Patent classifications
B64U101/64
Unmanned aerial vehicle with package carrier
An unmanned aerial vehicle, including: a propelling device configured to generate a downward airstream; a package carrier; and wheels arranged so as to allow the package carrier to stand alone. The package carrier includes: vertical members which surround a package in a horizontal direction to prevent falling of the package; support members configured to support a load of the package at positions; and a coupling device configured to hold vertical members so as to enable relative horizontal movement. The support members are each fixed to a corresponding one of the vertical members. The wheels are each mounted to the corresponding one of the vertical members, and enable the relative horizontal movement of the vertical members under a state in which the wheels are on the ground. Through the relative horizontal movement of the vertical members, the package is separable from the support members.
Autonomous package storage and retrieval system using a drone
A package delivery drone comprises at least one propeller for generating lift and an article containment area for containing an article to be carried by the drone. The floor of the article containment area comprises a dynamic support surface for supporting the article and allowing the article to move into, out of and through the article containment area. The package delivery drone interfaces with a docking station having a shelf for exchanging packages with the drone.
Automatic package delivery system and related methods
Delivery systems for aerial vehicles may provide a passive automatic delivery system that is automatically triggered during landing of the aerial vehicle. One or more arm assemblies of the delivery system may include a respective landing arm, resilient member, and package guide. The landing arm is configured to rotate in response to an applied external force, with the resilient member being operatively coupled to the landing arm and configured to bias the landing arm towards a resting position. The package delivery system automatically releases the package when a delivery condition is met, such as the landing arms of the delivery system being rotated past a threshold position. Delivery systems can thus passively and automatically ensure that all landing arms are on a landing surface before the package is released. Related methods include approaching and contacting a landing surface, and releasing the package at the landing surface of the delivery location.
Unmanned aerial vehicle and delivery system
An unmanned aerial vehicle that delivers a package includes a plurality of rotary wings, a plurality of first motors, a main body, a connector, a movable block, and a processor. When the connector is connected to a rail, the processor sets a rotation rate of the plurality of first motors to a rotation rate that is lower than a minimum rotation rate necessary for floating and higher than a minimum rotation rate necessary for propulsion along the rail. Furthermore, the processor causes the movable block to increase the angle formed by the normal direction of an imaginary plane containing the plurality of rotary wings relative to a support direction of the connector.
Systems and methods for precise vehicle locator
Systems and methods for locating UAV. The methods comprise: causing a physical joining of a payload with a fuselage of the UAV without any modification to the fuselage (where the payload comprises a communication relay configured to perform relay operations to extend a range between users of a communication relay link for voice and data communications and a first locator configured to perform location operations to determine and report a location of the UAV to the users of the communication relay link); using a power source to supply power to the payload that is independent from a main power source used to supply power to avionic electronics of the UAV; and continuing to perform the relay operations by the communication relay and the location operations by the first locator, when power is no longer being supplied to the avionic electronics by the main power source of the UAV.
Delivery port management system, delivery port management method, and program
To improve utilization efficiency of a delivery port and an unmanned aerial vehicle (UAV), a delivery port management system includes obtaining means for obtaining a delivery destination of a package that is transported by a UAV approaching a facility having a plurality of delivery ports and a plurality of delivery destinations, the delivery ports receiving packages, port selecting means for selecting a delivery port to which the UAV delivers the package among the plurality of delivery ports based on the delivery destination of the package after the UAV has departed for the facility, and guiding means for sending information for guiding the UAV to the selected delivery port.
Control device, system, program, control instrument, flying object, sensor, and method of operating system
A control device includes: a communication unit; and a control unit that transmits and receives information via the communication unit. When a flying object flies around a complex housing, the control unit transmits, to the flying object, information on a flight route in which a transported object of the flying object enters a blind spot from inside of the complex housing based on information on the complex housing.
Low capital and operational cost e-commerce logistics system and method for fast and massive delivery of e-commerce merchandise to large geographical areas
The present invention discloses a disruptive low capital and operational cost logistics system and method that provides for fast and massive delivery of e-commerce merchandise, including same day delivery, of thousands of items and packages, reducing the need for building, operating, or using multiple fulfillment warehouses located near the consumers as in traditional e-commerce logistics. The systems and methods of the present invention facilitate the logistics for e-commerce delivery processes, and also may allow at the same time reducing the use of massive quantities of cardboard packages that are used for protection and containment for e-commerce orders, being sustainably beneficial. This is achieved by the use of multibox packages that are configured to contain a set of products including orders from different consumers and not necessarily having individual packages for individual consumers, where such multibox packages are sorted at the origin in a Central Fulfillment Center.
Package supporting device and unmanned package transporter
A package supporting device including: a base; ground contacting portions that contact a landing surface in a state of having landed; package supporting portions provided at an underside of the base, the package supporting portions supporting a package; a drive portion that is operable in a first state to cause each of the package supporting portions to move toward the package, and is operable in a second state to cause each of the package supporting portions to move away from the package; and a restricting portion that is provided independently from the drive portion, and that allows operation of the drive portion in a state in which the ground contacting portions are contacting a landing surface, and, in a state in which the ground contacting portions do not contact a landing surface, restricts operation of the drive portion in at least the second state.
Drone delivery system hub for facilitating parcel delivery by unmanned aerial vehicles
A drone delivery system hub and method for sending for take-off and receiving for landing unmanned aerial vehicles (UAVs). The drone delivery system hub includes a center shaft frame, a parcel-conveying system supported by the center shaft frame, structural arms coupled to and extending outward from the center shaft frame in a spoke-like configuration, drone-conveying systems each supported by one of the structural arms, and a linking conveyor span. The drone-conveying system conveys the UAVs along a length of a correspond one of the structural arms toward and away from the center shaft frame. The linking conveyor span selectably rotates to different orientations between different pairs of the structural arms, selectively conveying a UAV thereon between any two of the structural arms. The linking conveyor span is located above the parcel-conveying system such for the UAV thereon to deposit and retrieve parcels from the parcel-conveying system.