Abstract:
An exemplary user equipment (“UE”) device provides a service request to an orchestration system associated with a federation of compute clusters available to fulfill the service request. The UE device also identifies a service optimization policy associated with a user preference for balancing performance priorities during fulfillment of the service request. In response to the service request, the UE device receives cluster selection data from the orchestration system. Based on the cluster selection data, the UE device characterizes compute clusters, within a subset of compute clusters represented in the cluster selection data, with respect to the performance priorities. Based on the service optimization policy and the characterization of compute clusters in the subset, the UE device selects a compute cluster from the subset to fulfill the service request. The UE device then provides an orchestration request indicative of the selected compute cluster to the orchestration system.
Abstract:
A network device receives one or more first key performance indicators (KPIs) associated with a cell site providing wireless service within a geographic area and determines at least one first capacity usage parameter associated with the cell site providing the wireless service. The network device determines placement of an additional antenna array within the geographic area to provide a certain coverage and capacity for the geographic area based on the one or more first KPIs and the determined at least one first capacity usage parameter.
Abstract:
A device may identify an amount of data corresponding to a user device of a plurality of user devices associated with an account with a shared data amount. The amount of data may include an amount of data that is available for use by the user device and that is not available for use by other user devices of the plurality of user devices. The shared data amount may include an amount of data that is available for use by all of the plurality of user devices. The device may determine allocation information that identifies a portion of the amount of data available to the user device that is allocated for use in association with an application. The device may determine data usage information that identifies an amount of data used in association with the application. The device may determine data status information and may provide the data status information.
Abstract:
A system may obtain identification information for a user for obtaining a form of access using universal enrollment. The system may obtain a digital certificate associated with the identification information, the digital certificate including a public key of a public key, private key pair and the public key and the private key of the public key, private key pair being generated using first biometric information of the user obtained during the universal enrollment. The system may obtain second biometric information. The system may generate a second private key using the second biometric information. The system may determine whether the second private key matches the public key included in the digital certificate. The system may provide the form of access based on the second private key matching the public key included in the digital certificate.
Abstract:
A device may provide a baseline uplink audio signal and a baseline downlink audio signal to create a double talk communication for a user device. The device may receive an audio signal, transmitted by the user device, based on providing the baseline uplink audio signal and the baseline downlink audio signal. The device may determine a score based on the audio signal. The score may indicate an effectiveness of the user device with regard to processing audio associated with the double talk communication. The device may provide information that identifies the score to indicate the effectiveness of the user device with regard to processing audio associated with the double talk communication.
Abstract:
A charger and a mobile device exchange messages indicating that high wattage charging is supported over a bidirectional communication channel. After the message exchange, the charger sends a controlled output voltage and current to the mobile device over a cable connected between the charger and the mobile device. The mobile device takes an input voltage measurement that corresponds to the controlled output voltage after being passed through the cable. The charger or mobile device may then calculate a resistance of the cable based on a difference between the controlled output voltage and the input voltage measurement. Based on the resistance of the cable, the controlled voltage and current used to charge a battery of the mobile device is adjusted in order to avoid exceeding capacity of the cable.
Abstract:
Examples of power conservation management for user equipment based on the operating state of the user equipment are provided. A user equipment may implement a power managing application that monitors the activity of the user equipment, such as the number of applications open on the user equipment, the data usage requirements for each open application, data delay tolerances for each application and/or a level of user interaction with the device at a given moment. Based on the level of activity and the data requirements, the managing application on the user equipment is able to make a discontinuous reception profile setting recommendation selected from more than two discontinuous reception profiles to the mobile communications network entity. In response to the discontinuous reception profile setting recommendation, the network entity may modify the connection status with the user equipment.
Abstract:
A network device in a Multi-Access Edge Computing (MEC) cluster is configured to: receive, from a wireless station, information associated with a User Equipment (UE) device that is wirelessly attached to a network through the wireless station and estimate a first time interval to complete a task for the UE device based on the information. If the first time interval is less than a threshold time interval, the processor is to: signal, through the wireless station, to the UE device to be in a connected state; execute the task; and send a result of the execution, through the wireless station, to the UE device.
Abstract:
A system may include a first device and a second device. The first device may be configured to select a second device for providing a first User Equipment device (UE) with media clips in accordance with Application Programming Interface (API) calls from a second UE. The second device may be configured to: receive a first API call from the second UE to generate and provide a media clip; generate the media clip; and send the generated media clip to the first UE.
Abstract:
A method may include receiving, at a wireless station, device capability information associated with a number of user equipment (UE) devices and determining, by the wireless station, uplink and downlink configurations for a number of carriers associated with the wireless station. The method may also include configuring uplink and downlink time slots for each of the carriers based on the determined uplink and downlink configurations and modifying the uplink and downlink configurations for at least some of the carriers over time based on data usage or congestion associated with the at least some of the plurality of carriers.