Abstract:
Aspects of the present disclosure generally relate to allocating power and/or data to uplink channels for wireless communications. The present aspects include determining an initial transmit power for each of a first carrier and a second carrier for a user equipment (UE). The present aspects further include determining that the initial transmit power of the first carrier is less than the initial transmit power of the second carrier. Additionally, the present aspects include allocating a first transmit power to the first carrier prior to allocating a second transmit power to the second carrier based on determining that the initial transmit power of the first carrier is less than the initial transmit power of the second carrier, the first transmit power is greater than the second transmit power.
Abstract:
Aspects described herein relate to throttling packet-switched (PS) call establishment in wireless communications. A circuit-switched (CS) call can be conducted by using a first radio access technology (RAT). A cell update (CU) procedure for a PS call using a second RAT can be detected as due to one or more conditions. A cause for the one or more conditions can be determined based on one or more parameters related to a transmitter or receiver. PS call establishment attempts can accordingly be throttled based at least in part on determining the cause for the one or more conditions
Abstract:
An example method may include receiving, at a user equipment (UE), data on a primary carrier supported by the UE, wherein the UE exits a discontinuous reception (DRX) mode in response to receiving the data. Further, the example method may include determining from the data an indication at the UE that handling of one or more secondary carriers also supported by the UE is to be reactivated, wherein the handling of the one or more secondary carriers was deactivated at the UE when the primary carrier entered the DRX mode. In addition, the example method may include activating, at the UE, handling of the one or more secondary carriers in response to the indication.
Abstract:
The present disclosure presents a method and an apparatus for cell reselection during a SRNS relocation at a UE. For example, the disclosure presents a method for stopping signaling radio bearers (SRBs) sending a response message for the first Cell Update Confirm or the URA Update Confirm message and waiting for a layer two acknowledgement (L2 ACK) message from the network entity, triggering a second Cell Update or a URA Update procedure in a newly selected serving cell of the UE when waiting for the L2 ACK message from the network entity and waiting for the second Cell Update Confirm or the URA Update Confirm message, and performing a corrective action at the UE after the triggering of the second Cell Update or the URA Update procedure when the UE is waiting for the L2 ACK message from the network entity. As such, a cell reselection during a serving radio network subsystem (SRNS) relocation at a UE may be achieved.
Abstract:
Methods and apparatus are described for configuring features for a user equipment (UE) communicating with a network entity. For example, the methods and apparatus include receiving, at the network entity, a capability message indicating one or more features supported by the UE; transmitting control data in a data type Protocol Data Unit (PDU), wherein the control data is configured to enable one of the one or more features based on the capability message; and enabling one of the one or more features in response to receiving an acknowledgement message from the UE.
Abstract:
Certain aspects of the present disclosure relate to apparatuses and methods for maintaining reachability at a user equipment (UE). In one aspect, the apparatuses and methods are configured to detect a change in a radio connection between the UE and a peer entity, wherein the change in the radio connection is associated with the UE entering an idle state, to communicate to the peer entity, in response to detecting the change in the radio condition, an indication that the UE is to enter the idle state and is reachable for a specified duration of time while in the idle state, and to enter the idle state after communicating the indication to the peer entity. In another aspect, the apparatuses and methods are configured to communicate to the peer entity an indication that the peer entity is not to attempt to reach the UE during the specified duration of time.
Abstract:
Methods and apparatus for processing data received at a user equipment comprises determining a protocol data unit (PDU)-specific Layer 1 decoding metric of a Layer 1 decoded PDU. The methods and apparatus further comprises determining whether to perform a Layer 2 decoding of the Layer 1 decoded PDU based on the PDU-specific Layer 1 decoding metric.
Abstract:
Apparatus and methods of data communication between a transmitter and a receiver in a radio link control (RLC) unacknowledged mode (UM) include determining, by the transmitter, a hyper frame number (HFN) de-synchronization condition, wherein the HFN de-synchronization condition is FALSE when at least one protocol data unit (PDU) out of a plurality of successive PDUs is successfully transmitted by the transmitter to the receiver, and wherein the HFN de-synchronization condition is TRUE when all of the plurality of successive PDUs are lost, and adjusting, by the transmitter, a transmitter HFN of the transmitter when the HFN de-synchronization condition is TRUE, wherein the adjusted transmitter HFN is used for new PDUs to be transmitted.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may transmit flight path information regarding a flight path of the UE. The UE may receive a modification to the flight path information, wherein the modification is associated with a radio condition, wherein the radio condition is associated with the flight path. The UE may trigger movement of the UE in association with the modification to the flight path information. Numerous other aspects are described.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may generate a signaling message that includes information associated with protocol data unit (PDU) set traffic, the PDU set traffic being associated with a PDU set that includes a plurality of PDUs associated with an application data unit, wherein the information associated with the PDU set traffic indicates at least one of a presence of the PDU set traffic, a start of the PDU set traffic, or an end of the PDU set traffic. The UE may transmit the signaling message via one or more network layers. Numerous other aspects are described.