Apparatus, Systems, and Methods for Performing a Dispatched Logistics Operation for a Deliverable Item from a Hold-at-Location Logistics Facility Using a Modular Autonomous Bot Apparatus Assembly, a Dispatch Server and an Enhanced Remotely Actuated Logistics Receptacle Apparatus

US2024257594A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2024257594-A1
Application numberUS-202418429096-A
CountryUS
Kind codeA1
Filing dateJan 31, 2024
Priority dateMar 14, 2018
Publication dateAug 1, 2024
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

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Methods and enhanced apparatus used in such methods are described that a dispatched logistics operation for a deliverable item from a hold-at-location (HAL) logistics facility having a secured storage and using a modular autonomous bot apparatus assembly and a dispatch server. The bot apparatus assembly picks up and delivers the item from the HAL facility in response to a delivery dispatch command from the dispatch server. In response, the MAM of the bot verifies compatibility of modular components for the operation, controls receiving of the deliverable item from the secured storage at the HAL facility, then autonomously causes movement to the delivery destination. The MAM notifies the customer before delivery of the approaching delivery, authenticates delivery is to the authorized customer, provides access to the item within the bot apparatus assembly, monitors unloading of the item, then autonomously moves back to the HAL facility.

First claim

Opening claim text (preview).

1 - 70 . (canceled) 71 . A remotely-actuated logistics receptacle apparatus for wirelessly interfacing with a dispatched mobile autonomous delivery vehicle, comprising: a logistics receptacle for receiving and temporarily maintaining an object deposited for shipment, the logistics receptacle comprising a storage enclosure defining a temporary storage area within which the object is temporarily maintained, an entrance opening through which the object can pass when being retrieved from the storage enclosure, and an access door disposed on the storage enclosure next to the entrance opening, the access door selectively securing the entrance opening when in a closed position and allowing the object to be retrieved from the storage enclosure through the entrance opening when in an open position, a wireless node-based remote access control module disposed with the logistics receptacle, the wireless node-based remote access control module comprising a controller, a control module memory coupled to the controller, the control module memory maintaining remote storage access program code and pickup authentication information related to an authorized pickup logistics operation for the object by the dispatched mobile autonomous delivery vehicle as an authorized pickup entity for the object deposited for shipment, and a wireless communication interface operatively coupled to the controller, the wireless communication interface providing a wireless communication path to the dispatched mobile autonomous delivery vehicle; a door actuator coupled between the access door and the storage enclosure, the door actuator being operatively activated by the controller, the door actuator selectively causing the access door to open when activated to move from the closed position to the open position and selectively cause the access door close when activated to move the access door from the open position to closed position; and a parcel object actuator disposed within the temporary storage area, the parcel object actuator being operatively activated by the controller, the parcel object actuator selectively causing the object to move out of the temporary storage area and through the entrance opening; wherein the controller, when executing the remote storage access program code, is operative to receive a pickup authentication signal over the wireless communication interface from an external wireless node, transmit a first remote control actuation signal to the door actuator only if the received pickup authentication signal is determined to be from the dispatched mobile autonomous delivery vehicle as the authorized pickup entity according to the pickup authentication information in the control module memory, the first remote control actuation signal activating the door actuator to cause the access door to open, transmit a second remote control actuation signal to the parcel object actuator once the access door is open and only if the received pickup authentication signal is determined to be from the dispatched mobile autonomous delivery vehicle as the authorized pickup entity according to the pickup authentication information in the control module memory, the second remote control actuation signal activating the parcel object actuator to cause the object to move from where it is maintained in the temporary storage area and through the entrance opening. 72 . The apparatus of claim 71 , wherein the controller, when executing the remote storage access program code, is further operative to receive a ready confirmation signal over the wireless communication interface from the dispatched mobile autonomous deliver vehicle as the authorized pickup entity; and wherein the controller is operative to transmit the second remote control actuation signal to the parcel object actuator causing the object to move through the entrance opening only after the controller received the ready confirmation signal from the dispatched mobile autonomous deliver vehicle as the authorized pickup entity. 73 . The apparatus of claim 71 , wherein the controller is operative to determine if the received pickup authentication signal from the dispatched mobile autonomous delivery vehicle is from the authorized pickup entity according to the pickup authentication information in the control module memory by being operative to: generate association data indicating a secure association between the external node and the controller after detecting the pickup authentication signal from the external wireless node, the secure association between the external node and the controller allowing secure sharing of information between the external node and the controller and being pre-authorized by the dispatch server as indicated by the pickup authentication information related to the authorized pickup logistics operation. 74 . The apparatus of claim 71 , wherein the controller, when executing the remote storage access program code, is further operative to receive the pickup authentication information related to the authorized pickup logistics operation from a dispatch server over the wireless communication interface. 75 . The apparatus of claim 71 , further comprising a sensor disposed within the storage enclosure for detecting deposit of the object deposited for shipment, the sensor being operatively coupled to the controller of the wireless node-based remote access control module, the sensor being operative to generate sensor data reflecting the detected deposit of the object deposited for shipment within the storage enclosure; and wherein the controller, when executing the remote storage access program code, is further operative to receive the sensor data from the sensor and responsively transmit a dispatch request message over the wireless communication interface to the dispatch server, the dispatch request initiating dispatch of the dispatched mobile autonomous delivery vehicle for the authorized pickup logistics operation. 76 . The apparatus of claim 71 , wherein the parcel object actuator is operative when activated to cause the object being shipped to be removed from the temporary storage area and placed into custody of the dispatched mobile autonomous delivery vehicle. 77 . The apparatus of claim 71 , wherein the parcel object actuator comprises an actuated support base that temporarily maintains the object deposited for shipment, wherein the actuated support base is operative when actuated to tilt towards the entrance opening causing the object being shipped to at least slide towards the entrance opening. 78 . The apparatus of claim 71 , wherein the parcel object actuator comprises an actuated pushing arm that is operative when actuated to contact the object being shipped and at least push the object being shipped towards the entrance opening. 79 . The apparatus of claim 71 , wherein the parcel object actuator comprises an actuated sliding arm that is operative when actuated to contact the object being shipped and at least slide the object being shipped towards the entrance opening. 80 . The apparatus of claim 71 , wherein the parcel object actuator comprises an actuated grabbing arm operative when actuated to engage the object being shipped, move the object being shipped towards and through the entrance opening, and place the object being shipped with the dispatched mobile autonomous delivery vehicle. 81 . The apparatus of claim 71 , wherein the parcel object actuator comprises an actuated moving surface that temporarily maintains the object deposited for shipment, wherein the actuated moving surface is operative when actuated to move while supporting the object being shipped to cause the object being shipped to move towards the en

Assignees

Inventors

Classifications

  • Control of position or course in two dimensions [2D] · CPC title

  • Communication links with the remote-control arrangements · CPC title

  • using dead reckoning · CPC title

  • Handing over between remote control and on-board control; Handing over between remote control arrangements · CPC title

  • involving a plurality of disparate vehicles · CPC title

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What does patent US2024257594A1 cover?
Methods and enhanced apparatus used in such methods are described that a dispatched logistics operation for a deliverable item from a hold-at-location (HAL) logistics facility having a secured storage and using a modular autonomous bot apparatus assembly and a dispatch server. The bot apparatus assembly picks up and delivers the item from the HAL facility in response to a delivery dispatch comm…
Who is the assignee on this patent?
Fedex Corp Services Inc
What technology area does this patent fall under?
Primary CPC classification G06Q10/083. Mapped technology areas include Physics.
When was this patent published?
Publication date Thu Aug 01 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).