Abstract:
A first memory device receives session information associated with a session between a first network device and a user device. The first memory device outputs the session information associated with the session information. A second memory device receives the session information, associated with the session, from the first memory device. The second memory device receives a communication from the first memory device that the first network device is not functioning. The second memory device sends session information to a second network device, based on receiving the communication from the first network device that the first network device is not functioning, the second network device taking over the session from the first network device.
Abstract:
A server device may identify that a user device is connected to a first radio access network (“RAN”), via a first technology. The server device may identify that the user device is capable of accessing a second RAN, via a second technology, where the second RAN is different from the first RAN, and where the second technology is different from the first technology. The server device may also receive an indication that the first RAN is congested. The server device may further determine, based on the indication that first RAN is congested, and further based on identifying that the user device is capable of accessing the second RAN via the second technology, that the user device should be handed over to the second RAN. Additionally, the server device may instruct the user device to connect to the second RAN via the second technology.
Abstract:
A device may receive a network access request and perform at least one of signal strength measurements of a first wireless network and a second wireless network, a determination of a level of congestion of the first wireless network and a level of congestion of the second wireless network, or a determination of an access point name (APN) type associated with the network access request. The device may select one of the first wireless network or the second wireless network based on the performance of the at least one of the signal strength measurements, the determination of the level of congestion of the first wireless network and the level of congestion of the second wireless network, or the determination of the APN type associated with the network access request. The device may further connect to the selected one of the first wireless network or the second wireless network.
Abstract:
A network device may store information identifying a coverage area associated with each of one or more cells that are associated with the network device. The network device may receive information identifying a geographic location of a user device. The network device may compare the geographic location of the user device to one or more of the stored coverage areas. The network device may also determine, based on the comparing, that the user device is within a particular coverage area of a particular cell, of the one or more cells. The network device may further send, to the user device, and based on determining that the user device is located within the particular coverage area of the particular cell, an instruction for the user device to connect to the particular cell, where the user device is to attempt to connect to the particular cell in response to the instruction.
Abstract:
A device receives, from a network device, information associated with an event, and assigns an event identifier to the event based on the event information. The device also provides the event identifier to a cell control device located at a location associated with the event, and determines a cell capacity of the location to ensure that there is sufficient cell capacity at the location to broadcast the event. The network device instructs a device capturing the event to provide live event data to the cell control device for a predetermined time period.
Abstract:
A mobile device may determine applications that are executed by the mobile device. The mobile device may further determine handoff parameters, relating to performance of a handoff operation in a cellular network. The handoff parameters may be determined based on the applications being executed by the mobile device. A handoff operation may be performed based on the determined handoff parameters.
Abstract:
A device may manage fixed wireless installations. The device may receive data relating to the fixed wireless installations, where the data is received from a number of sources, including the fixed wireless installations and network devices used to implement a long term evolution (LTE) cellular network to which the fixed wireless installations connect. The device may analyze the data to determine optimizations to improve the operation of one or more of the fixed wireless installations or the LTE cellular network. The device may change, in response to the analysis, a configuration of at least one of the fixed wireless installations and at least one of the network devices.
Abstract:
A base station for an Internet protocol (IP) wireless access network receives an initial attach request from a user device. Based on the initial attach request, a policy and charging rules function (PCRF) device provides to the base station, a subscriber bearer policy that includes a particular quality-of-service control indicator (QCI) value, an uplink data rate limit, and a downlink data rate limit. The base station calculates an uplink bandwidth allocation, based on the QCI value and the uplink data rate limit, that is proportionate to the total maximum data rate of all uplink traffic with the same QCI value. The base station also calculates a downlink bandwidth allocation, based on the QCI value and the downlink data rate limit, that is proportionate to the total maximum data rate of all downlink traffic with the same QCI value.
Abstract:
A system is configured to store user preferences relating to selection of a network, from a group of networks, via which to establish a connection, where the user preferences includes information for selecting the network based on rates and information for selecting the network based on signal strength or quality levels; receive, from a server device that communicates with the group of networks, a set of rates associated with use of the group of networks; detect signals transmitted by the group of networks; determine, for the group of networks, signal strength or quality levels associated with the signals transmitted by the group of networks; select a particular network, of the group of networks, based on the user preferences, the set of rates, and the signal strength or quality levels; and establish a connection via the particular network.
Abstract:
A monitoring device may determine an application to monitor, may determine a parameter to monitor, where the parameter is associated with at least one of a network or a device, may determine user devices from which to collect the parameter, and may transmit, to the user devices, information that identifies the application and information that identifies the parameter. The monitoring device may receive, from the user devices, information that identifies values of the parameter, may analyze the values of the parameter, may determine, based on the analysis, that the application is a cause of a problem associated with the network or the device. The monitoring device may perform an action based on determining that the application is a cause of the problem.