EP3448754A2

Unmanned aerial vehicle pick-up and delivery systems

Abstract

This record has no abstract on file.

Term

10.6 yearsto projected expiry

Projected expiry 28 April 2037, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

94 claims: 8 independent, 86 dependent

  1. 1
    Claims of equivalent WO 2017204998 A2 CLAIMS1. An enhanced parcel delivery system for delivering parcels via an unmanned aerial vehicle (UAV), the system comprising:a UAV support mechanism comprising: a pair of opposing rails extending in a longitudinal direction, wherein the opposing rails are spaced apart from one another in a lateral direction that is transverse to the longitudinal direction, the opposing rails defining: a landing region;a takeoff region positioned opposite the landing region;a transport region positioned between the takeoff region and the landing region;and at least one UAV comprising: a UAV chassis comprising: an upper portion having an upper portion width evaluated in a lateral direction;a lower portion positioned below the upper portion in a vertical direction, the lower portion having a lower portion width evaluated in the lateral direction;and a reduced width portion positioned between the upper portion and the lower portion, the reduced width portion having a width evaluated in the lateral direction, wherein the width of the reduced width portion is less than the upper portion width and the lower portion width, and wherein the reduced width portion is configured to engage the pair of opposing rails of the UAV support mechanism.
  2. 2
    The enhanced parcel delivery system of Claim 1, wherein the UAV support mechanism is coupled to a primary delivery vehicle.
  3. 3
    The enhanced parcel delivery system of Claim 2, wherein the primary delivery vehicle comprises a roof panel and the opposing rails are positioned above the roof panel of the primary delivery vehicle.
  4. 4
    The enhanced parcel delivery system of Claim 1, wherein the opposing rails comprise a guidance array, and wherein the at least one UAV comprises a vehicle landing sensor, wherein the guidance array is configured to interact with the vehicle landing sensor.
  5. 5
    The enhanced parcel delivery system of Claim 4, wherein the guidance array is positioned on the landing region of the opposing rails.
  6. 6
    The enhanced parcel delivery system of Claim 1, wherein the transport region comprises a conveyor comprising powered rollers positioned within the opposing rails.
  7. 7
    The enhanced parcel delivery system of Claim 6, wherein the powered rollers are configured to engage the reduced width portion of the UAV chassis when the UAV is positioned within the transport region.
  8. 8
    The enhanced parcel delivery system of Claim 6, wherein the opposing rails define an upper surface positioned above the powered rollers and oriented to face upward, and wherein the UAV chassis further comprises landing gear configured to engage the upper surface when the UAV is positioned within the transport region.
  9. 9
    The enhanced parcel delivery system of Claim 8, wherein the landing gear comprises a pair of rollers coupled to the upper portion of the UAV chassis.
  10. 10
    The enhanced parcel delivery system of Claim 8, wherein the landing gear comprises a pair of landing skids coupled to the upper portion of the UAV chassis and oriented to face downward.
  11. 11
    The enhanced parcel delivery system of Claim 8, wherein the landing gear of the UAV chassis is positioned on opposing sides of the reduced width portion.
  12. 12
    The enhanced parcel delivery system of Claim 6, wherein the UAV support mechanism comprises a plurality of sensors positioned along the conveyor, the plurality of sensors configured to detect a position of the at least one UAV within the conveyor.
  13. 13
    The enhanced parcel delivery system of Claim 1 , wherein UAV support mechanism comprises a damper positioned on the opposing rails and configured to engage the reduced width portion of the UAV chassis.
  14. 14
    The enhanced parcel delivery system of Claim 13, wherein the damper is positioned on the landing region of the opposing rails.
  15. 15
    The enhanced parcel delivery system of Claim 1, wherein the opposing rails converge toward one another moving along the landing region toward the transport region and a width evaluated between the opposing rails is greater at the landing region as compared to the transport region.
  16. 16
    The enhanced parcel delivery system of Claim 1, wherein the upper portion width of the UAV chassis is greater than a width evaluated between the opposing rails in the transport region.
  17. 17
    The enhanced parcel delivery system of Claim 1, wherein the lower portion width of the UAV chassis is greater than a width evaluated between the opposing rails in the transport region.
  18. 18
    The enhanced parcel delivery system of Claim 1, wherein the UAV further comprises a parcel carrier configured for being selectively coupled to and removed from the UAV chassis, the parcel carrier comprising an engagement housing and a parcel carrying mechanism.
  19. 19
    The enhanced parcel delivery system of Claim 18, wherein the engagement housing of the parcel carrier has a parcel carrier width that is greater than a width evaluated between the opposing rails in the transport region.
  20. 20
    A primary delivery vehicle configured for delivering parcels via an unmanned aerial vehicle (UAV), the primary delivery vehicle comprising:an interior compartment;a roof panel defining a portal, wherein the interior compartment is accessible through the portal;a UAV support mechanism positioned on the roof panel of the vehicle and configured for providing a landing surface for the UAV, the UAV support mechanism comprising: a pair of opposing rails extending in a longitudinal direction and positioned above the portal, wherein the opposing rails are spaced apart from one another in a lateral direction that is transverse to the longitudinal direction, the opposing rails defining: a landing region;a takeoff region positioned opposite the landing region;and a transport region positioned between the takeoff region and the landing region.
  21. 21
    The vehicle of Claim 20, wherein the transport region of the UAV support mechanism comprises a conveyor comprising powered rollers positioned within the opposing rails.
  22. 22
    The vehicle of Claim 21 , wherein the UAV support mechanism further comprises a plurality of sensors positioned along the conveyor, the plurality of sensors configured to detect a position of a UAV engaged with the conveyor.
  23. 23
    The vehicle of Claim 22, wherein the portal defined by the roof panel comprises a supply portal and the opposing rails further define a supply region positioned over the supply portal of the roof panel, and wherein the plurality of sensors comprises a supply position sensor configured to detect when a UAV is positioned within the supply region.
  24. 24
    The vehicle of Claim 22, wherein the portal defined by the roof panel comprises a return portal and the opposing rails further define a return region positioned over the return portal of the roof panel, and wherein the plurality of sensors comprises a return position sensor configured to detect when a UAV is positioned within the return region.
  25. 25
    The vehicle of Claim 22, further comprising a loading robot positioned within the interior compartment.
  26. 26
    The vehicle of Claim 25, wherein the loading robot comprises a robot processor and the robot processor is communicatively coupled to the plurality of sensors.
  27. 27
    The vehicle of Claim 20, wherein the opposing rails comprise a guidance array configured to interact with one or more sensors.
  28. 28
    The vehicle of Claim 20, wherein the opposing rails converge toward one another moving along the landing region toward the transport region and a width evaluated between the opposing rails is greater at the landing region as compared to the transport region.
  29. 29
    The vehicle of Claim 20, wherein UAV support mechanism comprises a damper positioned on the opposing rails and configured to engage a UAV in the landing region.
  30. 30
    The vehicle of Claim 29, wherein the damper comprises flexible brushes coupled to the oppo sing rails .
  31. 31
    The vehicle of Claim 20, wherein the UAV support mechanism comprises a plurality of support arms coupled to the roof panel and the opposing rails, wherein the support arms extend upward from the roof panel.
  32. 32
    The vehicle of Claim 20, wherein the opposing rails are spaced apart from the roof panel in a vertical direction.
  33. 33
    A primary delivery vehicle configured for delivering parcels via an unmanned aerial vehicle (UAV), the primary delivery vehicle comprising:an interior compartment;a roof panel defining a supply portal and a return portal spaced apart from the supply portal, wherein the interior compartment is accessible through the supply portal and the return portal;a UAV support mechanism comprising: a pair of opposing rails extending in a longitudinal direction, wherein the opposing rails are spaced apart from one another in a lateral direction that is transverse to the longitudinal direction, the opposing rails defining: a landing region;a supply region positioned over the supply portal of the roof panel;a return region positioned over the return portal of the roof panel;and a transport region positioned between the supply region and the return region.
  34. 34
    The vehicle of Claim 33, wherein the transport region of the UAV support mechanism comprises a conveyor comprising powered rollers positioned within the opposing rails.
  35. 35
    The vehicle of Claim 34, wherein the UAV support mechanism further comprises a plurality of sensors positioned along the conveyor, the plurality of sensors configured to detect a position of a UAV engaged with the conveyor.
  36. 36
    The vehicle of Claim 33, wherein the opposing rails converge toward one another moving along the landing region toward the transport region and a width evaluated between the opposing rails is greater at the landing region as compared to the transport region.
  37. 37
    The vehicle of Claim 33, wherein the opposing rails comprise a guidance array configured to interact with one or more sensors.
  38. 38
    The vehicle of Claim 33, wherein UAV support mechanism comprises a damper positioned on the opposing rails and configured to engage a UAV.
  39. 39
    A primary delivery vehicle configured for delivering parcels via an unmanned aerial vehicle (UAV), the primary delivery vehicle comprising:an interior compartment;a roof panel defining a supply portal, wherein the interior compartment is accessible through the supply portal;a loading robot positioned within the interior compartment, the loading robot comprising a robot controller comprising at least one processor and at least one memory including program code, the at least one memory and the program code configured to, with the processor, cause the loading robot to at least: engage a parcel carrier;move the parcel carrier to a supply portal;and engage the parcel carrier with a UAV positioned above the supply portal.
  40. 40
    The vehicle of Claim 39, wherein the loading robot comprises an end effector having clamping members configured to engage the parcel carrier.
  41. 41
    The vehicle of Claim 40, wherein when engaging the parcel carrier, the loading robot controller is further configured to move the clamping members from a disengaged position, in which the clamping members are spaced apart from the parcel carrier, to an engaged position, in which the clamping members engage the parcel carrier.
  42. 42
    The vehicle of Claim 40, wherein the loading robot further comprises an upright member movably coupled to the end effector, wherein the upright extends in a vertical direction.
  43. 43
    The vehicle of Claim 42, wherein when moving the parcel carrier to the supply portal, the loading robot controller is further configured to move the end effector upward in the vertical direction along the upright member.
  44. 44
    The vehicle of Claim 40, wherein the loading robot further comprises an end effector track and wherein the clamping members are movably coupled to the end effector track.
  45. 45
    The vehicle of Claim 44, wherein prior to engaging the parcel carrier, the loading robot controller is further configured move the clamping members along the end effector track toward the parcel carrier.
  46. 46
    The vehicle of Claim 39, wherein the loading robot is movably coupled to a horizontal track extending along a length of the interior compartment.
  47. 47
    The vehicle of Claim 46, wherein prior to engaging the parcel carrier, the loading robot controller is further configured to move the robot toward the parcel carrier along the horizontal track.
  48. 48
    A primary delivery vehicle configured for delivering parcels via an unmanned aerial vehicle (UAV), the primary delivery vehicle comprising:an interior compartment;a roof panel defining a return portal, wherein the interior compartment is accessible through the return portal;a loading robot positioned within the interior compartment, the loading robot comprising a robot controller comprising at least one processor and at least one memory including program code, the at least one memory and the program code configured to, with the processor, cause the loading robot to at least: engage a parcel carrier coupled to a UAV positioned above the return portal;remove the parcel carrier from a UAV chassis of the UAV;move the parcel carrier from the return portal to a rack positioned in the interior compartment;and engage the parcel carrier with the rack of the interior compartment.
  49. 49
    The vehicle of Claim 48 , wherein the loading robot comprises an end effector having clamping members configured to engage the parcel carrier.
  50. 50
    The vehicle of Claim 49, wherein when engaging the parcel carrier, the loading robot controller is further configured to move the clamping members from a disengaged position, in which the clamping members are spaced apart from the parcel carrier, to an engaged position, in which the clamping members engage the parcel carrier.
  51. 51
    The vehicle of Claim 49, wherein the loading robot further comprises an upright member movably coupled to the end effector, wherein the upright extends in a vertical direction.
  52. 52
    The vehicle of Claim 51, wherein when moving the parcel carrier from the return portal, the loading robot controller is further configured to move the end effector downward in the vertical direction along the upright member.
  53. 53
    The vehicle of Claim 49, wherein the loading robot further comprises an end effector track and wherein the clamping members are movably coupled to the end effector track.
  54. 54
    The vehicle of Claim 53, wherein prior to engaging the parcel carrier, the loading robot controller is further configured move the clamping members along the end effector track toward the parcel carrier.
  55. 55
    The vehicle of Claim 48, wherein the loading robot is movably coupled to a horizontal track extending along a length of the interior compartment.
  56. 56
    The vehicle of Claim 55, wherein prior to engaging the parcel carrier, the loading robot controller is further configured move the robot toward the return portal along the horizontal track.
  57. 57
    A method for loading/unloading a parcel carrier to an unmanned aerial vehicle (UAV), the method comprising:receiving a parcel to be delivered by a UAV;engaging a parcel carrying mechanism of a parcel carrier with the parcel, the parcel carrying mechanism being configured to engage and secure the parcel to the parcel carrier;moving the parcel carrier and parcel toward a UAV chassis of the UAV;and securing an engagement housing of the parcel carrier to the UAV chassis of the UAV, wherein the engagement housing of the parcel carrier is coupled to and positioned above the parcel carrying mechanism of the parcel carrier.
  58. 58
    The method of Claim 57, wherein the step of securing the engagement housing of the parcel carrier to the UAV chassis comprises moving an engagement member of the UAV chassis from a retracted position to an extended position.
  59. 59
    The method of Claim 57, wherein the step of securing the engagement housing of the parcel carrier to the UAV chassis comprises inserting the engagement housing into an interior cavity defined by the UAV chassis.
  60. 60
    The method of Claim 57, wherein the step of securing the engagement housing of the parcel carrier to the UAV chassis comprises inserting the UAV chassis into a cavity defined by the engagement housing.
  61. 61
    The method of Claim 57, further comprising moving the parcel carrier through a supply portal defined by a roof panel of a primary delivery vehicle prior to securing the engagement housing of the parcel carrier to the UAV chassis.
  62. 62
    The method of Claim 57, wherein the step of securing the engagement housing of the parcel carrier to the UAV chassis comprises electrically connecting a power source of the parcel carrier to propulsion members of the UAV.
  63. 63
    The method of Claim 57, wherein the parcel carrying mechanism comprises a pair of parcel carrying arms, and the step of engaging the parcel carrying mechanism of the parcel carrier with the parcel comprises engaging the parcel carrying arms with the parcel.
  64. 64
    The method of Claim 63, wherein the parcel carrying arms comprise a plurality of pins, and the step of engaging the parcel carrying mechanism of the parcel carrier with the parcel comprises inserting the plurality of pins at least partially into apertures defined by the parcel.
  65. 65
    The method of Claim 63 , wherein the parcel carrying arms comprise a pair of support flanges and the step of engaging the parcel carrying mechanism of the parcel carrier with the parcel comprises engaging the support flanges with a bottom surface of the parcel.
  66. 66
    The method of Claim 63, wherein the parcel carrying arms comprise a plurality of pins, and the step of engaging the parcel carrying mechanism of the parcel carrier with the parcel comprises inserting the plurality of pins at least partially into apertures defined by a parcel frame coupled to the parcel.
  67. 67
    The method of Claim 63 , wherein the parcel carrying mechanism comprises a parcel housing coupled to the engagement housing, and the step of engaging the parcel carrying mechanism of the parcel carrier with the parcel comprises positioning the parcel within the parcel housing.
  68. 68
    A method for loading/unloading a parcel carrier to an unmanned aerial vehicle (UAV), the method comprising:engaging a parcel with a parcel carrier, the parcel carrier comprising an engagement housing and a parcel carrying mechanism coupled to and positioned below the engagement housing, wherein the parcel is engaged with the parcel carrying mechanism;moving the parcel carrier toward a UAV chassis positioned on a UAV support mechanism;moving an engagement member of the UAV chassis from an extended position into a retracted position;engaging the engagement housing of the parcel carrier with a UAV chassis;and moving the engagement member of the UAV chassis from the retracted position into the extended positon, securing the engagement housing to the UAV chassis.
  69. 69
    The method of Claim 68, wherein the step of engaging the engagement housing comprises inserting the engagement housing into an interior cavity defined by the UAV chassis.
  70. 70
    The method of Claim 68, wherein the parcel carrying mechanism comprises parcel carrying arms comprising a plurality of pins, and wherein the step of engaging the parcel with the parcel carrying mechanism comprises positioning the plurality of pins at least partially within apertures defined by the parcel.
  71. 71
    The method of Claim 68, wherein the parcel carrying mechanism comprises parcel carrying arms comprising a pair of support flanges, and wherein engaging the parcel with the parcel carrying mechanism comprises positioning the support flanges under a bottom surface of the parcel.
  72. 72
    The method of Claim 68, wherein the step of the parcel carrying mechanism comprises a parcel housing, and wherein engaging the parcel with the parcel carrying mechanism comprises positioning the parcel within the parcel housing.
  73. 73
    The method of Claim 68, wherein the step of engaging the engagement housing of the parcel carrier with the UAV chassis comprises electrically connecting a power source of the parcel carrier to propulsion members of the UAV.
  74. 74
    The method of Claim 68, further comprising, prior to the step of moving the parcel carrier toward the UAV chassis, detecting the presence of the UAV chassis within a supply region of the UAV support mechanism.
  75. 75
    The method of Claim 68, further comprising moving the parcel carrier through a supply portal defined by a roof panel prior to engaging the engagement housing of the parcel carrier with the UAV chassis.
  76. 76
    An enhanced parcel delivery system for delivering parcels via an unmanned aerial vehicle (UAV), the system comprising:a primary delivery vehicle;a UAV support mechanism coupled to the primary delivery vehicle, the UAV support mechanism configured for supporting one or more UAVs;a plurality of UAVs, each of the UAVs comprising: a UAV chassis including a plurality of propulsion members configured to provide lift to the UAV chassis;and a parcel carrier comprising: an engagement housing configured for being secured to the UAV chassis;and a parcel carrying mechanism coupled to and positioned below the engagement housing, wherein the parcel carrying mechanism is configured for engaging and holding a parcel for delivery.
  77. 77
    The enhanced parcel delivery system of Claim 76, wherein the primary delivery vehicle comprises a roof panel and the UAV support mechanism comprises opposing rails positioned above the roof panel of the primary delivery vehicle.
  78. 78
    The enhanced parcel delivery system of Claim 76, wherein the UAV support mechanism comprises a guidance array, and wherein each of the plurality of UAVs comprise a vehicle landing sensor, wherein the guidance array is configured to interact with the vehicle landing sensor of each of the plurality of UAVs.
  79. 79
    The enhanced parcel delivery system of Claim 78, wherein the UAV support mechanism comprises a landing region configured to engage the UAV chassis of each of the plurality of UAVs, and the guidance array is positioned on the landing region.
  80. 80
    The enhanced parcel delivery system of Claim 76, wherein the UAV support mechanism comprises opposing rails that include a conveyor comprising powered rollers.
  81. 81
    The enhanced parcel delivery system of Claim 80, wherein the powered rollers are configured to engage a reduced width portion of the UAV chassis of each of the plurality of UAVs.
  82. 82
    The enhanced parcel delivery system of Claim 81, wherein the opposing rails define an upper surface positioned above the powered rollers and oriented to face upward, and wherein the UAV chassis of each of the plurality of UAVs further comprises landing gear configured to engage the upper surface when the UAV chassis is positioned the conveyor.
  83. 83
    The enhanced parcel delivery system of Claim 82, wherein the landing gear comprises a pair of rollers coupled to an upper portion of the UAV chassis.
  84. 84
    The enhanced parcel delivery system of Claim 83, wherein the UAV chassis of each of the plurality of UAVs comprise a reduced width portion positioned below the upper portion, and wherein the landing gear of the UAV chassis is positioned on opposing sides of the reduced width portion.
  85. 85
    The enhanced parcel delivery system of Claim 80, wherein the UAV support mechanism comprises a plurality of sensors positioned along the conveyor, the plurality of sensors configured to detect a position of a UAV chassis positioned within the conveyor.
  86. 86
    The enhanced parcel delivery system of Claim 76, wherein UAV support mechanism comprises opposing rails and a damper that is positioned on the opposing rails and configured to engage the UAV chassis of each of the plurality of UAVs.
  87. 87
    The enhanced parcel delivery system of Claim 86, wherein the damper is positioned on a landing region of the opposing rails.
  88. 88
    The enhanced parcel delivery system of Claim 87, wherein the opposing rails of the UAV support mechanism comprises a transport region positioned down stream of the landing region and wherein the opposing rails converge toward one another moving along the landing region toward the transport region and a width evaluated between the opposing rails is greater at the landing region as compared to the transport region.
  89. 89
    The enhanced parcel delivery system of Claim 88, the UAV chassis of each of the plurality of UAVs comprise an upper portion having a width that is greater than a width evaluated between the opposing rails in the transport region.
  90. 90
    The enhanced parcel delivery system of Claim 88, wherein the UAV chassis of each of the plurality of UAVs comprises a lower portion having a width that is greater than a width evaluated between the opposing rails in the transport region.
  91. 91
    The enhanced parcel delivery system of Claim 76, wherein the vehicle comprises;an interior compartment a roof panel defining a supply portal, wherein the interior compartment is accessible through the supply portal;and a loading robot positioned within the interior compartment and configured to move parcel carriers from the interior compartment to the UAV support mechanism.
  92. 92
    The enhanced parcel delivery system of Claim 91, wherein the UAV support mechanism defines a supply region positioned over the supply portal and comprises a sensor configured to detect when a UAV is positioned within the supply region.
  93. 93
    The enhanced parcel delivery system of Claim 76, wherein the vehicle comprises;an interior compartment a roof panel defining a return portal, wherein the interior compartment is accessible through the return portal;and a loading robot positioned within the interior compartment and configured to move parcel carriers from the UAV support mechanism.
  94. 94
    The enhanced parcel delivery system of Claim 93, wherein the UAV support mechanism defines a return region positioned over the return portal and comprises a sensor configured to detect when a UAV is positioned within the return region.
Independent claims94