Abstract:
In an aspect of the disclosure, a method, a computer-readable medium, and an apparatus are provided. The apparatus may be a UE. The UE receives an IP packet including header information and data for a MBMS session. The header information includes only information indicating at least one of an IP version, a destination multicast address of the IP packet, or a destination multicast port of the IP packet. The UE generates a multicast datagram including the data. The multicast datagram is generated based on at least one of the information indicating the destination multicast address or the information indicating the destination multicast port. The UE sends the multicast datagram to an application running on the UE.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus may be an MBMS receiver device. The MBMS receiver device receives at least one packet associated with an MBMS service. A configuration for providing the at least one packet to a UE is determined. The configuration may be one of a plurality of different configurations. The plurality of configurations may include at least a first configuration and a second configuration. The MBMS receiver device processes the received at least one packet based on the configuration. The MBMS receiver device sends the processed at least one packet to the UE based on the configuration.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus determines a timing of each of one or more audio transmissions of one or more audio segments through Multimedia Broadcast Multicast Service (MBMS) streaming via a first radio access technology (RAT), where the MBMS streaming includes the one or more audio segments and one or more video segments. The apparatus refrains from tuning away from the first RAT to a second RAT during at least one audio transmission of the one or more audio transmissions, the second RAT being different than the first RAT.
Abstract:
In general, this disclosure describes techniques for exchanging information between a plurality of encoder modules and a multiplex module to combine segments of data from the encoder modules with an improved overall quality. In particular, the encoder modules associate their respective segments of data with quality and rate information and send at least the quality and rate information associated with the segments of data to the multiplex module. The multiplex module analyzes the quality and rate information to determine whether the segments of data that encoder modules desire to include in the current superframe fit within the available bandwidth of a transmission channel. If the multiplex module determines the plurality of segments of data do not fit within the available bandwidth, the multiplex module selects one or more of the segments to be resized based on the quality and rate information received from the encoder modules.