpendicularly facing sides of said cuboidal object and to compute the dimensions of said cuboidal object by subtracting each of said linear distances from the known distance between each of said light transducers and a side of said cuboidal object opposite and parallel to a said perpendicular facing side.
  2. 11
    13. An apparatus for measuring the length and width of an object having a rectangular footprint, having vertical sidewalls and moving linearly in a plane at a constant rate, the apparatus comprising:two light transducers, each including an emitter oriented to emit a light beam in substantially mutually perpendicular relationship to and across the path of said object and parallel to the plane of object movement so that said light beams from said emitters impinge upon said object during passage of said object through said light beams, each light transducer further including a receiver offset from an associated emitter for receiving a reflection of said light from said object, said two light transducers being disposed on opposite sides of said path of said object;said receivers each including a light sensor for generating signals responsive to an angle of reflection of an associated light beam from said object;and CA 02178265 2000-10-18 -48a processor for converting said light sensor signals to linear distances between said emitters and said object, and for computing the length and width of said object from said linear distances, a measured time of passage of said object past one of said emitters and said constant rate of object movement,
  3. 13
    15. An apparatus for measuring a footprint of an object moving linearly in a plane at a constant rate, the apparatus comprising:two light transducers, each including an emitter oriented to emit a light beam in substantially mutually perpendicular relationship to and across the path of said linearly-moving object and parallel to the plane of object movement so that said light beams from said emitters impinge upon said object during passage of said object through said light beams and each light transducer further includes a receiver offset from an associated emitter for receiving a reflection of said light from said object, said two light transducers being disposed on opposite sides of said path of said linearly-moving object;said receivers each including a light sensor for generating signals responsive to an angle of reflection of an associated light beam from said object;and a processor for converting said light sensor signals to linear distances between said emitters and said object, and for determining an outline of the footprint of said CA 02178265 2000-10-18 -49object from said linear distances, a measured time of passage of said object past one of said emitters and said constant rate of object movement.
  4. 20
    22. A method of measuring the dimensions of a three-dimensional, cuboidal object, comprising:placing said cuboidal object with respect to a reference point;emitting three mutually-perpendicular light beams against perpendicularly facing sides of said cuboidal object from remote locations and receiving said light beams after reflection from said cuboidal object at cooperative locations displaced from each of said remote emission locations;and computing said dimensions of said cuboidal object from the degree of displacement of said reflected light beams relative to said emitted light beams and distances from CA 02178265 2000-10-18 -50each of said light beam emission locations to a side of said cuboidal object opposing and parallel to a side facing the location from which that respective light beam is emitted, with said cuboidal object placed with respect to said reference point.
  5. 22
    24. A method of measuring two dimensions of a three-dimensional, cuboidal object, comprising:moving said object linearly at a known rate in a plane along a path while in an orientation wherein object sidewalls are skewed with respect to the direction of movement;emitting a first light beam from a first location on one side of said path against said object in substantially transverse orientation to movement of said object and parallel to the plane of movement thereof, and receiving said first light beam after reflection from said object as said object moves, at locations displaced from said first location, during a measured time of passage of said object through said first light beam;and computing said two dimensions from said known rate of object movement, said measured time of passage and said locations of receipt of said first light beam.
  6. 23
    25. A method of measuring two dimensions of a three-dimensional, cuboidal object, comprising:moving said object linearly at a known rate in a plane along a path;emitting a first light beam from a first location on one side of said path against said object in substantially transverse orientation to movement of said object and parallel to the plane of movement thereof, and receiving said first light beam after reflection from said object as said object moves, at locations displaced from said first location and during a time of passage of said object through said first light beam;CA 02178265 2000-10-18 -51emitting a second light beam against said object from a second location in substantially transverse orientation to movement of said object and parallel to the plane of movement thereof on the opposite side of said path from said first light beam emission location, and receiving said second light beam after reflection from said object as said object moves, at locations displaced from said second location and during a time of passage of said object through said second light beam;and computing said two dimensions from said known rate of object movement, a measured time of passage of said object through at least one of said first and second light beams and said locations of receipt of said first and second light beams.
  7. 34
    38. A method of measuring a dimension of a substantially rectangular object, the method comprising:positioning the object with respect to a reference point;emitting a light beam against the object from a location remote from the reference point, in line with the dimension to be measured, and perpendicular to a facing side of said substantially rectangular object;receiving the emitted light beam after it reflects off the facing side of the object at a location displaced from the emission location;and determining the dimension to be measured from the degree of displacement of the received reflected light beam relative to the emitted light beam and the distance between the emission location and a side of the object parallel to and opposite the facing side ascertained responsive to positioning of said object with respect to the reference point.
  8. 35
    39. An apparatus for measuring two mutually orthogonal dimensions of a rectangular object having vertical sidewalls and moving at a known rate in a linear direction of travel, the object being oriented such that its two dimensions to be measured are askew with respect to its direction of travel, the apparatus consisting essentially of:CA 02178265 2000-10-18 -54a light transducer comprising an emitter oriented to emit a light beam toward the moving object in substantially orthogonal relation to the object’s direction of travel and a receiver offset from the emitter for receiving a reflection of the emitted light beam from the moving object as the object passes through the emitted light beam, the receiver including a light sensor for generating signals indicative of the angle of the reflected light beam with respect to the emitted light beam;and a processor coupled to the light transducer for converting light sensor signals received from the light sensor over a period of time to a set of linear distances between the emitter and the moving object over the period of time and for calculating the two dimensions to be measured from the set of linear distances and the object’s known rate of travel.
  9. 39
    43. An apparatus for measuring the length and width of a rectangular object having vertical sidewalls, comprising;at least one light sensor including an emitter for emitting a light beam and a receiver remote from said emitter and associated therewith for receiving a reflection of said light beam, said emitter being oriented to emit said light beam across a path of a linearly-moving object with the object skewed so that no sidewall thereof is perpendicular to said light beam and so that said light beam impinges upon said object while traversing said path;CA 02178265 2000-10-18 -55said receiver including a light sensor for generating a signal responsive to receipt of said reflection of an associated light beam reflected from said object;a device for detecting rate of speed of said object during impingement of said light beam thereon and generating a signal indicative of said rate of speed;a device for determining a time of passage of said object by a location along said path and generating a signal indicative of said time of passage;and a processor for computing the length and width of said object from said signals.
  10. 40
    44. An apparatus for measuring the length and width of a rectangular object having vertical sidewalls, comprising:two light sensors each having an emitter for emitting a light beam and a received remote from said emitter and associated therewith for receiving a reflection of said light beam, each of said emitters being oriented to emit a light beam across and from opposite sides of the path of a linearly-moving object so that said light beams impinge upon said objçct;said receivers including a light sensor for generating a signal responsive to receipt of said reflection of an associated light beam reflected from said object;a device for detecting rate of speed of said object during impingement of said light beams thereon and generating a signal indicative of said rate of speed;a device for determining a time of passage of said object by a location along said path and generating a signal indicative of said time of passage;and a processor for computing the length and width of said object from said signals.
  11. 48
    53. A method of measuring two dimensions of a three-dimensional object having a rectangular footprint and vertical sidewalls, comprising:moving said object linearly along a path in an orientation with no sidewall parallel to the direction of movement;emitting a first light beam from a first fixed location on one side of said path against said object in substantially transverse orientation to movement of said object, and receiving said first light beam after reflection thereof from said object as said object moves, at a location displaced from said first fixed location;determining a rate of speed of said object;and computing said two dimensions from said rate of object speed, a measured time of passage of said object by a location along said path and variations in position of receipt of said reflected first light beam at said receiving location. CA 02178265 2000-10-18 -5754. A method of measuring two dimensions of a three-dimensional object having a rectangular footprint and vertical sidewalls, comprising: moving said object linearly along a path;emitting a first light beam from a first fixed location on one side of said path against said object in substantially transverse orientation to movement of said object, and receiving said first light beam after reflection thereof from said object as said object moves, at a location displaced from said first fixed location;emitting a second light beam against said object from a second fixed location on an opposing side of the path from the first fixed location in substantially transverse orientation to said movement of said object and receiving said second light beam after reflection thereof from said object as said object moves, at a location displaced from said second fixed location;determining a rate of speed of said object;computing said two dimensions from said rate of object speed, a measured time of passage of said object by a location along said path and variations in position of receipt of said reflected first and second light beams at said receiving locations.
  12. 55
    62. An apparatus for measuring length and width of an object having a rectangular footprint and vertical sidewalls, said apparatus comprising:at least one light sensor including an emitter for emitting a light beam and a receiver remote from said emitter and associated therewith for receiving a reflection of said light beam, said emitter being oriented to emit said light beam across a path of a linearly-moving object so that said light beam impinges upon said object with said object in an orientation with no sidewall parallel to the direction of object movement;said receiver including a light sensor for generating a signal responsive to receipt of said reflection of an associated light beam reflected from said object;a device for detecting a rate of movement of said object during impingement of said light beam thereon and generating a signal indicative of said movement;a device for detecting a time of passage of said object by a location along said path and generating a signal indicative of said time of passage;and a processor for computing the length and width of said object from said signals.
  13. 56
    63. An apparatus for measuring length and width of an object having a rectangular footprint and vertical sidewalls, said apparatus comprising:CA 02178265 2000-10-18 -59two light sensors each including an emitter for emitting a light beam and a receiver remote from said emitter and associated therewith for receiving a reflection of said light beam, said emitters being oriented to emit said light beam across a path of a linearly-moving object and on opposing sides of the path so that said light beams impinge upon said object;said receivers each including a light sensor for generating a signal responsive to receipt of said reflection of an associated light beam reflected from said object;a device for detecting a rate of movement of said object during impingement of said light beams thereon and generating a signal indicative of said movement;a device for detecting a time of passage of said object by a location along said path and generating a signal indicative of said time of passage;and a processor for computing the length and width of said object from said signals.
  14. 64
    72. A method of measuring two dimensions of a three-dimensional object having a rectangular footprint and vertical sidewalls, comprising:moving said object along a path;10 emitting a first light beam from a first fixed location on one side of said path against said object in substantially transverse orientation to movement of said object with said object in an orientation such that no sidewall is parallel to the direction of object movement, and receiving said first light beam after reflection thereof from said object as said object moves, at a location displaced from said first fixed 15 location;detecting a rate of said movement of said object;and computing said two dimensions from said detected rate of movement, a measured time of passage of said object by a location along said path and variations in position of receipt of said reflected first light beam at said receiving location.
  15. 65
    73. A method of measuring two dimensions of a three-dimensional object having a rectangular footprint and vertical sidewalls, comprising:moving said object along a path;emitting a first light beam from a first fixed location on one side of said path against said 25 object in substantially transverse orientation to movement of said object and receiving said first light beam after reflection thereof from said object as said object moves, at a location displaced from said first fixed location;emitting a second light beam against said object from a second fixed location in substantially transverse orientation to the movement of said object on an 30 opposing side of said path and receiving said second light beam after reflection thereof from said object as said object moves, at a location displaced from said second fixed location;detecting a rate of said movement of said object;and CA 02178265 2000-10-18 -61computing said two dimensions from said detected rate of movement, a measured time of passage of said object by a location along said path and variations in position of receipt of said reflected first and second light beams at said receiving locations.
Independent claims15