Abstract:
The disclosure relates to collaborative intelligence and decision-making in an Internet of Things (IoT) device group. In particular, various IoT devices in the group may be interdependent, whereby a decision that one IoT device plans may impact other IoT devices in the group. Accordingly, in response to an IoT device planning a certain decision (e.g., to transition state or initiate another action), the IoT devices in the group may collaborate using distributed intelligence prior to taking action on the planned decision. For example, a recommendation request may be sent to other IoT devices in the group, which may then analyze relationships within the group to assess potential impacts associated with the planned decision and respond to approve or disapprove the planned decision. Based on the responses received from the other IoT devices, the IoT device may then determine whether to take action on the planned decision.
Abstract:
The disclosure generally relates to determining items to build based on inventory in an Internet of Things (IoT) network and using a 3D printer to build the determined items. In particular, inventory in the IoT network may be monitored to predict replacement needs associated with certain items in the IoT network inventory and determine further inventory needs (e.g., based on items that malfunction or break, upcoming calendar events, etc.). In one embodiment, in response to determining that additional inventory items may be needed in the IoT network, licenses and 3D printer blueprints to build the items may be obtained (internally and/or externally) and 3D printing may be scheduled to build the items (e.g., based on a priority scheme, timing criteria, resource availability, etc.), whereby the items may be added to the IoT network inventory when the 3D printer completes 3D print jobs to produce the items.
Abstract:
The disclosure generally relates to enabling communication among one or more Internet of Things (IoT) device groups. In particular, various heterogeneous IoT devices that may need to interact with one another in different ways may be organized into IoT device groups to support efficient interaction among the IoT devices. For example, pre-defined IoT device groups may be formed organize certain IoT devices that perform similar activities and certain IoT devices may be dynamically allocated to ad-hoc IoT device groups for certain contexts (e.g., the ad-hoc IoT device groups may include IoT devices that can implement a desired function and therefore be dynamically formed to implement the desired function). Furthermore, the IoT groups may communicate hierarchically, wherein messages may be exchanged among IoT group owners or ranking members to support efficient communication between different IoT groups.
Abstract:
Systems, methods, and devices for managing audio streams in a group communication session. A processor of a receiving communication device may send to a transmitting communication device an instruction to adjust a gain of an audio stream of the transmitting communication device via a feedback communication link. A processor of the transmitting communication device may receive the instruction and may adjust the gain of the audio stream responsive to the instruction. The processor of the transmitting communication device may transmit the audio stream using the adjusted gain.
Abstract:
In an embodiment, a UE obtains one or more quorum conditions for communication with a given group from a set of groups to which the UE is registered. The UE searches, over a P2P interface, to identify one or more group members that are registered to the given group and which are proximate to the UE. The UE determines whether the identified one or more group members are sufficient to satisfy at least one of the one or more quorum conditions. The UE selectively triggers a communicative action associated with the given group based on whether the determining determines the at least one quorum condition to be satisfied.
Abstract:
Systems and methods are disclosed for setting a control zone configuration for members of a communication group. A dispatcher device establishes a geofence associated with a geographic area including one or more members of the communication group, determines the control zone configuration for members of the communication group within the geofence, and sends the control zone configuration to the one or more members of the communication group.
Abstract:
A server conducts a communication session between an originating device and at least one target device via a first duplex characteristic (e.g., half-duplex, full-duplex, media share, etc.). The server monitors a set of session parameters while the communication session has the first duplex characteristic. Based on the monitoring, the server detects one or more changes to at least one session parameter in the set of session parameters. The server automatically determines to transition the communication session from the first duplex characteristic to a second duplex characteristic (e.g., half-duplex, full-duplex, media share, etc.) in response to the detection. The server transitions the communication session from the first duplex characteristic to the second duplex characteristic in response to the determination.
Abstract:
In an embodiment, a control device configures session parameters (e.g., related to an audio component, a video component, an eye tracking component, etc.) for a coordinated display session. The control devices maps, for proximate client devices registered as presentation devices for the coordinated display session, a different portion of visual data for the coordinated display session to respective display screens, and delivers the mapped portions of the visual data to the proximate client devices for presentation by the respective display screens during the coordinated display session. The control device obtains eye movement monitoring feedback from a set of eye tracking devices, the eye movement monitoring feedback characterizing eye movements of a viewing population of the coordinated display session. The control device modifies the session parameters associated with the coordinated display session based on the eye movement monitoring feedback.
Abstract:
The disclosure generally relates to Internet of Things (IoT) device social networking, and in particular to an IoT device publish-subscribe messaging model and automatic IoT device social network expansion. For example, IoT devices from different networks may publish status data that relates to certain topics, wherein the published status updates may be managed in a distributed manner at each IoT network. Furthermore, IoT devices interested in published data can subscribe to data relating to certain topics, which may be used to dynamically adjust actions that the subscribing IoT devices may take. Furthermore, IoT devices can employ common social networking capabilities (e.g., refer, follow, like, publish, subscribe, etc.) to interact with other IoT devices and find relevant information from other IoT devices that can be used to improve performance and effectiveness.