Abstract:
The disclosure relates to hosting a group call at a wireless user device. An embodiment receives, by the wireless user device, registration information for a plurality of client devices, receives, by the wireless user device, a call request for a call among two or more of the plurality of client devices, sets up, by the wireless user device, the call among the two or more client devices, receives, by the wireless user device, a media stream, and transmits, by the wireless user device, the media stream to at least one of the two or more client devices.
Abstract:
The disclosure is directed to conducting group communications. An embodiment receives information defining a group communication from a first network, detects an availability of at least one local uni-directional radio broadcast network outside the first network, transmits an acknowledgment indicating an intention to connect to the at least one local uni-directional radio broadcast network, and monitors the group communication on the at least one local uni-directional radio broadcast network.
Abstract:
Methods, systems, and devices for tracking firearms in a wireless communication system may include a firearm configured to send sensor data to a non-recording telephone device via a telephone call to enable a CALEA server to intercept the data via a wiretap. The firearm may include various sensors that collect data about the firearm's location, use, remaining ammo, and any other information regarding its surroundings, which may be sent via the telephone call. A CALEA server may store the firearm data obtained via the wiretap.
Abstract:
Methods and apparatuses for optimizing performance using data from an Internet of Things (IoT) device with analytics engines. The method receives, from a requesting Internet of Things (IoT) device, a request for trend data of physical resource consumption based at least in part on a portion of received data from at least one of a plurality of IoT devices. The method retrieves, from memory of an analytics engine, at least the portion of the received data. The method calculates, in a calculator of the analytics engine, the trend data based on at least the portion of the received data. The method transmits, to the requesting IoT device, the calculated trend data, wherein the requesting IoT device adjusts parameters in an IoT device using the calculated trend data.
Abstract:
The disclosure relates to mechanisms that may be used to route notifications in an Internet of Things (IoT) environment according to user activity and/or proximity detection. More particularly, in various embodiments, an entity that manages the IoT environment may receive one or more messages, actions, or responses that indicate detected activity or detected proximity associated with one or more users from one or more IoT devices in the IoT environment. The management entity may then establish an activity and proximity trail from the one or more messages, actions, or responses that indicate the detected activity or the detected proximity, whereby in response to an IoT device reporting one or more notifications, an IoT device in proximity to at least one of the one or more users may be identified and the one or more notifications may be routed to the identified IoT device.
Abstract:
Systems and methods for connecting a proxy device to a mobile device are disclosed. In an aspect, the proxy device continuously scans for the mobile device, wherein the mobile device broadcasts advertising messages to connect to the proxy device, connects to the mobile device in response to the mobile device coming into communication range of the proxy device, and sends information to the mobile device, the information configured to enable the mobile device to connect to a low energy device.
Abstract:
A mobile device is capable of enabling one or more location data sources for location determination of the mobile device. The mobile device may receive a request for an emergency location session, e.g., by a user dialing E911 or from an external client. At least one location data source in the mobile device is determined to be disabled. For example, the location data sources may be a WLAN transceiver or a WPAN transceiver, as well as camera sensors and environmental sensors. The disabled location data source (s) is enabled and location data is obtained from the enabled location data source(s). The location data may be provided, e.g., to a location server. The status of the location data source (s) may be restored, e.g., disabled, after the location data is obtained or after the emergency location session is completed.
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:
A system and method comprises establishing a group communication session between a first participant and a second participant. The method may include a dynamic point of control entity within the communication session. The dynamic point of control entity may be designated to operate in different roles and may have access to information regarding the conduct and participants of the call session, and also have control authority required in order to execute the designated role.
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.