Abstract:
Providing for an efficient frame structure for wireless communication is disclosed, which may include frequency division multiplexing (FDM) first and second air interfaces in a downlink subframe of a frame, and may also include time division multiplexing (TDM) the first and second air interfaces in an uplink subframe of the frame.
Abstract:
Providing for an efficient frame structure for wireless communication is disclosed, which may include frequency division multiplexing (FDM) first and second air interfaces in a downlink subframe of a frame, and may also include time division multiplexing (TDM) the first and second air interfaces in an uplink subframe of the frame.
Abstract:
Techniques for sending and receiving signaling messages on shared and dedicated channels in a wireless communication system are described. A user equipment (UE) may receive a first signaling message on a shared channel during a first time period, receive a second signaling message on a dedicated channel during a second time period, and receive a third signaling message on the shared channel during a third time period. The UE may receive traffic data on the shared channel during all time periods. The UE may be handed over from a source Node B to a target Node B during the second time period. The UE may receive the first signaling message via the source Node B, receive the second signaling message via the source and target Node Bs, and receive the third signaling message via the target Node B.
Abstract:
Aqu? se describen t?cnicas para enviar y recibir mensajes de se?alizaci?n en canales compartidos y dedicados en un sistema de comunicaci?n inal?mbrica; un equipo de usuario (UE) puede recibir un primer mensaje de se?alizaci?n en un canal compartido durante un primer periodo de tiempo, recibir un segundo mensaje de se?alizaci?n en un canal dedicado durante un segundo periodo de tiempo, y recibir un tercer mensaje de se?alizaci?n en el canal compartido durante un tercer periodo de tiempo; el UE puede recibir datos de tr?fico en el canal compartido durante todos los periodos de tiempo; el UE puede ser transferido de un Nodo B fuente a un Nodo B objetivo durante el segundo periodo de tiempo; el UE puede recibir el primer mensaje de se?alizaci?n a trav?s del Nodo B fuente, recibir el segundo mensaje de se?alizaci?n a trav?s de los Nodos B fuente y objetivo, y recibir el tercer mensaje de se?alizaci?n a trav?s del Nodo B objetivo.
Abstract:
Se describe el aprovisionamiento de una estructura de cuadro eficiente para comunicación inalámbrica, la cual puede incluir multiplexar por división de frecuencia (FDM) la primera y segunda interfaces de aire en un subcuadro de enlace descendente de un cuadro, y puede también incluir multiplexar por división de tiempo (TDM) la primera y segunda interfaces de aire en un subcuadro de enlace ascendente del cuadro.
Abstract:
Techniques for sending and receiving signaling messages on shared and dedicated channels in a wireless communication system are described. A user equipment (UE) may receive a first signaling message on a shared channel during a first time period, receive a second signaling message on a dedicated channel during a second time period, and receive a third signaling message on the shared channel during a third time period. The UE may receive traffic data on the shared channel during all time periods. The UE may be handed over from a source Node B to a target Node B during the second time period. The UE may receive the first signaling message via the source Node B, receive the second signaling message via the source and target Node Bs, and receive the third signaling message via the target Node B.
Abstract:
Techniques for sending and receiving signaling messages on shared and dedicated channels in a wireless communication system are described. A user equipment (UE) may receive a first signaling message on a shared channel during a first time period, receive a second signaling message on a dedicated channel during a second time period, and receive a third signaling message on the shared channel during a third time period. The UE may receive traffic data on the shared channel during all time periods. The UE may be handed over from a source Node B to a target Node B during the second time period. The UE may receive the first signaling message via the source Node B, receive the second signaling message via the source and target Node Bs, and receive the third signaling message via the target Node B.