摘要:
A device is configured to determine that the user device is participating in a conference call with a plurality of other user devices; determine that the user device is muted during the conference call; receive a first sound from the user device while the user device is muted; recognize that the first sound matches a vocal pattern of a user associated with the user device; and un-mute the user device after recognizing that the first sound matches the vocal pattern.
摘要:
A device receives, by using a first communication technique, a message from a first user device. The device identifies a profile associated with the first user device or a user of the first user device. The device further identifies, in the profile, a relevant rule, based on the message, and a second user device that is designated as a primary user device of the user associated with the profile. By using a second communication technique, the device transmits a request for instructions to the second user device based on the relevant rule, and receives the instructions from the second user device. The instructions specify a third user device selected by the user. The device generates a command based on the relevant rule. The device transmits, by using a third communication technique, the command to the third user device.
摘要:
A device, of a first data center, detects a power failure associated with the first data center when the first data center stops receiving power. The device further identifies a second data center for traffic to be processed by the first data center. The device also receives the traffic and routes the traffic to the second data center.
摘要:
A device, of a first data center, detects a power failure associated with the first data center when the first data center stops receiving power. The device further identifies a second data center for traffic to be processed by the first data center. The device also receives the traffic and routes the traffic to the second data center.
摘要:
A SIP-based network architecture is defined allowing a variety of access methods for interfacing QSIG-based signaling devices. The QSIG-based signaling devices are typically enterprise-based PBXs that either interface directly via QSIG, or adapt QSIG signaling to related signaling protocols via gateways, which can be customer premise or network based. The gateways can either interwork QSIG signaling or tunnel QSIG signaling over H.323, SIP, or other protocols. Upon reaching the SIP-based network, Session Border Controllers process the signaling. The Session Border Controllers terminate the tunnel (if used) and extracts the QSIG signaling for interworking to SIP, thereby facilitating a homogeneous SIP-based core network. In addition to interworking QSIG signaling, the Session Border Controllers perform other signaling related functions for the SIP-based network that are performed at a point as near as possible to the network's edge.
摘要:
A SIP-based network architecture is defined allowing a variety of access methods for interfacing QSIG-based signaling devices. The QSIG-based signaling devices are typically enterprise-based PBXs that either interface directly via QSIG, or adapt QSIG signaling to related signaling protocols via gateways, which can be customer premise or network based. The gateways can either interwork QSIG signaling or tunnel QSIG signaling over H.323, SIP, or other protocols. Upon reaching the SIP-based network, Session Border Controllers process the signaling. The Session Border Controllers terminate the tunnel (if used) and extracts the QSIG signaling for interworking to SIP, thereby facilitating a homogeneous SIP-based core network. In addition to interworking QSIG signaling, the Session Border Controllers perform other signaling related functions for the SIP-based network that are performed at a point as near as possible to the network's edge.
摘要:
A SIP-based network architecture is defined allowing a variety of access methods for interfacing QSIG-based signaling devices. The QSIG-based signaling devices are typically enterprise-based PBXs that either interface directly via QSIG, or adapt QSIG signaling to related signaling protocols via gateways, which can be customer premise or network based. The gateways can either interwork QSIG signaling or tunnel QSIG signaling over H.323, SIP, or other protocols. Upon reaching the SIP-based network, Session Border Controllers process the signaling. The Session Border Controllers terminate the tunnel (if used) and extracts the QSIG signaling for interworking to SIP, thereby facilitating a homogeneous SIP-based core network. In addition to interworking QSIG signaling, the Session Border Controllers perform other signaling related functions for the SIP-based network that are performed at a point as near as possible to the network's edge.
摘要:
A device receives policy parameters for a user equipment moving from a first access network to a second access network. The device also translates the policy parameters to parameters understood by the second access network, and provides the translated policy parameters to the second access network. When the translated policy parameters are accepted by the second access network, the user equipment connects to the second access network in accordance with the translated policy parameters.