Abstract:
This disclosure describes systems, methods, and devices related to quality-of-service (QoS) for fifth generation (5G) wireless communications. A device may identify a frame received from a second device, the frame indicative of fifth-generation (5G) quality-of-service (QoS) characteristics; determine an Internet Protocol Security (IPSec) Security Parameter Index (SPI) field, the IPSec SPI field; generate, using a wireless local area network station (WLAN STA) of the device, a request frame, the request frame including a requested 802.11 User Priority, and comprising an IPSec information element, the IPSec information element including an IPSec Security Protocol field indicative of an encapsulated security protocol, the IPSec information element further including the IPSec SPI field and a destination Internet Protocol (IP) address; send the request frame to an access point; and identify a response frame received, from the access point device, the response frame indicative of an admission or rejection of the requested 802.11 User Priority.
Abstract:
The described apparatus and methods define a predetermined scheme or syntax for an application-specific Universal Resource Identifier (URI) operable to deep link to a specified point, portion, or view of a target client application executable on a wireless device. Accordingly, the described application-specific URI can be used to deep link from one point to another in the same client application, or to deep link from one client application to another client application.
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.
Abstract:
Methods and apparatus for package management in a vertical multi-frequency network. A method includes linking a plurality of packages into one or more package groups wherein the packages are linked together based on common packages and services so as to minimize RF channel switching, and assigning the package groups to one or more RF channels for transmission in the multi-frequency network. An apparatus is provided for package management in a multi-frequency network. The apparatus includes input logic configured to receive a plurality of packages, and processing logic configure to link the plurality of packages into one or more package groups wherein the packages are linked together based on common packages and services so as to minimize RF channel switching, and assign the package groups to one or more RF channels for transmission in the multi-frequency network.
Abstract:
The described apparatus and methods define a predetermined scheme or syntax for an application-specific Universal Resource Identifier (URI) operable to deep link to a specified point, portion, or view of a target client application executable on a wireless device. Accordingly, the described application-specific URI can be used to deep link from one point to another in the same client application, or to deep link from one client application to another client application.
Abstract:
This disclosure describes techniques for adjusting encoding variables of an encoding device. In response to a request to resize a segment of data, an encoding module adjusts at least one encoding variable used to encode one or more subsequent segments of data such that the subsequent segments of data are encoded at a bit rate that is different than the bit rate at which the subsequent segments of data would have been encoded had there been no request to resize. At some point, the encoding module re-adjusts the encoding variables used to encode the segments of data such that the subsequent segments of data are encoded to achieve a desired encoding result. For example, the encoding module may re-adjust the encoding variables after a period of time or may incrementally adjust the encoding variables until the encoding variables result in achieving the desired encoding result.
Abstract:
Methods and apparatus for service acquisition in a multi-frequency network. In an aspect, a method is provided for service acquisition in a multi-frequency network. The method includes detecting a service acquisition trigger event and identifying a selected RF channel from an acquisition RF list based on signal strength, wherein the acquisition RF list identifies RF channels in one or more local operations infrastructures (LOIs) of the multi-frequency network. The method also includes acquiring a wide system on the selected RF channel, removing the selected RF channel from the acquisition RF list if the wide system can not be acquired on the selected RF channel, and repeating said operations of identifying, acquiring and removing until the wide system is acquired on the selected RF channel or a system acquisition timeout occurs.
Abstract:
Methods and apparatus for RF channel switching in a multi-frequency network. In an aspect, a method includes identifying a multiplex set that comprises one or more content flows, wherein the multiplex set is one of a vertical multiplex (VM) set and a unified multiplex (UM) set, generating an overhead message that associates one or more RF carrier frequencies with the one or more content flows, and transmitting the overhead message over the multi-frequency network. An apparatus includes input logic configured to receive an overhead message that associates one or more content flows with one or more RF carrier frequencies, and processing logic configured to detect a channel switch event that identifies a selected content flow, determine a selected RF carrier frequency associated with the selected content flow based on the overhead message, and switch to the selected RF carrier frequency to receive the selected content flow.
Abstract:
Methods and apparatus for RF channel selection in a multi-frequency network. A method includes identifying selected local operations infrastructures (LOIs) and their neighboring LOIs, generating a neighbor description message (NDM) that identifies the selected LOIs and their neighboring LOIs and associates a descrambling sequence identifier with each RF channel of the selected LOIs and their neighboring LOIs, and distributing the NDM over the selected LOIs. An apparatus includes a message decoder to receive an NDM that identifies RF channels of a first LOI and neighboring LOIs, and wherein each RF channel is associated with a descrambling sequence identifier, and processing logic to detect content acquisition failures, determine a list of RF channels and their associated LOIs that carry desired content, and select a selected RF channel that is associated with a selected LOI that carries the most additional content among the associated LOIs.
Abstract:
Methods and apparatus for distributing and acquiring overhead flow data in a multi-frequency network. In an aspect, a method includes generating primary flow (PF) overhead data associated with one or more multiplexes to be distributed in the multi-frequency network, identifying multiplex specific overhead (MSO) data associated with the one or more multiplexes, transmitting the PF overhead data over the multi-frequency network using first pre-assigned flow identifiers, and transmitting the MSO data over the multi-frequency network using second pre-assigned flow identifiers. An apparatus includes flow acquisition logic configured to acquire PF overhead data associated with at least one multiplex using first pre-assigned flow identifiers, and processing logic configured to determine that overhead data associated with the at least one multiplex has been updated based on the received PF overhead data, and to obtain MSO data associated with the at least one multiplex using second pre-assigned flow identifiers.