Patent classifications
H04L69/327
TECHNIQUES TO MANAGE INTEGRITY PROTECTION
Wireless communication methods are described for a user plane integrity protection failure detection and handling, determination and management of integrity protection enabled data rate that exceeds or is close to exceeding a user equipment's capability or threshold, and management of integrity protection or encryption mechanisms in a dual-connectivity system that includes a master network node and a secondary network node.
Method for managing sessions using web sockets
This disclosure is directed to embodiments of systems and methods for tracking sessions of a user. A session manager executing on a server may establish a plurality of sessions with a web application for a user via a web socket of the session manager. The plurality of sessions may share a first session identifier. The session manager may track, by via a web socket container established for the first session identifier, the plurality of sessions. The session manager may detect a log off by the user from one of the plurality of sessions. The session manager may send a log off event to others of the plurality of sessions tracked via the web socket container, responsive to the detection.
KEY REFRESH FOR SMALL-DATA TRAFFIC
Apparatuses, methods, and systems are disclosed for key refresh triggering. One apparatus includes a transceiver and a processor that starts a counter corresponding to a UE having a small-data traffic pattern. In response to the transceiver receiving small-data traffic associated with the UE, the processor determines if a security key is valid based on a value of the counter. If the value of the counter indicates the security key is invalid, then the processor triggers a key refresh procedure. The processor relays the small-data traffic in response to the UE having a valid security key.
Systems and methods for providing policy control of parallel signaling in a fifth generation (5G) network
A first network device may receive a protocol data unit (PDU) session establishment or modification request, and may perform one or more actions based on the PDU session establishment or modification request. The first network device may receive, based on performing the one or more actions, a first message indicating that the PDU session is authenticated and authorized, and may select a second network device associated with establishing or modifying a management policy for the PDU session. The first network device may receive, from the second network device, a second message indicating whether to wait for receipt of a charging data response, to a charging data request, before interacting with a third network device, and may provide the charging data request to a fourth network device while interacting with the third network device when the second message indicates not to wait for receipt of the charging data response.
Data Transmission Method and Apparatus
Embodiments of this patent application provide a data transmission method and an apparatus for determining, by a core network (CN) device, a length of a quality of service flow identifier (QFI) used when a protocol data unit (PDU) session is established or modified for a terminal device; and sending, by the CN device, a first message to a radio access network (RAN) device, where the first message includes length information of at least one QFI. After receiving the first message from the core network CN device, the access network RAN sends a second message to the terminal device, where the second message includes the length information of the at least one QFI.
Key refresh for small-data traffic
Apparatuses, methods, and systems are disclosed for key refresh triggering. One apparatus includes a transceiver and a processor that starts a counter corresponding to a UE having a small-data traffic pattern. In response to the transceiver receiving small-data traffic associated with the UE, the processor determines if a security key is valid based on a value of the counter. If the value of the counter indicates the security key is invalid, then the processor triggers a key refresh procedure. The processor relays the small-data traffic in response to the UE having a valid security key.
METHOD AND APPARATUS FOR MANAGING NETWORK SLICES IN WIRELESS COMMUNICATION SYSTEM
A method performed by a network function (NF) in 5G core network (5GC) in a wireless communication system is provided. The method includes receiving, from an application function (AF), an event subscription request message comprising network slice related quota information for a network slice, determining whether an event notification triggering condition for the network slice is met based on the network slice related quota information and data received from at least one NF in the 5GC, and transmitting, to the AF, an event notification message for the network slice based on a result of the determining.
TECHNIQUES TO MANAGE INTEGRITY PROTECTION
Wireless communication methods are described for a user plane integrity protection failure detection and handling, determination and management of integrity protection enabled data rate that exceeds or is close to exceeding a user equipment's capability or threshold, and management of integrity protection or encryption mechanisms in a dual-connectivity system that includes a master network node and a secondary network node.
Method and apparatus for mobile session establishment with resilient connection strategy
A system includes a processor configured to attempt a packet-data connection for a first number of attempts, including a predetermined short delay between each unsuccessful attempt. The processor is also configured to delay for a longer predetermined delay determined based on a predetermined long delay less a total duration of preceding failed connection attempts, responsive to another failed connection attempt after failures for the first number of attempts, and repeat the attempt and delay steps until a connection is established.
APPARATUS, SYSTEMS, AND METHODS UTILIZING DISPERSIVE NETWORKING
An electronic device configured for electronic communications utilizing virtual dispersive networking includes: a network interface for communicating over a network; an application loaded onto the electronic device programmed to communicate over a network; and virtual dispersive networking software configured to create, for such application, a virtual machine comprising a virtual interface for the network interface of the electronic device; select a network protocol out of a plurality of available network protocols based on current communication requirements of the application; and cause network communications of the application to occur via the virtual network interface of the electronic device using the determined network protocol.