Abstract:
A method of wireless communication includes transmitting an abbreviated scheduling request indicating a general size of a first grant when a UE has buffered data. A detailed schedule request is transmitted and indicates a specific size of a second grant after receiving the first grant. The second grant is adjusted based on the detailed scheduling request.
Abstract:
A system acquisition is initiated to perform inter radio access technology (IRAT) measurement. A waiting period of time is provided before aborting the system acquisition. The period of time is adjustable based on at least one metric. The metric can be a frequency of available measurement gaps, a total number of available measurement gaps, and/or a length of each measurement gap within a subframe. The metric could also be an absolute signal strength of a single neighbor cell and/or a relative signal strength between neighbor cells. The metric could also be a user equipment (UE) measured signal strength compared to a network indicated threshold value for triggering an IRAT measurement report. The metric could also be a percentage of a tone that falls within a measurement gap.
Abstract:
Apparatus, methods, and computer-readable media for facilitating determining or predicting a communication state of a UE based on, for example, measurements performed at the UE are disclosed herein. The communication state of the UE, such as an HST state or a non-HST state, may also be associated with a mobility state, such as stationary or moving. The UE may communicate based on the communication state. An example method for wireless communication at a UE includes establishing a connection with a network node. The example method also includes measuring one or more signals received from the network node over a time period. The example method also includes communicating with the network node based on a communication state of the UE, the communication state of the UE based at least in part on a history of measurements performed on the one or more signals received over the time period.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may receive, from a network entity, an absolute threshold synchronization signal block (SSB) consolidation parameter. The TUE may determine whether a threshold value indicated in the absolute threshold SSB consolidation parameter satisfies a predefined value threshold. The UE may set a specific network deployment flag based at least in part on whether the threshold value satisfies the predefined value threshold. The UE may determine a cell measurement result based at least in part on the specific network deployment flag. The UE may perform a downlink beam selection and a beam switch evaluation based at least in part on the specific network deployment flag. Numerous other aspects are described.
Abstract:
Methods, systems, and devices for wireless communications are described. In some systems, a user equipment (UE) may support one or more applications enabling various types of users to access relevant information relating to performance of the UE across one or more communication modes or radio access technologies (RATs). A type or granularity of the information that the UE provides to the user may depend on a type of the user. For example, if the UE detects that a user is a first user type, the UE may provide the user with relatively simpler or more basic information relating to UE performance. Alternatively, if the UE detects that a user is a second user type, the UE may provide the user with relatively more technical or granular information relating to UE performance. The UE may support a user interface via which the UE may present the information to a user.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may disconnect from a first radio access technology (RAT) service, independent of signaling from the first RAT service, after sensing that the UE has entered a coverage hole. The UE may use a connection to a second RAT service while in the coverage hole in association with disconnecting from the first RAT service. The UE may disconnect from the second RAT service, independent of signaling from the second RAT service, after sensing that the UE has exited the coverage hole and before expiration of a radio link failure (RLF) timer for the second RAT service. The UE may reconnect to the first RAT service before expiration of an RLF timer for the first RAT service. Numerous other aspects are described.
Abstract:
A UE transmits an indication of a capability for at least one of determining a domain name system (DNS) parameter for a DNS query that is different than a DNS setting from a network and redirecting the DNS query based on the DNS setting from the network. The UE receives, from the network, an instruction to monitor DNS queries based on the capability of the UE and enforcing the DNS settings from the network. An SMF receives, from a UE, an indication of a capability for at least one of determining a DNS parameter for a DNS query that is different than a DNS setting from a network and redirecting the DNS query based on the DNS setting from the network. The apparatus transmits, to the UE, an instruction to monitor DNS queries and to enforce the DNS settings from the network based on the capability of the UE.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user device may retrieve, from a server, an indication of a current device state of the user device. The user device may disable communication capabilities of the user device in connection with a determination that the current device state is a first device state of a plurality of device states. Numerous other aspects are described.
Abstract:
Aspects of the disclosure relate to communication via a dual subscriber identification module (SIM) dual standby (DSDS) user equipment (UE) are disclosed. In an aspect, the DSDS UE may establish a first connection with a base station through a communication link via a first subscription using a frequency resource, and may establishing a second connection with the base station through the communication link via a second subscription using the frequency resource. The DSDS UE may further perform communication with the base station via at least one of the first subscription or the second subscription through the communication link using the frequency resource.
Abstract:
A user equipment (UE) that shares a radio frequency (RF) path between wireless communication for a first radio access technology (RAT) on a first frequency band and a second RAT on a second frequency band transmits an indication, to a network of the first RAT or the second RAT, indicating a shared RF path between the first RAT and the second RAT. A base station receives the indication from the UE and wireless communication with the UE based on the shared RF path at the UE.