Abstract:
An apparatus and method are described for sponsoring service and preferential traffic handling, (i.e., data connectivity) by wireless transmit/receive units (WTRUs). A first WTRU may initiate user sponsoring of a second WTRU via an application server (AS). The first WTRU may receive a service trigger from the AS and forward the service trigger to the second WTRU. The second WTRU may then initiate a sponsored session with the AS using the service trigger in order to receive a service from the AS. The first WTRU may also request the AS to transfer a credit to the second WTRU. The AS may establish a direct communication link with a charging system including an online charging function (OCF) and a charging data function (CDF). The AS may send a request to a network to provide preferential traffic handling needed to deliver content to the second WTRU.
Abstract:
A method and apparatus for use in a network storage control peer (NSCP) supporting peer to peer (P2P) operation are disclosed. The method includes receiving a content map request message and transmitting a content map response message including an indication that a CDN-stored content piece is available from the NSCP; and, receiving a content fetch request message for the content piece and transmitting a response message including a redirection command and the CDN URI for the content piece.
Abstract:
An embodiment of a method for implementing by a Wireless Transmit-Receive Unit (WTRU) includes receiving, from a Primary Mobile Network (PMN), information related to a Secondary Mobile Network (SMN), selecting the PMN in response to the information related to the SMN, registering to the selected PMN, and, in response to a trigger, and based on a factor related to Quality of Service (QoS) and on the information related to the SMN, requesting establishment of a Multi-Access Protocol Data Unit (MA-PDU) session having DualSteer functionality and with an access leg over the registered PMN and with another access leg.
Abstract:
Methods, apparatuses, systems, etc., directed to support provisioning domains (PvDs) in 5G networks are disclosed herein. In an embodiment, a network entity running a policy control function (PCF), may send to a wireless receive and transmit unit (WTRU) at least one WTRU route selection policy (URSP) rule associated with, for example, PvD descriptors. For example, URSP rules may be configured e.g., as part of the subscription profile and PvD descriptors may be configured e.g., as part of a network-wide configuration. An application function (AF) may use a network exposure function (NEF) application programming interface (API) to access and, for example, update, e.g. through any of NEF and PCF, any of URSP rules and PvD descriptors. According to embodiments, a WTRU may participate in a data network access identifier (DNAI) selection by including a PvD ID in, for example, PDU session establishment messages.
Abstract:
Systems, methods, and instrumentalities are disclosed herein for establishing a connection between a network node and a wireless transmit/receive unit (WTRU). A network node (e.g., a user plane function (UPF)) may receive a connection request message from another network node (e.g., a session management function). The connection request may indicate a request to establish a connection between the network node (e.g., the UPF) and a WTRU. The connection request message may indicate a header compression configuration (HCC) supported by a proxy. The network node may receive a request message from the WTRU indicating an HCC supported by the WTRU. The network node may determine a supported HCC using the HCC supported by the proxy and the HCC supported by the WTRU. The network node may configure the proxy to use the supported HCC. The network node may establish a connection with the WTRU.
Abstract:
Methods, systems, and instrumentalities are described to obtain application-based connectivity. A wireless transmit receive unit (WTRU) may, in response to a request to access a connectivity-sponsored application, establish a control connection over a first access network for contacting an application connectivity coordinator. The establishment of control connection may include sending an attach request, receiving an IP address for a control link to the application connectivity coordinator, and receiving an IP address. Using the control connection, the WTRU may send an access network discovery request to the application connectivity coordinator. The WTRU may receive, from the application connectivity coordinator, a list of access networks. The WTRU may select a second access network from the list of access networks to access the connectivity-sponsored application.
Abstract:
Systems, methods, and instrumentalities are disclosed for providing Information Centric Networking (ICN) within a network, comprising detecting a request for content from a wireless transmit/receive unit (WTRU) that is in the network, selecting a network element for the WTRU to attach to, wherein the network element is selected without regard to properties of the content requested, and providing the content to the WTRU. A request to publish content from a WTRU in the network may include determining, based on content name, whether to publish the content in the network or outside the network, and if the content is to be published in the network, selecting a network element for the WTRU to attach to, wherein the network element is selected without regard to properties of the content requested, and causing the network element to accept the content from the WTRU.
Abstract:
A method and apparatus are described for synchronizing mobile station (i.e., wireless transmit/receive unit (WTRU)) media flows during a collaboration session. Inter-WTRU transfer request messages, flow addition request messages and session update request messages may be exchanged between a plurality of WTRUs and a session continuity control application server (SCC-AS). Each of the messages may include a session description protocol (SDP) attribute line containing time synchronization information (e.g., a presentation time offset (PTO) information element (IE), a media flow group identity (ID) and a synchronization tolerance IE). The SCC-AS may update the time synchronization information and include the updated information in messages it sends to the WTRUs, which may re-synchronize their respective media flows based on the updated time synchronization information.
Abstract:
A method of Inter-User Equipment (UE) Transfer (IUT) for use in an Internet Protocol (IP) Multimedia Subsystem (IMS) capable wireless transmit/receive unit (WTRU), the method comprising: receiving, at the IMS capable WTRU, an IUT session transfer command from a non-IMS capable WTRU via non-IMS signaling; translating, at the IMS capable WTRU, the IUT session transfer command to an IMS based message; and transmitting, from the IMS capable WTRU, the translated IMS based message to a Service Centralization and Continuity Application Server (SCC AS).
Abstract:
Systems, methods, and instrumentalities are disclosed for defining a network specialization mechanism that enables a better alignment between end users' usage profiles and their access networks. Conteni specialization of networks may be implemented as a preference o a particular SCN or network in terms of content. Such a network may, for example, cache in priority preferred content, provide preferential quality of service (QoS), or limit access to non-preferred content. A network may advertise its preference or content specialization to end users (e.g., so that end users can decide to attach to SCNs or networks with compatible preferences) and to other content networks (e.g., to influence content routing decisions or to negotiate partitioning of the specialization space). Such content specialization may apply to physical or virtual networks.