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:
An outdoor broadband unit implements full IP-based routing between a wide area network (WAN)-side interface (such as a Long-Term Evolution (LTE) air interface) and a local area network (LAN)-side interface (such as a home network using MoCA protocol). The outdoor broadband unit maintains a routing table for all connections through an internal routing system based on matching between WAN-side Internet Protocol (IP) addresses and/or ports and LAN-side IP addresses and/or ports. The outdoor broadband unit may support both connection-oriented transport layer routing (such as Transmission Control Protocol (TCP)) and connectionless transport layer routing (such as User Datagram Protocol (UDP)).
Abstract:
A device may receive a signal strength indicator associated with a connection between a mobile device and a first base station. The signal strength indicator may indicate a strength of a radio signal received by the mobile device from the first base station. The device may transmit the signal strength indicator to a network device, and may receive, from the network device, a first notification to activate a second base station based on the signal strength indicator. The device may activate the second base station based on the first notification. The second base station may provide temporary wireless connectivity for the mobile device.
Abstract:
An outdoor broadband unit receives a current time and maintenance mode parameters from a network device. The outdoor broadband unit also determines a mode associated with selection of an antenna beam, provided on an antenna of the outdoor broadband unit, based on at least one of the current time and the maintenance mode parameters. The outdoor broadband unit further selects an antenna beam or a serving cell to use based on the determined mode.
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:
An outdoor broadband unit implements a library of commands to communicate between a wide area network (WAN)-side Long-Term Evolution (LTE) module and a local area network (LAN)-side broadband home router within the outdoor broadband unit. The commands are used for control plane operations to facilitate LTE network sessions for individual devices within a customer premises LAN. In some cases, the commands are also used for communicating with a remote device manager.
Abstract:
A method may include monitoring available radio access networks for information on one or more of types of radio access technologies, measurements of signal quality, measurements of signal strengths, or carrier identifiers of the available radio access networks; calculating network priorities for the available radio access networks based on the monitored information; detecting a border condition, the border condition based on a decrease in the measurements of signal quality or the measurements of signal strength; selecting, when a border condition is detected, a new radio access network from the available radio access networks based on the calculated network priorities of the available radio access networks; and connecting to a communication channel using the selected available radio access network.
Abstract:
An outdoor broadband unit receives a current time and maintenance mode parameters from a network device. The outdoor broadband unit also determines a mode associated with selection of an antenna beam, provided on an antenna of the outdoor broadband unit, based on at least one of the current time and the maintenance mode parameters. The outdoor broadband unit further selects an antenna beam or a serving cell to use based on the determined mode.
Abstract:
A method includes receiving metrics associated with traffic that complies with a grade of service (GOS) associated with a customer premises equipment (CPE) device, where the metrics identify a group of cells via which the traffic is received by the CPE device. The method also includes retrieving information associated with traffic conditions within a group of base stations; initiating a load balancing operation when traffic conditions within a base station indicate that a particular cell, associated with the base station, is congested; and sending, to a set of base stations that send traffic to the CPE device, a notification, where the notification causes traffic, not destined for the CPE device, to be rerouted to another base station, which enables the base station to send traffic, that complies with the GOS, to the CPE device, or causes the CPE device to receive traffic, that complies with the GOS, from a further based station.
Abstract:
A device is configured to receive packet timing data, from multiple network devices, for subscriber application traffic over an Internet Protocol (IP) wireless access network and to calculate, based on the packet timing data, timing latencies for a particular subscriber flow. The device is configured to retrieve Quality of Service (QoS) timing specifications for the particular subscriber flow and to determine when the calculated timing latencies for the particular subscriber flow fail to meet the QoS timing specifications for the particular subscriber flow. The device is configured to identify one or more of the network devices that are causing the particular subscriber flow to fail to meet the QoS timing specifications and to instruct the one or more of the network devices to modify QoS parameters for the particular subscriber flow to improve timing latency for the particular subscriber flow.