Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may obtain an indication of a uniform resource locator (URL) associated with user service access information for accessing a receive only mode (ROM) service. The UE may receive, based at least in part on the user service access information, a service announcement associated with the receive only mode service. Numerous other aspects are described.
Abstract:
A method of wireless communication by a device includes detecting whether the device is in an outdoor environment in response to a start of a reevaluation timer. The method also determines a mobility level of the device in response to the start of the reevaluation timer. The method further includes enabling a vehicle-to-everything (V2X) pedestrian mode in response to the device being in the outdoor environment and/or the mobility level exceeding a threshold value.
Abstract:
A method detecting allocation collisions from transmitting user equipments (UEs) in sidelink channel resources. The colliding allocations are detected and the quantity of allocation collisions is determined. A collision report is transmitted to other sidelink UEs within the coverage zone. The collision report or collision notification provides an indication of sidelink resources having identified colliding allocations. The identified allocation collisions may be pruned to remove potentially intentional collisions before collision report transmission.
Abstract:
Systems, methods, and devices of the various embodiments provide for multipath transport of Internet Protocol (IP) packets by a computing device including a plurality of modems. In various embodiments, IP packets may be assigned to a selected one of a plurality of modems for transport based on available bandwidths of each of the plurality of modems.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus is for wireless communication with a serving cell. The apparatus receives a first segment of a first IP packet in a first MBSFN subframe. The IP packet can include a data related to an eMBMS service. The apparatus determines a second segment of the first IP packet is not received in a second MBSFN subframe. The apparatus assembles a replacement IP packet that includes the first segment of the first IP packet and a first IP header. The apparatus performs FEC on the replacement IP packet.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus configures a set of MBSFN subframes to include one or more MBSFN subframes for MBSFN signal quality measurements. The one or more MBSFN subframes for MBSFN signal quality measurements correspond to each of one or more MBSFN areas or frequencies for broadcasting eMBMS services. The apparatus sends one or more measurement parameters to a UE. The measurement parameters identify the one or more MBSFN subframes for MBSFN signal quality measurements, and a MBSFN area ID corresponding to each of the one or more MBSFN areas or frequencies. The measurement parameters may further identify a MCS level corresponding to each of the one or more MBSFN areas or frequencies.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus receives at least one MBMS service in at least one MBSFN area. The apparatus receives configuration information on at least one MCCH. The at least one MCCH includes an MCCH unassociated with the at least one MBSFN area. The MCCH unassociated with the at least one MBSFN area is an MCCH associated with an MBSFN area not currently being received by the apparatus. The apparatus constructs a list of TMGIs based on the configuration information. The apparatus updates the list of TMGIs based on at least one of an MCCH change notification message for each of the at least one MCCH or a user service description.
Abstract:
An apparatus is disclosed. The apparatus comprises a primary power supply (PPS) configured to supply primary power, a PPS sensor configured to measure the power supplied by the PPS and provide a PPS measurement signal indicating an amount of the power supplied by the PPS, a backup power supply (BPS) configured to be provided in an emergency data system and further configured to supply backup power to a modem, and an integrated circuit configured to maintain a clock using the power supplied by the PPS. The integrated circuit is configured to receive the PPS measurement signal from the PPS sensor, determine whether the PPS measurement signal falls below a threshold, and maintain the clock using the power supplied by the BPS in response to a determination that the PPS measurement signal has fallen below the threshold.
Abstract:
Various aspects of the present disclosure generally relate to wireless communication. In some aspects, a user equipment (UE) may adjust a basic safety message generation periodicity based at least in part on a semi-persistent scheduling periodicity for transmitting basic safety messages. The UE may generate one or more basic safety messages based at least in part on the adjusted basic safety message generation periodicity. Numerous other aspects are provided.
Abstract:
Systems, methods, and devices of the various aspects enable uplink delivery and downlink distribution of media content to users in live uplink streaming services. In various embodiments, media in a live uplink streaming service may be distributed by unicast and/or broadcast delivery methods. Various embodiments may include receiving, in a processor of a live uplink streaming sink computing device, assistance data for a live streaming session, selecting, by the processor, one or more delivery methods for processed media of the live streaming session based at least in part on the assistance data, and transmitting, by the processor, the processed media using the selected delivery methods.