Abstract:
Technology for communicating power preference indication (PPI) message is described. A user equipment (UE) may receive PPI configuration information, from an evolved node B (eNB), wherein the PPI configuration information includes a predetermined threshold for a number of PPI messages that the UE can communicate to the eNB during a defined time window. The UE may communicate a plurality of PPI messages after sending a low power consumption configuration to the eNB during the defined time window, wherein the plurality of PPI messages each indicate a change in preferred power consumption configuration. The UE may detect that the plurality of PPI messages exceeds the predetermined threshold for the number of PPI messages that the UE can communicate to the eNB during the defined time window as defined in the PPI configuration information. The UE may initiate a threshold timer in response to the plurality of PPI messages exceeding the predetermined threshold to restrict additional PPI messages from being communicated to the eNB until expiration of the threshold timer.
Abstract:
Embodiments described herein relate generally to efficient transmission of data over a radio network between a user equipment (“UE”) and a network node. The UE may adapt packets from TCP to a private protocol and transmit those data packets to the network node. The UE may use ARQ data from link layer circuitry to locally generate TCP ACK data for TCP layer circuitry. At the network node, the private-protocol data packets may be adapted to TCP and transmitted to a remote host over the Internet so that the TCP semantic may be maintained between the UE and the remote host. Other embodiments may be described and/or claimed.
Abstract:
Ausführungsformen der vorliegenden Offenbarung beschreiben Verfahren und Vorrichtungen zum Kommunizieren in infrastrukturlosen Underlay-Netzen.
Abstract:
Un nodo B primario evolucionado, MeNB (102), que comprende: una lógica, al menos una parte de la cual está en hardware, estando la lógica configurada para el envío (304) de un mensaje de notificación de inactividad (212) a un nodo B secundario evolucionado, SeNB (104), cuyo nodo SeNB proporciona un servicio inalámbrico dentro de una célula pequeña (110) a un equipo de usuario de doble conexión UE (120), para indicar la terminación operativa de un temporizador_de inactividad_RRC al equipo UE de doble conexión, la recepción (306), procedente del SeNB (104), de un mensaje de decisión de estado (216) en respuesta al mensaje de notificación de inactividad (212), indicando el mensaje de decisión de estado (216) si el equipo UE de doble conexión (260) puede ser transferido, o no, al estado de inactividad_RRC sobre la base de un estado de actividad de la célula pequeña para el equipo UE de doble conexión, y la determinación de si se debe realizar la transición del equipo UE de doble conexión a un estado de inactividad_RRC en función del mensaje de decisión de estado.
Abstract:
Embodiments of a system and method to identify and differentiate background traffic are generally described herein. In some embodiments, a transceiver is arranged to wirelessly transmit and receive packets over a communications network and a processor, coupled to the transceiver, is arranged to provide an indication identifying packets associated with background traffic. The indication identifying packets associated with background traffic includes a bit in a header of a packet, wherein the bit is set in a first state to indicate the packet is associated with background traffic and the bit is set in a second state to indicate the packet is associated with active traffic, or an identification of a port number and a protocol type associated with background traffic. The processor is further arranged to provide an indication for differentiating background traffic.
Abstract:
Embodiments of the present disclosure describe systems and methods for partitioning radio frequency spectrum for multiple categories of communication. Various embodiments may include partitioning of an available frequency band into a first partition for a first category of communication and a second partition for a second category of communication. In embodiments, the first category of communication may be designed for devices having a relatively lower cost of implementation than the second category of communication. In some embodiments, the first partition may be aggregated opportunistically with the second partition based on certain conditions such as, for example, under utilization of the first partition. Other embodiments may be described and/or claimed.
Abstract:
Embodiments of the present disclosure describe systems and methods for operation of an evolved node B to provide multiple coverage enhancement levels. Various embodiments may include an operational mode configured to provide a first coverage enhancement level associated with user equipments (UEs) that have established communication with the eNB. These embodiments may also include a discovery mode configured to operate at a second coverage enhancement level to discover UEs configured for a higher coverage enhancement level. Other embodiments may be described and/or claimed.