Abstract:
Various embodiments implemented on a mobile communication device (e.g., a multi-carrier-capable communication device) mitigate the degraded performance experienced by an aggressor subscription performing transmit blanking on an interfering carrier frequency during a coexistence event by leveraging the availability of a non-interfering carrier frequency. In various embodiments, the mobile communication device may signal the aggressor subscription's network to adjust resources granted to the interfering carrier frequency and the non-interfering carrier frequency to improve overall data throughput and/or to reduce the likelihood of reception problems, such as increased retransmission requests from the network and stalls/delays in sending subsequent transport blocks. If no change in resources is signaled by the network, the mobile communication device may reduce a size of transport blocks transmitted on the interfering carrier frequency. The mobile communication device may signal the network to return to normal resource allocations or transmit normal size transport blocks when the coexistence event ends.
Abstract:
A method for managing reselection that includes: determining that a first subscription and a second subscription are in an idle state; determining whether a signal quality (Squal) of a serving cell on the first subscription exceeds a threshold; and in response to determining that the signal quality (Squal) of the serving cell on the first subscription does not exceed the threshold, reselecting to a neighbor cell on the first subscription and on the second subscription.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may transmit, to a base station, a beam measurement report associated with a serving beam of the UE. The UE may determine that a timer, relative to transmission of the beam measurement report, has expired. The UE may perform a measurement of one or more neighbor beams based at least in part on determining that the timer has expired. Numerous other aspects are provided.
Abstract:
Methods and devices are disclosed for enabling improved service acquisition on a first SIM of a multi-SIM wireless communication device. After the first SIM has lost service, the wireless device may detect a condition triggering a public mobile land network (PLMN) selection associated with the first SIM, receive an indication that service acquisition settings of the first SIM are set to a manual mode, and determine whether the second SIM is in idle mode. Upon determining that the second SIM is in idle mode, the wireless device may identify timing of a sleep cycle implemented by the second SIM, and perform the PLMN search using the first and second radio resources.
Abstract:
Methods and devices are disclosed for enabling improved service acquisition on a first SIM of a multi-SIM wireless communication device. After the first SIM has lost service, the wireless device may detect a condition triggering a public mobile land network (PLMN) selection associated with the first SIM, receive an indication that service acquisition settings of the first SIM are set to a manual mode, and determine whether the second SIM is in idle mode. Upon determining that the second SIM is in idle mode, the wireless device may identify timing of a sleep cycle implemented by the second SIM, and perform the PLMN search using the first and second radio resources.