Abstract:
A base station comprises a control circuit which determines a notification pattern based on settings pertaining to feedback about a re-transmission process and sets a notification pattern in a signal for reporting the allocated number of data in the re-transmission process, and a transmission circuit for transmitting the notification pattern in the signal, wherein: one or more of the plurality of patterns associated with a first candidate value for a value pertaining to the allocated number of data in the re-transmission process for which feedback is valid are associated with a second candidate value which is not included in the first candidate value; and the control circuit determines that one of the one or more patterns is the notification pattern, when it is reported that the value pertaining to the allocated number of data in the re-transmission process for which feedback is valid is the second candidate value.
Abstract:
A particular overall architecture for transmission over a bonded channel system consisting of two interconnected MoCA (Multimedia over Coax Alliance) 2.0 SoCs (Systems on a Chip) and a method and apparatus for the case of a “bonded” channel network. With a bonded channel network, the data is divided into two segments, the first of which is transported over a primary channel and the second of which is transported over a secondary channel.
Abstract:
In a wireless communication system, there is disclosed a method for decoding a frame transmitted by a transmitter device is executed by a receiver device. The method includes the following steps:—selecting one or more gateway stations likely to have detected, on a communication channel, a corrupted frame corresponding to the frame to be decoded, the selection being carried out such that, in order to be selected, a gateway station does not have communicate beforehand, to the receiver device, any item of information relating to the possibly detected corrupted frame in order;—sending a request to each selected gateway station in order to request the selected gateway station to transmit the possibly detected corrupted frame; and—combining the corrupted frames transmitted by the various selected gateway stations in order to decode the frame.
Abstract:
In a computing environment, a set of executing processes each having associated resources are provided. Aggregate resources for the computing environment include multiple different types of resources. A utilization level for each of the resources within the computing environment is evaluated to determine an unconsumed capacity for each of the resources below a utilization threshold. The utilization threshold is resource-dependent. An indication of at least a portion of unconsumed capacity for each of the resources below the utilization threshold is gathered. The unconsumed portion for each of the resources below the utilization threshold is exposed for consumption by other executing processes.
Abstract:
A system and method for efficiently transporting data in a computing system are contemplated. In various embodiments, a computing system includes a source, a destination and multiple lanes between them for transporting data. Multiple receivers in the destination has a respective termination resistor connected to a single integrating capacitor, which provides a reference voltage to the multiple receivers. The receivers reconstruct the received data by comparing the corresponding input signals to the reference voltage. The source includes a table storing code words. The source maps a generated data word to a code word, which is sent to the destination. The destination maps the received code word to the data word. The values of the code words are selected to maintain a nearly same number of Boolean ones on the multiple lanes over time as a number of Boolean zeroes.
Abstract:
The embodiments herein relate to a method in a first mobility management node (108a) for handling updated subscriber data associated with a UE (101). The UE (101) is currently unreachable by the first mobility management node (108a). The first mobility management node (108a) receives, from a subscriber database (128), updated subscriber data associated with the UE (101). At least part of the updated subscriber data is modified. The first mobility management node (108a) determines that transmission of the updated subscriber data to a gateway node (110) should be postponed until the UE (101) has become reachable.
Abstract:
A radio communication device may be provided. The radio communication device may include: a first circuit; a second circuit; a processor configured to operate the radio communication device in a plurality of operation modes, wherein the plurality of operation modes may include: a first operation mode in which the first circuit processes received data of a first communication channel independent from the second circuit and in which the second circuit processes received data of a second communication channel independent from the first circuit; and a second operation mode in which the first circuit and the second circuit jointly process received data of a third communication channel The radio communication device may further include a mode switching circuit configured to switch between the plurality of operation modes.
Abstract:
The present invention discloses a signal correction method and a receiving machine, pertaining to the radio communication field. The method includes: acquiring M channels of first signals; performing adaptive processing for each channel of first signals among the M channels of first signals to output M channels of first correction signals; making a decree according to the M channels of first correction signals to obtain M channels of decree results; using a decree result with a same value and with a largest quantity among the M channels of decree results as a feedback signal; receiving M channels of second signals; and separately performing adaptive processing, according to the feedback signal, for each channel of second signals among M channels of second signals to output M channels of second correction signals.
Abstract:
There is provided a heterogeneous communications network. The heterogeneous communications network comprises: a macro cell; a small cell provided within the macro cell; and a user equipment provided within the macro cell, wherein the user equipment is operable to receive control-plane information from the macro cell and user-plane information from the macro cell and/or the small cell, and wherein the user equipment is operable to transmit a connection request based on the received control-plane information, the macro cell and/or small cell are operable to determine which of the macro cell and the small cell is to operate as the serving cell for the user equipment based on the connection request, and the determined serving cell is operable to transmit a connection response to the user equipment.
Abstract:
The present technology relates to a reception apparatus, a reception method, and a program capable of improving performance in diversity. The reception apparatus includes a plurality of demodulation units configured to demodulate a supplied branch and generate a symbol, and a synthesis unit configured to synthesize the symbol demodulated by the plurality of demodulation units, to which the synthesis unit sets a predetermined time from arrival time of a first-arriving symbol as a search range, and synthesizes a symbol that arrives within the search range and the first-arriving symbol. The present technology can be applied to a mobile terminal apparatus that receives television broadcasting or the like with diversity system.