Abstract:
Various embodiments include multi-subscription multi-standby communication devices and methods for managing communication activity. A device processor of the multi-subscription multi-standby communication device may determine a timing of an upcoming tune-away from a first subscription to a second subscription, and may determine whether an upcoming communication activity on the first subscription is a critical communication activity. The device processor may determine whether the upcoming tune-away and the upcoming communication activity will collide in response to determining that the upcoming communication activity is a critical communication activity, and may schedule one or both of the upcoming critical communication activity and the tune-away to prevent the collision in response to determining that the upcoming tune-away and the upcoming communication activity will collide.
Abstract:
Aspects of the present disclosure provide a number of approaches to deploy out-of-standard (or proprietary) features/enhancements that are not supported in the current communication standards. A mobile terminal and a network can mutually agree to support certain out-of-standard features/enhancements, and communicate support of such out-of-standard or non-standard features/enhancements by adapting or repurposing currently unused (or reserved) signaling data.
Abstract:
Described herein are various aspects related to determining whether to read system information of a network entity. A user equipment (UE) can receive system information transmitted by a network entity. The UE can analyze one or more parameters of the system information to determine whether system information for the network entity has changed when a value tag broadcasted in the system information is equivalent to a stored value tag for the network entity; thus the UE can utilize more than just the value tag, such as system information size, system information scheduling, a value tag in master information, and/or the like, at least in instance where the value tag may be the same in different transmissions of the system information. The UE can process the system information for the network entity based at least in part on determining that the system information for the network entity has changed.
Abstract:
Aspects of the present disclosure relate to a user equipment (UE) that can maintain active connections on multiple wireless communication networks. The UE shares a transmission resource when transmitting (TX) on a first radio access technology (RAT) and a second RAT in a time-division manual. During TX sharing, the UE provide uplink recovery and protection to one of the RATs.
Abstract:
Aspects related to performing power control over a secondary carrier are described. At least one parameter can be received for performing power control over a carrier with a cell. Based on the at least one parameter, at least one alternative parameter can be determined for performing a power control procedure for a secondary carrier with the cell, and the power control procedure for the secondary carrier with the cell can be performed based at least in part on the at least one alternative parameter. The at least one alternative parameter may result in a power control procedure for the secondary carrier that takes less time than a power control procedure for the primary carrier with the cell.
Abstract:
Certain aspects of the present disclosure relate to apparatuses and methods of managing signaling radio bearer (SRB) transmissions. In one aspect, the apparatuses and methods are configured to generate a SRB packet comprising signaling information, wherein the SRB packet is configured to be transmitted on a channel according to a scheduling serving grant, determine whether the SRB packet is unable to be transmitted based on resources allocated by the received scheduling serving grant, override the received scheduling serving grant in response to determining that the SRB packet is unable to be transmitted, and transmit at least a part of the SRB packet on the channel. In another aspect, a scheduling information message to indicate whether an additional scheduling severing grant is needed is transmitted on the channel along with at least the part of the SRB packet.
Abstract:
Methods and apparatuses are presented controlling access to a radio resource of a multi-subscriber identity module (SIM) user equipment (UE). For example, an example method is presented that includes initiating a call on a first subscription of the UE, and generating, during the call, a message for transmission to a network entity associated with a second subscription of the UE. Additionally, the example method may include starting a timer upon receiving the message at a transmission buffer of the UE. Moreover, the example method may include determining, upon expiration of the timer, that the message is pending transmission at the transmission buffer to the network entity, and transmitting the response based at least in part on determining that the message is pending transmission upon expiration of the timer. Responses may also be transmitted during inactivity gaps in the call.
Abstract:
Methods and apparatuses for improved uplink establishment in wireless networks are presented. For example, a method of mobile communication at a user equipment is presented that may include receiving, at a user equipment (UE) and from a network entity, configuration information associated with an enhanced uplink in CELL_FACH state protocol, wherein the UE is configured to transmit uplink transmissions according to the enhanced uplink in CELL_FACH state protocol. Additionally, the example method may include determining that the configuration information includes invalid configuration information. Moreover, the example method may include performing at least one remedial action to ensure that the UE is able to transmit the uplink transmissions based on determining that the configuration information includes invalid configuration information.
Abstract:
A gain factor is used for calculating one transmit power relative to another transmit power. For example, in UMTS high speed uplink packet access, a gain factor called βed is employed for transmission associated a given enhanced transport format combination indicator (E-TFCI). Conventionally, a gain factor to be used for a given E-TFCI can be determined via interpolation between two of the reference E-TFCIs to reduce signaling overhead. However, certain network configurations may result in one or more of the reference E-TFCIs that could be otherwise be used according to conventional techniques being outside of a valid range. In the event such a sub-optimal configuration occurs, interpolation and/or extrapolation schemes based on at least one reference E-TFCIs that is within and/or or is not within the valid range are used to calculate a gain factor for a given E-TFCI.
Abstract:
Apparatus and methods of communicating in a communication network include the actions of and components for receiving one or more radio resource control (RRC) messages in a radio link control (RLC) queue, determining a RRC message type of the one or more RRC messages located in the RLC queue, prioritizing the one or more RRC messages located in the RLC queue according to the corresponding RRC message type, and transmitting the prioritized one or more of RRC messages in order of priority.