Abstract:
A network device identifies Internet of Things (IoT) devices in a wireless network in a service area; determines a reporting configuration for each of the IoT devices associated with an initiation of reporting instances via the wireless; identifies, based on the reporting configurations, a potential signal loading reduction over the wireless network and/or a potential power consumption reduction related to the reporting configuration associated with at least one of the IoT devices; and modifies the reporting configuration of the at least one IoT device to enable the potential signal loading reduction and/or the potential power consumption reduction.
Abstract:
A network device identifies Internet of Things (IoT) devices present on a Long Term Evolution, category M1 (LTE Cat-M1) network in a service area with connectivity to a wireless station; determines a reporting configuration currently associated with each of the IoT devices, wherein each of the reporting configurations are based on a reporting requirement for an initiation of reporting instances via the LTE Cat-M1 network; performs an analysis of the reporting configurations to identify a potential signal loading reduction over the LTE Cat-M1 network and/or a potential power consumption reduction related to the reporting configuration associated with at least one of the IoT devices; modifies, based on the analysis, the reporting configuration of the at least one IoT device to enable the potential signal loading reduction and/or the potential power consumption reduction; and transmits, to the at least one IoT device, a message identifying the modified reporting configuration.
Abstract:
Exemplary systems, methods, and apparatuses may direct an application processor of an embedded computing device to: detect an operational mode selection command received from an application being executed by the application processor, the operational mode selection command selecting, from a plurality of operational modes, an operational mode of the application; determine connection statuses of a plurality of wireless network interfaces of the embedded computing device; determine, in accordance with a wireless network configuration optimization heuristic, and based on the detected operational mode selection command and the determined connection statuses of the plurality of wireless network interfaces, a state configuration for the plurality of wireless network interfaces; and direct the plurality of wireless network interfaces to operate in accordance with the state configuration.
Abstract:
A user device may include a display that includes a first area and a second area. The first area may be located around a periphery of the second area, and the first area may include a touch-sensitive surface. The user device may detect a user interaction with the first area and may determine an action associated with the user interaction. The user device may perform the action in association with information displayed in the second area.
Abstract:
Exemplary systems, methods, and apparatuses may direct an application processor of an embedded computing device to: detect an operational mode selection command received from an application being executed by the application processor, the operational mode selection command selecting, from a plurality of operational modes, an operational mode of the application; determine connection statuses of a plurality of wireless network interfaces of the embedded computing device; determine, in accordance with a wireless network configuration optimization heuristic, and based on the detected operational mode selection command and the determined connection statuses of the plurality of wireless network interfaces, a state configuration for the plurality of wireless network interfaces; and direct the plurality of wireless network interfaces to operate in accordance with the state configuration.
Abstract:
A user device installs a third-party companion application with a primary software development kit (SDK) for cellular service activation on a wearable device, the wearable device including a third-party device application having an embedded SDK for the cellular service activation. The user device receives user input to initiate the cellular service activation for the wearable device and solicits, via the primary SDK, user input for account settings associated with the cellular service activation. The user device obtains, via the primary SDK and from a network device, activation parameters, associated with the wearable device, for the cellular service activation. The user device forwards, via the primary SDK and to the embedded SDK of the wearable device, the activation parameters, which the embedded SDK uses to request cellular activation.
Abstract:
A user device may include a display that includes a first area and a second area. The first area may be located around a periphery of the second area, and the first area may include a touch-sensitive surface. The user device may detect a user interaction with the first area and may determine an action associated with the user interaction. The user device may perform the action in association with information displayed in the second area.
Abstract:
An approach for managing the amount of data spent by one or more user devices on one or more services is described. A data usage analysis platform receives an input for specifying a data budget associated with a service, wherein the service operates on one or more devices. The data usage analysis platform also monitors data usage data associated with the service across the one or more devices. Still further, the data usage analysis platform presents a report of the data usage data with respect to the data budget.
Abstract:
A network device identifies Internet of Things (IoT) devices in a wireless network in a service area; determines a reporting configuration for each of the IoT devices associated with an initiation of reporting instances via the wireless; identifies, based on the reporting configurations, a potential signal loading reduction over the wireless network and/or a potential power consumption reduction related to the reporting configuration associated with at least one of the IoT devices; and modifies the reporting configuration of the at least one IoT device to enable the potential signal loading reduction and/or the potential power consumption reduction.
Abstract:
A network device identifies Internet of Things (IoT) devices in a wireless network in a service area; determines a reporting configuration for each of the IoT devices associated with an initiation of reporting instances via the wireless; identifies, based on the reporting configurations, a potential signal loading reduction over the wireless network and/or a potential power consumption reduction related to the reporting configuration associated with at least one of the IoT devices; and modifies the reporting configuration of the at least one IoT device to enable the potential signal loading reduction and/or the potential power consumption reduction.