DYNAMIC CART OPTIMIZATION SYSTEM
    81.
    发明申请

    公开(公告)号:US20250042660A1

    公开(公告)日:2025-02-06

    申请号:US18740439

    申请日:2024-06-11

    Applicant: PACKSIZE, LLC

    Abstract: A computer system for optimizing node and edge selections within a digital graph model accesses a digital graph model of a physical warehouse location. The digital graph model comprises information indicating a location of multiple specific items of inventory among shelves in the physical warehouse location. The computer system identifies a set of orders that each comprise one or more items and an order priority. The computer system then maps each item in each order selected from the set or orders to the multiple nodes within the digital graph model. The computer system identifies a ranking node from the multiple nodes. The computer system then traverses one or more edges that extend from the ranking node to identify a shortest path within the digital graph model to fill a digital model of a picking cart above a packing threshold level.

    CABLE-BASED MEASURING SYSTEM
    82.
    发明公开

    公开(公告)号:US20240318953A1

    公开(公告)日:2024-09-26

    申请号:US18733788

    申请日:2024-06-04

    Applicant: PACKSIZE LLC

    Abstract: The present disclosure extends to methods, systems, apparatus, and computer program products related to a cable-based measuring system. The cable-based measuring system includes a cable, comprising an inner cable member configured to move linearly within an outer cable housing. The measuring system also includes a measuring device configured to generate measurement information regarding movement of the inner cable member relative to the outer cable housing using one or more encoders. A computer system receives the measurement information from the measuring device. The measurement information indicates length as a function of time, and represents three orthogonal dimensional measurements of a three-dimensional object. Based on the measurement information, the computer system identifies a length of each dimensional measurement, including a length, a width, and a height of the three-dimensional object. The computer system then initiates creation of a box template sized to accommodate the three-dimensional object and/or updates a database.

    Identifying and managing equipment within an operational environment

    公开(公告)号:US12085923B2

    公开(公告)日:2024-09-10

    申请号:US17374774

    申请日:2021-07-13

    Applicant: PACKSIZE LLC

    Inventor: Andreas Harnesk

    Abstract: Embodiments are directed to apparatuses and methods for managing and producing equipment within an operational environment. In one scenario, a method is performed that includes generating an organizational database structure that maintains information associated with equipment that is part of an operational environment. The organizational database structure includes information indicating which packable items are associated with the piece of equipment. The method further includes accessing the generated organizational database structure to identify physical operational environment factors that affect which pieces of equipment are to be currently produced within the operational environment. The method then evaluates the identified physical operational environment factors to determine whether the specified piece of equipment is to be currently produced within the operational environment and, upon determining that the specified piece of equipment is to be currently processed within the operational environment, the specified piece of equipment is produced and provided to the operational environment.

    Foldable box
    84.
    外观设计

    公开(公告)号:USD1039972S1

    公开(公告)日:2024-08-27

    申请号:US29734787

    申请日:2020-05-15

    Applicant: PACKSIZE LLC

    Designer: Clinton Engleman

    Abstract: FIG. 1 is a perspective view of the foldable box showing the new design in a flat, unfolded configuration.
    FIG. 2 is a front elevational view of the foldable box of FIG. 1.
    FIG. 3 is a left elevational view of the foldable box of FIG. 1.
    FIG. 4 is a right elevational view of the foldable box of FIG. 1.
    FIG. 5 is a top plan view of the foldable box of FIG. 1.
    FIG. 6 is a bottom plan view of the foldable box of FIG. 1.
    FIG. 7 is a back plan view of the foldable box of FIG. 1.
    FIG. 8 is a perspective view of the foldable box of FIG. 1 in an assembled configuration.
    FIG. 9 is a top plan view of the foldable box of FIG. 8.
    FIG. 10 is a left elevational view of the foldable box of FIG. 8.
    FIG. 11 is a right elevational view of the foldable box of FIG. 8.
    FIG. 12 is a front elevational view of the foldable box of FIG. 8.
    FIG. 13 is a back elevational view of the foldable box of FIG. 8.
    FIG. 14 is a bottom plan view of the foldable box of Figure.
    The foldable box includes symbolic break lines along its length. The break lines and areas between the break lines form no part of the claimed design.
    The separations and brackets in FIGS. 1, 2, 5, 6, and 7 are used to indicate that any portions of the foldable box between the separations form no part of the claimed design.

    Systems and methods for multi-camera placement

    公开(公告)号:US12010431B2

    公开(公告)日:2024-06-11

    申请号:US17019105

    申请日:2020-09-11

    Applicant: PACKSIZE LLC

    CPC classification number: H04N23/698 G06T7/73 G06T7/85

    Abstract: A method for calibrating a camera group includes: controlling a first and second cameras to capture first and second images of a first scene, the first camera having a first field of view (FOV), the second camera having a second FOV overlapping the first FOV in a first overlap region; the first scene including a calibration target in the first overlap region; computing a first relative pose based on the first and second images; controlling the second camera and a third camera to capture third and fourth images of a second scene, the third camera having a third FOV overlapping the second FOV in a second overlap region, the second scene including a calibration target in the second overlap region; computing a second relative pose based on the third and fourth images; and computing a third relative pose based on the first and second relative poses.

Patent Agency Ranking