Abstract:
In an embodiment, a first client device establishes a P2P connection with a second client device. While the P2P connection is still established, the first client device receives a request to send data to the second client device via the P2P connection, and then sends the data to a server along with an indication of a temporary identifier of the second client device without notifying an operator of the first client device that the data is being sent to the server. In another embodiment, the server receives the data, maps the temporary identifier to a unique network address of the second client device and generates a record of the data transmission between the respective client devices. In another embodiment, the server maintains an association for the temporary identifier after the first and second client devices are disconnected from their P2P connection to permit supplemental communication.
Abstract:
The disclosure relates to identifying an object associated with a nearby Internet of Things (IoT) device. In an aspect, a device receives identifying information associated with the nearby IoT device, detects a nearby object in a field of view of a camera application, determines whether or not the nearby object is associated with the nearby IoT device based on the received identifying information, and based on the nearby object being associated with the nearby IoT device, determines that the nearby object corresponds to the object associated with the nearby IoT device.
Abstract:
In the network-based group management and floor control mechanism disclosed herein, a server may receive a request to occupy a shared IoT resource from a member device in an IoT device group and transmit a message granting the member IoT device permission to occupy the shared IoT resource based on one or more policies. For example, the granted permission may comprise a floor that blocks other IoT devices from accessing the shared IoT resource while the member IoT device holds the floor. Furthermore, the server may revoke the permission if the member IoT device fails to transmit a keep-alive message before a timeout period expires, a high-priority IoT device pre-empts the floor, and/or based on the policies. Alternatively, the server may make the shared IoT resource available if the member IoT device sends a message that voluntarily releases the floor.
Abstract:
An aspect enables context aware actions among heterogeneous Internet of Things (IoT) devices. An IoT device receives data representing a context of each of a first set of IoT devices, receives data representing a current state of each of a second set of IoT devices, and determines an action to perform at a target IoT based on the received data. An aspect verifies an implied relationship between a first user and a second user by detecting an interaction between a first user device belonging to the first user and a second user device belonging to the second user, storing information related to the interaction in a first interaction table associated with the first user device, assigning a relationship identifier to the second user based, at least in part, on the information related to the interaction, and determining whether or not the assigned relationship identifier is correct.
Abstract:
Apparatus and methods establish and maintain a plurality of profiles defining different personalities in association with a single user account. Further, apparatus and methods described herein enable a group communication session including receiving a request from an originator to initiate a group communication session, where the request identifies a plurality of participants. Further, these aspects include selecting an originator profile from a plurality of different established originator profiles to be displayed to each of the plurality of participants, where each of the plurality of different established originator profiles is associated with a single user account. Further, in these aspects, a first selected originator profile to be displayed to a first one of the plurality of participants differs from a second selected originator profile to be displayed to a second one of the plurality of participants.
Abstract:
The disclosure is directed to recording voice data transmissions between mobile communication devices. An embodiment of the disclosure receives, at a first mobile communication device, an indication that a subsequent voice transmission segment may or may not be recorded by at least one other mobile communication device, and transmits, from the first mobile communication device, an indication to said at least one other mobile communication device that the subsequent voice transmission segment may or may not be recorded. Another embodiment receives an indication from at least one other mobile communication device that a subsequent voice transmission segment may or may not be recorded by said mobile communication device, and if the received indication indicates that the subsequent voice transmission segment may be recorded, records at least a portion of the subsequent voice transmission segment, and stores the recorded portion in a memory associated with said mobile communication device.
Abstract:
Embodiment methods and systems include external hardware that can be fitted to a wireless communication device that stores a communication application, communication presets and/or data that are downloaded to the wireless communication device where it may be implemented to optimize group communications on the wireless devices. The wireless device may be coupled to an external case configured with a physical button that enables group communication such as push-to-talk and other push-to-experience capabilities. Optimizations for push-to-talk communication may be implemented in a push-to-talk mode in response to detecting connection to the external hardware. Signaling between the external case and the wireless device allows detection of the switch to (or from) push-to-talk mode when a user depresses (or releases) the hard key.