摘要:
A communication system (310) is disclosed for providing continuity testing in packet communication networks. The communication system (310) is comprised of a first communication hub (301) and a second communication hub (305) connected to a packet communication network (302). The second communication hub (305) receives a continuity test instruction from the network (302). The second communication hub (305) processes the continuity test instruction to generate a request for continuity acknowledgment message that it transmits. The first communication hub (301) receives and processes the request for continuity acknowledgment message to generate a continuity acknowledgment message. The first communication hub (301) transmits the continuity acknowledgment message to the second communication hub (305). The second communication hub (305) validates connectivity between the first communication hub (301) and the second communication hub (305) based on the continuity acknowledgment message. In some examples, the first communication hub (301) generates and transmits call tones to a call device (300) based on call tone messages transmitted by the second communication hub (305).
摘要:
A Long Term Evolution (LTE) network delivers a media service that uses an Access Point Name (APN) Quality-of-Service (QoS) Class Identifier (QCI) to serve User Equipment (UE) over a wireless relay. A relay control system transfers a session request indicating the APN QCI to a wireless base station serving the wireless relay. The base station and the wireless relay configure a wireless network bearer to use the APN QCI. Responsive to the network bearer configuration, the wireless relay transfers a relay bearer request for the APN QCI to the relay control system. The relay control system returns a session request to the wireless relay. The wireless relay and the UE then configure a wireless access bearer to use the APN QCI. The wireless relay exchanges user media over the wireless access bearer and the wireless network bearer between the UE and the wireless base station using the APN QCI.
摘要:
A wireless relay serves a first User Equipment (UE). A first eNodeB in the relay wirelessly exchanges UE signaling data and UE user data with the first UE. The first eNodeB processes the UE signaling data to generate S1-MME signaling data and exchanges the S1-MME signaling data with a second UE in the relay. The first eNodeB processes the UE user data to generate S1-U user data and exchanges the S1-U user data with a Local Serving Gateway (L-SGW) in the relay. The L-SGW terminates the S1-U user data to generate non-General Packet Radio Service Transfer Protocol (non-GTP) user data. The L-SGW exchanges the non-GTP user data with the second UE in the relay. The second UE compresses/decompresses the non-GTP user data and the S1-MME signaling data. The second UE wirelessly exchanges the compressed non-GTP user data the compressed S1-MME signaling data with a second eNodeB.
摘要:
A wireless communication system receives device-hosted content delivery data structures that identify device-hosted media content. The wireless system transfers the data structures to a content distribution network. The wireless system receives network-hosted content delivery data structures from the content distribution network indicating network-hosted media content and the device-hosted media content and real-time data-rates for the network-hosted media content and the device-hosted media content. The wireless system receives the network-hosted media content and the device-hosted media content. The wireless system transfers the network-hosted content delivery data structures and multicasts the network-hosted media content and the device-hosted media content.