Abstract:
Systems and methods are disclosed herein for adjusting a control channel timer based on control communication traffic on a control channel. In a particular embodiment, a method provides exchanging data packets with a wireless network over a wireless traffic channel assigned to a wireless device. The method further provides monitoring control communications from the wireless network over a wireless control channel and adjusting a control channel timer that indicates a time period that the wireless device should continue to monitor the control communications based on a level of control communication traffic. The method further provides releasing the assigned traffic channel in response to the expiration of a dormancy timer. In response to the release of the traffic channel, the method provides starting the control channel timer. In response to the expiration of the control channel timer, the method provides stopping the monitoring of the control communication traffic.
Abstract:
A wireless communication system provides a wireless communication service over multiple frequency band classes. The system monitors the amount of active mode users and idle mode users in the frequency band classes. The system selects one of the frequency band classes for a wireless communication device based on the amount of active mode users and idle mode users in the frequency band classes. The system provides the wireless communication service to the wireless communication device over the selected one of the frequency band classes.
Abstract:
Methods, systems, and media for identifying areas of outbound roaming on a wireless network are disclosed. A roaming-network event record listing roaming events of subscribers of a home network is received. A home-network event record listing network events on a home network is also received. The two records are correlated to identify roaming events and network events having matching caller identifiers and time stamps within a predetermined range. Location data of a network event is adopted as location data for a matching roaming event. A home-network wireless-communications antenna, tower, or station having a service area in which a concentration of roaming events have occurred is identified. The distance of the roaming events from the antenna is determined and distance bands corresponding to that distance are plotted on a map to aid in identifying locations at which outbound roaming has occurred.
Abstract:
A wireless access node provides a wireless communication service to a plurality of wireless communication devices over a first frequency band class, where a set of the wireless communication devices are currently in idle mode. A node control system detects a condition for the first frequency band class, and in response, transitions a subset of the wireless communication devices that are currently in idle mode to a second frequency band class. The wireless access node then provides the wireless communication service to the subset of the wireless communication devices over the second frequency band class.
Abstract:
A plurality of candidate access terminals for participation in a multi-user packet-based (MUP-based) communication are determined. Two or more candidate access terminals are grouped into a MUP-based group, the grouping based on a hybrid automatic repeat request behavior of the plurality of candidate access terminals. Data is sent to the MUP-based group using a multi-user packet.
Abstract:
Embodiments disclosed herein provide systems and methods for override vocoder capacity operating point (COP) allocation. In a particular embodiment, a method provides determining a communication load on a wireless access node. Based on the communication load, the method provides allocating a first COP for a vocoder, wherein the vocoder is used on voice communications exchanged with the wireless access node. The method further provides determining a frame error rate of a wireless communication link between a wireless communication device and the wireless access node. If the frame error rate indicates that a COP of the wireless communication link should be lower than the first COP, the method provides allocating an override COP to the COP of the wireless communication link based on the frame error rate.
Abstract:
Systems, methods, and computer-readable media for providing enhanced access class barring in LTE are provided. In embodiments, the method includes receiving, on a mobile device, a SIB2 message. A barring factor associated with the SIB2 message is identified. In embodiments, the barring factor is dynamic based on traffic parameters associated with a network. An upper limit for a random number is set on the mobile device and the random number is generated. The random number is generated and compared to the barring factor. If the random number is less than the barring factor, access to the network is provided to the mobile device. In embodiments, an additional random number is generated for special users or devices if the random number is greater than or equal to the barring factor.
Abstract:
Various systems and methods are provided to manage and operate a wireless communication system. A processing system receives an application data flow from a wireless device located in a sector of a base station. The application data flow comprises a plurality of data packets. At least one of the data packets is inspected for an attribute. Also, an application data flow characteristic is measured for the application data flow. The processing system evaluates the attribute and the application data flow characteristic against a network policy associated with the wireless device. When the attribute and the application data flow characteristic meet the network policy, the processing system provides a wireless communication adjustment notification to the base station.
Abstract:
In a wireless communication system, a wireless access node provides a wireless communication service to wireless communication devices over a first frequency band class and over a second frequency band class. A control system identifies a subset of the wireless communication devices operating over the first frequency band class that have been in an idle mode for a time period that exceeds a threshold. The wireless access node transfers a signal to the subset of the wireless communication devices to transition from the first frequency band class to the second frequency band class. The wireless access node then provides the wireless communication service to at least some of the subset of the wireless communication devices over the second frequency band class.
Abstract:
Computer-implemented systems and computer-readable media for generating distance bands on a map to identify areas of outbound roaming on a wireless network are disclosed. A roaming-network event record listing roaming events for subscribers of a home network is received. A home-network event record listing network events on a home network is also received. The two records are correlated to identify roaming events and network events having matching caller identifiers and time stamps within a predetermined range. Location data of a network event is adopted as location data for a matching roaming event. A home-network wireless-communications antenna having a service area in which a concentration of roaming events have occurred is identified. The distance of the roaming events from the antenna is determined and distance bands corresponding to that distance are plotted on a map to aid in identifying locations at which outbound roaming has occurred.