Abstract:
Embodiments of user equipment (UE) and base stations (eNodeB) and method for reducing power consumption in UE in a wireless network are generally described herein. In some embodiments, characteristics of UE including mobility, communication data load, and communication type are used by base stations, MME or other controlling entities to configure power saving features of the UE. Power saving features can include a new Radio Resource Control (RRC) layer state where circuitry is powered off for extended periods of time, extended Discontinuous Reception (DRX) cycles, reduced workloads in existing RRC, EPC Connection Management (ECM) and/or EPS Mobility Management (EMM) states or combinations thereof.
Abstract:
The UE has processor which is operably coupled to radio-frequency transceiver. A memory is operably coupled to processor. The processor is configured to transmit information that provides device orientation capabilities of the UE main portion to the remote media content server or device profile server through the radio-frequency transceiver. The device orientation capabilities of the UE main portion are provided with predetermined orientation positions that correspond to orientation information provided by the orientation sensor. Independent claims are included for the following: (1) a method for controlling delivery of streaming or download of multimedia content from a server to UE client over wireless network; and (2) a computer-readable media storing instructions for controlling delivery of streaming or download of multimedia content from a server to UE client over wireless network.
Abstract:
En este documento se describen realizaciones para unión selectiva de células inalámbricas por un equipo de usuario ("UE") para comunicación tipo máquina ("MTC"). Un MTC UE puede detectar una pluralidad de células inalámbricas, cada una provista por un Nodo B evolucionado ("eNB"). El MTC UE puede detectar categorías de eNB asociadas a células inalámbricas individuales de la pluralidad de células inalámbricas, y puede identificar una o más células inalámbricas de la pluralidad de células inalámbricas detectadas en las cuales se permite el tráfico MTC basándose en las categorías de eNB asociadas. El MTC UE puede unirse selectivamente a una célula inalámbrica de la una o más células inalámbricas identificadas basándose en un criterio de selección de célula. Además, un eNB puede proveer una célula inalámbrica y proveer, a un MTC UE, una política de MTC que identifica una circunstancia bajo la cual el eNB permitirá el tráfico MTC. El eNB puede ser configurado para dar servicio selectivamente al MTC UE basándose en la política de MTC.
Abstract:
The UE has processor which is operably coupled to radio-frequency transceiver. A memory is operably coupled to processor. The processor is configured to transmit information that provides device orientation capabilities of the UE main portion to the remote media content server or device profile server through the radio-frequency transceiver. The device orientation capabilities of the UE main portion are provided with predetermined orientation positions that correspond to orientation information provided by the orientation sensor. Independent claims are included for the following: (1) a method for controlling delivery of streaming or download of multimedia content from a server to UE client over wireless network; and (2) a computer-readable media storing instructions for controlling delivery of streaming or download of multimedia content from a server to UE client over wireless network.
Abstract:
The UE has processor which is operably coupled to radio-frequency transceiver. A memory is operably coupled to processor. The processor is configured to transmit information that provides device orientation capabilities of the UE main portion to the remote media content server or device profile server through the radio-frequency transceiver. The device orientation capabilities of the UE main portion are provided with predetermined orientation positions that correspond to orientation information provided by the orientation sensor. Independent claims are included for the following: (1) a method for controlling delivery of streaming or download of multimedia content from a server to UE client over wireless network; and (2) a computer-readable media storing instructions for controlling delivery of streaming or download of multimedia content from a server to UE client over wireless network.
Abstract:
Embodiments of user equipment (UE) and base stations (eNodeB) and method for reducing power consumption in UE in a wireless network are generally described herein. In some embodiments, characteristics of UE including mobility, communication data load, and communication type are used by base stations, MME or other controlling entities to configure power saving features of the UE. Power saving features can include a new Radio Resource Control (RRC) layer state where circuitry is powered off for extended periods of time, extended Discontinuous Reception (DRX) cycles, reduced workloads in existing RRC, EPC Connection Management (ECM) and/or EPS Mobility Management (EMM) states or combinations thereof.
Abstract:
Techniques to train a personal area network component may include obtaining a packet error rate from a personal area network component. It may be determined that the packet error rate is greater than a packet error rate threshold after a time period. A reservation may be requested from a wide area network component based a first transmit pattern from the personal area network component. A second or adjusted transmit pattern from the wide area network component may be received. Personal area network signals may be transmitted based on the second transmit pattern. The time period may be adjusted based on a personal area network packet error rate of the second transmit pattern. Other embodiments are described and claimed.
Abstract:
The method (600) involves receiving a configuration of discontinuous reception (610) that is levelled with a multi-radio wireless device e.g. cell phone, from an evolved node B. The wireless device is arranged with a set of radio operated transmitter-receivers. The configuration of discontinuous reception is applied (620) to one of the set of radio operated transmitter-receivers. A shift period is selected (630) among a cycle of 2 milliseconds (ms), 5ms, and 8ms for long discontinuous reception cycle. Independent claims are also included for the following: (1) a multi-radio wireless device (2) a computer readable medium comprising instructions for performing an interference reduction method.
Abstract:
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