Abstract:
A method and/or apparatus for wireless communication determines whether circuit switched fall back (CSFB) occurred from a first RAT to a second RAT. A call is handed over from the second RAT to the third RAT and a UE attempts to return directly to the first RAT from the third RAT when the CSFB occurred and the call is released from the third RAT.
Abstract:
A method of wireless communication includes receiving a data grant for multiple retransmission time slots associated with successfully decoded high speed data. The grant is in response to a base station detecting a NACK. The method also includes tuning away from a serving cell during the retransmission time slots.
Abstract:
Methods and apparatuses relating to wireless communication of a user equipment (UE) are provided including receiving an indication to perform a call origination procedure when communicating in a serving cell, selecting a neighbor cell for performing the call origination procedure based at least in part on receiving the indication and performing the call origination procedure with a wireless network using the neighbor cell after selecting the neighbor cell in response to receiving the indication. Selecting the neighbor cell can include performing reselection or switching subscriptions in a multiple subscription UE while delaying the call origination procedure until after the selection.
Abstract:
A user equipment (UE) determines an uplink timing advance of a target NodeB, such as an uplink dedicated physical channel (DPCH) transmit timing, during handover transition when the UE receives a handover command without a random access configuration. In one instance, the UE modifies a current timing advance of a source eNodeB based on a difference between an uplink timing of the source eNodeB and a downlink timing of the source eNodeB and a difference between an uplink timing of the target NodeB and a downlink timing of the target NodeB. In another instance, the UE determines the uplink timing advance of the target NodeB based on the modified current uplink timing advance of the source eNodeB.
Abstract:
A user equipment (UE) reselects to a higher priority cell even when a cell reselection timer of a low priority cell and/or rank based cell expires before a cell reselection timer of the higher priority cell. In one instance, the UE determines an expiration of a first cell reselection timer for the low priority cell and/or an expiration of a second cell reselection timer for the rank based cell while a third cell reselection timer is running, but not expired. The third cell reselection timer corresponds to the high priority based cell. The UE delays performing cell reselection to the low priority or rank based cell until the high priority based cell is evaluated, even when a cell reselection condition has been stratified for the low priority or rank based cell.
Abstract:
A method of wireless communication is presented. The method includes receiving a grant insufficient for all hybrid automatic repeat request (HARQ) processes waiting for retransmission. The grant may be received after a measurement gap. The method also includes discarding one or more HARQ processes having a timing of previous ACK/NACK feedback coinciding with the measurement gap.
Abstract:
A method of wireless communication includes recording an absolute system frame number (SFN) of a target radio access technology (RAT) and/or recording a relative system frame number (SFN) difference between a serving radio access technology (RAT) and the target RAT. A transmission time interval (TTI) boundary, is determined after redirection, based at least in part on the recorded absolute frame number (SFN) and/or the recorded relative system frame number (SFN) difference.
Abstract:
An optimized strategy for preparing measurement reports in a telecommunication system separates searching and measuring of candidate frequencies for device handover, searching a series of frequencies and then determining which frequencies to measure based on the search results. The search results may be sorted, prioritizing the order measurements are undertaken. Preliminary results may be used to determine that a frequency is a poor handover candidate, advancing to the next frequency.
Abstract:
A user equipment (UE) may adjust a time permitted for a UE to attempt blind handover after a first non-blind handover failure to efficiently establish connection with a second radio access technology (RAT) or re-establish connection with a first RAT to increase handover success rate. In some instances, the UE may dynamically adjust the time permitted for acquiring a target RAT cell based on a signal strength of a target cell of the target RAT and/or a signal strength of a serving cell of a serving RAT, after a synchronized handover failed.
Abstract:
A different inter radio access technology (IRAT) measurement schedule is provided in the execution phase relative to the IRAT measurement schedule implemented in the preparation phase. To improve the handover performance, the user equipment transmits an IRAT measurement report for multiple neighbor cells and prioritizes the IRAT measurement scheduling for neighbor cells triggering the IRAT measurement report. The prioritizing occurs until an IRAT handover command is received.