Abstract:
A WTRU may receive a first data flow from a source device such as a correspondence node and perform a seamless IUT such that the correspondent node is unaware that the flow has been transferred to a different WTRU. The WTRU may register with a first home agent, wherein the first home agent receives a plurality of messages addressed for a home address. The home agent may forward the messages to the WTRU at a first care-of-address. The WTRU may send a binding update to the first home agent. The binding update may comprise a second traffic selector and a second action. The second action may specify that a second message of the plurality of messages is to be forwarded to a different WTRU when the second message matches the second traffic selector.
Abstract:
The disclosure pertains to CDNI interconnection at a global level. CDNXs are enhanced to provide logging services associated with bilateral or multilateral agreement with CDNs, where these CDNs are interconnected with other CDNs not using the same CDNX. Moreover, additional functions are added in CDNXs and CDN Interconnection protocols to support CDN capability advertisement, CDN peer discovery, and to bootstrap CDN Interconnection.
Abstract:
A method and apparatus are described for forwarding content delivery network interconnection (CDNI) signaling. A CDNI router content delivery network (CDN) may establish CDNIs with upstream and downstream CDNs. The CDNI router CDN may receive a CDNI route advertisement message from at least one of the upstream and downstream CDNs. The CDNI router CDN may update at least one end-user-based CDNI routing table based on Internet protocol (IP) address blocks in the CDNI route advertisement message. The CDNI router CDN may transmit an updated CDNI route advertisement message to at least one of the upstream and downstream CDNs. At least one of the upstream and downstream CDNs may update at least one end-user-based CDNI routing table based on the end user IP address blocks in the updated CDNI route advertisement message.
Abstract:
Procedures, methods, architectures, apparatuses, systems, devices, and computer program products directed to network programming are disclosed herein. In an embodiment, a method for operating a user network program on a WTRU/UPF, comprises: A method for operating a user network program on a WTRU/UPF, the method comprising: deploying a network program instance based on a network program including network information elements (IEs); receiving a data packet from a source; associating IEs with the data packet; forwarding the data packet to the network program instance; upon reception of a data packet from the network program instance, retrieving IEs associated with the data packet; and forwarding the data packet to a destination according to the IEs. forwarding the data packet to a destination according to the IEs.
Abstract:
A radio access network (RAN) node and methods to transmit downlink packet data units (PDUs) associated with a quality of service (QOS) flow of a PDU session with differing priority levels on a per-PDU basis are disclosed. A base station may receive, from a session management function (SMF), a packet data unit (PDU) set importance rule associated with a quality of service (QOS) profile for a PDU session. The base station receives, from a user plane function (UPF), a PDU for downlink transmission, the PDU received in a general packet radio service tunneling protocol (GTP-U) message having a header, and determines a priority level of the PDU based on information in the GTP-U message header and the PDU set importance rule. The base station may schedule the PDU for downlink transmission based on the determined priority level. Additional embodiments are disclosed.
Abstract:
A wireless transmit/receive unit (WTRU) may receive a power reporting policy from a network node. The power reporting policy may include one or more triggers associated with sending a power status report. The WTRU may determine that a trigger of the one or more triggers associated with sending the power status report has been satisfied. The WTRU may send the power status report to the network node in accordance with the power reporting policy. The power status report may include power status information associated with the WTRU and/or an indication that indicates the determined trigger to send the power status report.
Abstract:
Systems and methods are described herein for a wireless transmit/receive unit (WTRU) activating and/or deactivating user equipment (UE)/WTRU-provided data network (UPDN). The WTRU may advertise availability of UPDN a (e.g., 5G) network. A UPDN software application may be transferred onto and/or installed on a WTRU to implement a UPDN. A WTRU may be authenticated and/or authorized to a host for a given UPDN instance, UPDN installation and/or update may be configured if an authentication fails because a UPDN software application is not up-to-date and/or not installed. A WTRU may provide information to a service provider for installing UPDN and/or update UPDN software. Control connectivity and/or path selection for UPDN may be configured by one or more WTRU route selection policy (URSP) rules. A UPDN profile and/or UPDN subscription profile may be configured in a system (e.g., 5G system (5GS)). UPDN may be provisioned in a (e.g., 5G) network.
Abstract:
A wireless transmit / receive unit, WTRU, connects to a first AP, receives domain identifiers, requests corresponding descriptors and receives a list of descriptors. An application on the WTRU requests a list of domains and attributes corresponding to service names or service sets, which is returned by the WTRU. The application selects one or more domains for communications, the WTRU selects corresponding network resources and the application connects to local services. After moving to a new location, the WTRU connects to a second AP and receives a second set of domain identifiers, selects the one matching the request from the application and provides these to the application that, with the aid of the WTRU connects to local services.
Abstract:
Systems and methods for enabling proximity services to be delivered as part of an application service and/or for providing tailored services and/or a differential quality of service (QoS) to a flow may be disclosed. For example, a temporary service name between an application and a server such as a D2D server may be established such that a UE and/or network may execute such a service at a later time without later involvement by the application and/or without exchanging credentials for the application with the network and vice versa.
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 a registration request from a non-IMS capable WTRU; translating the registration request to an IMS based message; transmitting the translated IMS based message to a Service Centralization and Continuity Application Server (SCC AS), transmitting an IUT transfer command, transmitting an IUT process message; receiving an IUT process-accept message; and establishing an IMS session between the non-IMS capable WTRU and the remote party.