Abstract:
Aspects of the present disclosure describe transmitting data in wireless communications. A set of packets for transmission in a defined sequence can be received where the set of packets includes two or more packets. It can be detected that a packet, of the set of packets, is a prioritized packet type. The packet can be prioritized for transmission ahead of its order in the defined sequence based on the detection of the prioritized packet type. The packet can be transmitted ahead of its order in the defined sequence to an access point.
Abstract:
Aspects of present methods and apparatus relating to recovering from a HS-SCCH decode failure during wireless communication are disclosed. The described aspects include detecting that one or more packet data units (PDUs) are being transmitted on an uplink channel, wherein at least one of the one or more PDUs includes a POLL BIT set to TRUE. The described aspects further include determining that a time period for unsuccessful downlink scheduling satisfies a threshold; and. The described aspects further include triggering a cell update procedure with a cell update cause set to Radio Link Control (RLC) unrecoverable error (UNREC ERROR) based on the determination that the one or more PDUs are being transmitted on the uplink channel and that the time period for unsuccessful downlink scheduling satisfies the threshold.
Abstract:
Aspects of user equipment capability reporting include receiving a paging signal for a second subscription during a tune away from an active voice call on a first subscription, sending a report of less than a full set of user equipment capability information to the network for the second subscription during a connection setup in response to the paging signal for the second subscription, extracting a caller identification (ID) associated with the paging signal for the second subscription during the tune away from the voice call on the first subscription, and initiating a transmission to the network for sending the full set of UE capability information for the second subscription in response to the voice call on the first subscription ending.
Abstract:
In aspects for controlling transmit power of dual carrier uplink transmission for wireless communications, a user equipment (UE) determines presence of transmit power imbalance between a first and second radio frequency (RF) carrier of respective dedicated physical control channels for uplink transmission. The UE determines an estimate of a remaining available transmit power after estimating the transmit power used by each of the dedicated physical control channels. The UE allocates the estimated remaining available transmit power to the first and second RF carrier respectively based on both a size of data granted for uplink transmission on each RF carrier and on an effective power per bit on each RF carrier. Additionally, the UE determines a higher reliability value for each RF carrier based on a lower data error rate, identifies priority values for data to be transmitted and sends higher priority data over the RF carrier with higher reliability value.
Abstract:
Methods and apparatuses for enhanced cell update procedures are presented. In an aspect, an example method may include determining that a first cell update trigger has occurred and generating a first cell update message based on determining that the first cell update trigger has occurred. In an additional aspect, the example method may include determining that a second cell update trigger has occurred subsequent to the first cell update trigger and generating a second cell update message based on determining that the second cell update trigger has occurred. Furthermore, the example method may include determining that at least a portion of the first cell update message is pending transmission at a time that the second cell update message is generated, discarding the first cell update message, and transmitting the second cell update message to a network entity.
Abstract:
The present aspects relate to enabling a user equipment (UE) to operate in Dual Carrier mode during wireless communication, including generating an event trigger to be transmitted to a network entity in response to the UE satisfying a maximum transmit power threshold value, wherein generating the event trigger initiates a trigger timer that controls when to transmit the event trigger to the network. The aspects further include determining whether a plurality of optimization conditions are met, and modifying a transmission scheme based on the determination that the plurality of optimization conditions are met, wherein modifying the transmission scheme prevents the transmission of the event trigger to the network entity and resets the trigger timer.
Abstract:
Methods and apparatuses for improved power management of a user equipment (UE) are presented. In an aspect, an example method is presented that includes detecting a first trigger event, transitioning an operational mode of the UE from a first mode to a second mode based on detecting the first trigger event, wherein a paging cycle rate and a cell measurement rate of the UE are based on the operational mode of the UE. The example method further includes monitoring a paging channel of a serving cell associated with the UE according to the paging cycle rate and performing cell measurement of one or more available cells according to the cell measurement rate while the UE is operating according to the second mode. Furthermore, the example method includes detecting a second trigger event and transitioning the operational mode of the UE from the second mode to the first mode.
Abstract:
Methods and apparatus are described for improving call performance and data throughput. The methods and apparatus include receiving one or more packet data units (PDUs) during a transmission time interval (TTI) from a network entity, wherein the one or more PDUs are associated with a radio bearer. Further, the methods and apparatus include determining one or more out-of-order PDUs from the one or more PDUs. Moreover, the methods and apparatus include reordering the one or more out-of-order PDUs, wherein the one or more out-of-order PDUs are reordered within the TTI. Additionally, the methods and apparatus include processing the one or more reordered PDUs.
Abstract:
Methods, systems, and devices for wireless communications are described. A network may configure one or more devices with a timer. The timer may define a threshold amount of time a receiver in a radio link control (RLC) acknowledgement mode (AM) is to wait for and continue to request retransmission of a missing RLC packet data unit (PDU) through automatic repeat request (ARQ) mechanisms. The receiver may detect a missing PDU, and may initiate two timers: a first timer defining how long the receiver is to request and monitor for the missing first PDU, and a second timer defining an amount of time before requesting retransmission of the first PDU. Upon expiration of the second timer, the receiver may transmit a request for retransmission of the first PDU. Upon expiration of the first timer, the receiver may forward all other sequentially received PDUs to higher layers for decoding.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a distributed unit (DU) of a network node may receive, from one or more of a user equipment (UE), a central unit (CU) of the network node, or another network node, assistance information, wherein the assistance information indicates one or more of: robust header compression (ROHC) feedback information, uplink data related information, packet reordering timer information, congestion related information, session control information, or radio resource control (RRC) message information. The DU may perform an action associated with the UE based at least in part on the assistance information. Numerous other aspects are described.