Abstract:
What is disclosed is a method of operating a communication system. The method includes receiving roaming call records for wireless communication devices from a roaming wireless communication network. The method also includes processing the roaming call records and home call records of a home wireless communication network for at least a first wireless communication device to determine a network handover count, and processing the network handover count to determine a network rescan rate for the first wireless communication device. The method also includes transferring the network rescan rate for delivery to the first wireless communication device.
Abstract:
Embodiments disclosed herein provide systems and methods for determining whether a wireless device should retransmit data packets based on the condition of a reverse wireless link. In a particular embodiment, a method provides exchanging wireless data packet communications between a wireless device and an access node on a wireless network. The method further provides transmitting a first packet set from the access node to the wireless device on a forward wireless link. The method further provides determining a reverse noise ratio, signal interference noise ratio, and packet error rate on a reverse wireless link and generating a confidence level indicator based on the reverse noise ratio, signal interference noise ratio, and packet error rate. The method further provides determining whether to retransmit the first packet set from the access node to the wireless device based on the confidence level indicator.
Abstract:
Methods, systems, and computer-readable media are provided for presenting coverage bars on a mobile device based on available telecommunications signals. In particular, a mobile device is associated with a plurality of telecommunications signals. Further, the telecommunications signals associated with the mobile device are assessed based on signal strength. A determination is made as to the relative strength of one telecommunications technology over another. Additionally, identifiers of the telecommunications signals are presented on a screen of the mobile device.
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:
An embodiment of the current invention is directed to reducing the time for a computing device to deliver a message to a mobile computing device. A request to enter a tracking mode is received on a quick paging channel. A transition to a tracking mode is performed. Via a slotted access channel, a location-change message is sent that indicates that the mobile computing device has entered a new location. The location-change message is sent when the mobile computing device changes locations.
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 wireless communication device comprises a wireless communication transceiver and a processing system. The wireless communication transceiver is configured to detect first and second frequencies transmitted from a wireless access node and to receive first and second threshold values transmitted from the wireless access node. The processing system is configured to determine a distance between the wireless communication device and the wireless access node, compare the distance to the first threshold value, and if the distance falls below the first threshold value, select the first frequency. The processing system is further configured to compare the distance to the second threshold value, and if the distance exceeds the second threshold value, select the second frequency. The wireless communication transceiver is configured to exchange wireless communications with the wireless access node using the selected frequency.
Abstract:
What is disclosed is a method of operating a wireless access system. The method includes exchanging wireless communications with a plurality of user devices using a first transmit diversity configuration, receiving multipath information from the user devices for the wireless communications, and processing the multipath information to determine a second transmit diversity configuration. The method also includes transferring an indicator of the second transmit diversity configuration to the user devices, and exchanging further wireless communications with the user devices using the second transmit diversity configuration.
Abstract:
Systems, methods, and computer-readable media, for facilitating voice and data transmission over a single communication path during an aggregate communication event are provided. In some embodiments, the method includes aggregating voice data until a full voice frame can be transmitted or a maximum delay of voice transmission exists. A voice frame comprising the aggregated voice data is transmitted upon attaining the full voice frame or the maximum delay in voice transmission.
Abstract:
An audio sample is wirelessly transferred between a wireless communication device and a wireless base station. Either the wireless communication device or the wireless base station processes the audio sample to determine an audio quality level. The wireless base station determines a power level indicator for the wireless communication device based on the audio quality level. The wireless communication device adjusts its wireless transmit power in response to the power level indicator.