Abstract:
Embodiments of the present invention provide methods, systems, computer program products, and apparatuses for processing package delivery exceptions. In one embodiment, a method for processing an item delivery exception for an item that is to be delivered by a carrier is provided. The method comprises receiving an exception request associated with the item; notifying a delivery vehicle driver of the exception request; receiving input indicating a unique RFID identifier, wherein the unique RFID identifier identifies an exception RFID tag attached to the item; associating the unique RFID identifier with the unique item identifier; after receiving a request to locate the item, activating an RFID reader array, wherein the RFID reader array is located at a facility associated with the carrier; and based at least in part on the detection of the item by at least one RFID reader of the RFID reader array, calculating an estimated location of the item.
Abstract:
Computer program products, methods, systems, apparatus, and computing entities are provided. In one embodiment, computing entities can establish direct communications with one another using a variety of protocols and standards. Such direction communications can be monitored or attempted to be established to determine whether an item is allowed or disallowed for delivery.
Abstract:
Systems and methods include UAVs that serve to assist carrier personnel by reducing the physical demands of the transportation and delivery process. A UAV generally includes a UAV chassis including an upper portion, a plurality of propulsion members configured to provide lift to the UAV chassis, and a parcel carrier configured for being selectively coupled to and removed from the UAV chassis. UAV support mechanisms are utilized to load and unload parcel carriers to the UAV chassis, and the UAV lands on and takes off from the UAV support mechanism to deliver parcels to a serviceable point. The UAV includes computing entities that interface with different systems and computing entities to send and receive various types of information.
Abstract:
Systems and methods include UAVs that serve to assist carrier personnel by reducing the physical demands of the transportation and delivery process. A UAV generally includes a UAV chassis including an upper portion, a plurality of propulsion members configured to provide lift to the UAV chassis, and a parcel carrier configured for being selectively coupled to and removed from the UAV chassis. UAV support mechanisms are utilized to load and unload parcel carriers to the UAV chassis, and the UAV lands on and takes off from the UAV support mechanism to deliver parcels to a serviceable point. The UAV includes computing entities that interface with different systems and computing entities to send and receive various types of information.
Abstract:
Various embodiments are directed to systems and methods for engaging a service provider to perform a delivery service to redirect a shipment to be delivered to an alternative intended destination upon receipt of a redirection request. Based on a monitored current location of a last mile delivery vehicle scheduled to deliver the shipment to an initial intended destination, a computing entity monitors the location of available service providers capable of meeting the last mile delivery vehicle to pick up the shipment and transport the shipment to the alternative intended destination. The computing entity may engage one of the service providers by transmitting a signal to a mobile computing entity carried by the service provider and may monitor the service provider's progress in meeting the last mile delivery vehicle and transporting the shipment to the alternative intended destination.
Abstract:
Computer program products, methods, systems, apparatus, and computing entities are provided. In one aspect, a connection between an electronic door hanger and a customer computing entity can be established at a customer's location. With a connection established, information about an attempted (e.g., successful/unsuccessful) pick-up or delivery can be automatically provided to the customer computing entity.
Abstract:
Systems and methods include UAVs that serve to assist carrier personnel by reducing the physical demands of the transportation and delivery process. A UAV generally includes a UAV chassis including an upper portion, a plurality of propulsion members configured to provide lift to the UAV chassis, and a parcel carrier configured for being selectively coupled to and removed from the UAV chassis. UAV support mechanisms are utilized to load and unload parcel carriers to the UAV chassis, and the UAV lands on and takes off from the UAV support mechanism to deliver parcels to a serviceable point. The UAV includes computing entities that interface with different systems and computing entities to send and receive various types of information.
Abstract:
Computer program products, methods, systems, apparatus, and computing entities are provided. In one embodiment, a connection between an electronic door hanger and a customer computing entity can be established at a customer's location. With a connection established, information about an attempted (e.g., successful/unsuccessful) pick-up or delivery can be automatically provided to the customer computing entity.
Abstract:
Various embodiments are directed to systems and methods for determining whether an individual uses proper posture to perform a job duty/task. For example, systems may determine whether an individual utilizes proper posture when lifting a heavy item from a floor. Accordingly, various embodiments comprise an image capture device and a central computing entity configured to receive item information/data for an item to be moved by an individual and to determine whether the item information/data satisfies one or more image collection criteria. Upon determining the item information/data satisfies one or more of the image collection criteria, the computing entity may activate an image capture device to collect image information/data of individuals performing the job duty/task, to compare collected image information/data against a plurality of reference images, and to determine whether the collected image information/data is indicative of the individual performing the job duty/task according to proper posture considerations.
Abstract:
Computer program products, methods, systems, apparatus, and computing entities are provided. In one embodiment, computing entities can establish direct communications with one another using a variety of protocols and standards. Such direction communications can be monitored or attempted to be established to determine whether an item is allowed or disallowed for delivery.