Abstract:
Systems and methods for transmitting AT commands indicating whether Evolved Packet System (EPS) Session Management (ESM) information should be transmitted securely are disclosed herein. A Terminal Equipment (TE) may transmit an AT command to a Mobile Termination (MT). The AT command may indicate whether protocol configuration options (PCO) should be ciphered and/or whether an access point name (APN) is provided. In some embodiments, the AT command may be a dedicated command and may only include a parameter and an parameter. Alternatively, or in addition, the AT command may include a parameter, an parameter, and/or additional parameters serving additional functions. Whether the APN is provided may be determined based on whether the parameter is present and includes a non-null value. The AT command may be related to a single packet data network (PDN) connection or may relate to a plurality of PDN connections.
Abstract:
Embodiments of the present disclosure describe apparatuses and methods for bidirectional IP flow mobility control. Various embodiments may include a UE with signaling circuitry to establish a multi-access packet data network (PDN) connection with at least two radio access technologies to enable Internet Protocol (IP) flow mobility based on the at least two radio access technologies. The UE may further include processing circuitry to control IP flow mobility between the UE and a PDN Gateway (PGW) based on a bidirectional signaling protocol that enables a coexistence of IP flow mobility initiated based on network policies and IP flow mobility initiated based on UE policies. Other embodiments may be described and/or claimed.
Abstract:
Techniques for coordinated application of wireless network selection and traffic routing rules are described. In one embodiment, for example, user equipment (UE) may comprise at least on radio frequency (RF) transceiver, at least one RF antenna, and logic at least a portion of which is in hardware, the logic to process a received radio resource control (RRC) message comprising radio access network (RAN) assistance information, evaluate a threshold condition of an access network discovery and selection function (ANDSF) management object (MO) routing policy based on an access threshold comprised in the RAN assistance information and a corresponding measurement, and apply the ANDSF MO routing policy to route internet protocol (IP) traffic based on the evaluation of the threshold condition. Other embodiments are described and claimed.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of multiband wireless communication. For example, a multiband wireless communication device may include a receiver to receive a first message from a mobile device, the first message including multiband capability information indicating a plurality of supported wireless communication bands of the mobile device; a controller to select a selected wireless communication band from the plurality of supported wireless communication bands; and a transmitter to transmit a second message to the mobile device, the second message including an indication of the selected wireless communication band.
Abstract:
Technology for using an open mobile alliance (OMA) management object (MO) for congestion control in mobile networks is described. A novel type of OMA MO for application specific access control (ASAC) can include internet protocol (IP) flow descriptions that can be used to characterize applications with fine granularity. Priorities can be assigned to IP flows based on the IP flow descriptions. A user equipment (UE) can receive such an OMA MO and also receive application-barring information regarding a congestion level in a mobile network with which an application at the UE wishes to connect. The UE can have a connectivity manager (CM) that determines whether to allow the application to establish a connection with the mobile network based on the priority level of the application's associated IP flow and the application-barring information.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of multiband wireless communication. For example, a multiband wireless communication device may include a receiver to receive a first message from a mobile device, the first message including multiband capability information indicating a plurality of supported wireless communication bands of the mobile device; a controller to select a selected wireless communication band from the plurality of supported wireless communication bands; and a transmitter to transmit a second message to the mobile device, the second message including an indication of the selected wireless communication band.
Abstract:
Systems and methods of providing a V2X communications are generally described. A geographically-limited, operator-independent mapping table is used that maps between groups of V2X applications each associated with a different application category and a different RAT preferred for the V2X application category. Each grouping is based on fulfillment of one or more KPIs for the associated V2X application category. Multiple RATs are prioritized if able to fulfill the KPIs. The mapping table is modified based on the RATs supported by the V2X UE. Carrier aggregation is used when simultaneous transmission on different RATs is desired.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of multiband wireless communication. For example, a multiband wireless communication device may include a receiver to receive a first message from a mobile device, the first message including multiband capability information indicating a plurality of supported wireless communication bands of the mobile device; a controller to select a selected wireless communication band from the plurality of supported wireless communication bands; and a transmitter to transmit a second message to the mobile device, the second message including an indication of the selected wireless communication band.
Abstract:
Technology for using an open mobile alliance (OMA) management object (MO) for congestion control in mobile networks is described. A novel type of OMA MO for application specific access control (ASAC) can include internet protocol (IP) flow descriptions that can be used to characterize applications with fine granularity. Priorities can be assigned to IP flows based on the IP flow descriptions. A user equipment (UE) can receive such an OMA MO and also receive application-barring information regarding a congestion level in a mobile network with which an application at the UE wishes to connect. The UE can have a connectivity manager (CM) that determines whether to allow the application to establish a connection with the mobile network based on the priority level of the application's associated IP flow and the application-barring information.
Abstract:
A technology for a user equipment (UE) that is operable to select an internet protocol (IP) interface in a communications network is disclosed. Local policy information and access network selection information can be received from an Access Network Discovery and Selection Function (ANDSF) operating on a server in an evolved packet core (EPC). At least one IP interface on which to route an IP flow using inter access point name routing policies (IARP) can be determined prior to implementing other routing policies. The IP flow from the UE on at least one IP interface selected can be routed using the IARP.