Abstract:
A device may receive device data identifying Internet of Things (IoT) devices and may receive network data identifying network traffic patterns associated with the IoT devices. The device may process the device data and the network data, with a machine learning model, to determine parameters for charging each of the IoT devices and may determine that a particular IoT device of the IoT devices requires charging based on particular parameters associated with the particular IoT device. The device may receive location data identifying a location of the particular IoT device and may cause, based on the location data, one or more chargers to wirelessly provide a radio frequency power beam to the particular IoT device based on the particular parameters.
Abstract:
The re-transmission of transmission units (TUs) received in a communication device over a communication link is controlled to improve the information carrying capacity of the link. A received TU has an associated service characteristic indicative of a quality of service (QOS) for the TU. The service characteristic is associated with a select set of key performance indicators (KPIs), such as measures of packet error, packet delay, packet delay variation, and/or packet loss experienced by TUs on the communication link. Upon receipt of a TU, the performance of the communication link is evaluated with respect to each KPI in the select set to obtain a corresponding measurement value, and the measurement values are compared to corresponding threshold values. Upon determining that a determined performance value does not satisfy a corresponding threshold value for a KPI in the select set, re-transmission of the TU is requested.
Abstract:
A device may obtain, for an account associated with a user equipment (UE) that is connected to a network, subscriber profile data that includes a group identifier for a messaging group for UEs that are eligible to utilize a group messaging service. The device may update a data structure to associate the group identifier and a UE identifier for the UE, wherein the data structure also associates the group identifier and other UE identifiers for other UEs of the messaging group. The device may receive, based on being subscribed to the group messaging service, group message data for a group message. The device may select the UE and the one or more other UEs as target recipients of the group message and may provide, using multicast, the contents of the group message to the UE and the one or more other UEs.
Abstract:
A device may determine one or more parameters relating to a network. The device may detect a trigger to alter a hybrid automatic repeat request (HARQ) configuration for the network based on the one or more parameters relating to the network. The device may determine an alteration to the HARQ configuration based on detecting the trigger to alter the HARQ configuration. The device may communicate with a distributed unit or a centralized unit of the network to cause the alteration to the HARQ configuration.
Abstract:
A device may receive information that identifies a radio frequency condition of a user device, where the radio frequency condition indicates a quality of a radio access network connection of the user device. The device may determine a radio frequency parameter value based on the radio frequency condition, and may set a data rate for a transmission control protocol (“TCP”) communication with the user device based on the radio frequency parameter value.
Abstract:
A first user device may receive a call instruction associated with a second user device; select a particular codec list from multiple codec lists stored by the first user device based on selection rule and based on receiving the call instruction; provide the particular codec list as part of a call negotiation process; and provide, using a particular codec from the particular codec list, a data flow towards the second user device via a session between the first user device and the second user device.
Abstract:
A device may receive a packet that includes priority information that is based on a priority assigned to bits included in the packet. The priority may be assigned based on scalable code used to encode the bits for transmission. The device may determine that an indicator of network congestion satisfies a threshold, and may schedule the packet for transmission to a user device based on the priority information and the determination that the indicator satisfies the threshold.
Abstract:
A base station may allocate wireless communication resources to configure a synthetic wireless communication signal for use as a radar signal. The synthetic wireless communication signal may be configured according to a wireless communication protocol of a wireless communication network that is associated with the base station. The base station may transmit, from an antenna and toward an area associated with the base station, the synthetic wireless communication signal. The base station may detect a reflected signal that is associated with the synthetic wireless communication signal. The base station may process the reflected signal to generate radar data; and perform an action associated with the radar data and the area.
Abstract:
A base station may establish a wireless connection with a mobile device. The base station may determine an index value for each of a plurality of carriers that may be used for the wireless connection. The index value for a respective carrier may be determined based on a quantity of idle mode devices using the respective carrier in an idle mode. The base station may generate a carrier order that indicates a priority for each of the plurality of frequencies. The carrier order may be generated based on sorting the plurality of carriers based on the index values for the plurality of carriers. The base station may send order information indicating the carrier order to the mobile device via the wireless connection.
Abstract:
A device may determine first information associated with a plurality of carriers. The first information may be associated with a plurality of user devices connected to a base station via the plurality of carriers. The device may determine second information associated with the plurality of carriers. The second information may be associated with a plurality of user devices camping on the plurality of carriers. The device may selectively perform load balancing in association with the plurality of user devices camping on the plurality of carriers based on the first information and the second information.