Abstract:
Wireless communications systems and methods related to serving wireless communication devices using multi-radio access technology (multi-RAT) transmission diversity are provided. A first wireless communication device communicates, with a second wireless communication device in a first frequency band allocated to a first radio access technology (RAT), first data using the first RAT. The first wireless communication device reconfigures a first resource in a second frequency band allocated to a second RAT different from the first RAT from implementing a configuration of the second RAT to implementing a configuration of the first RAT. The first wireless communication device communicates, with the second wireless communication device in the second frequency band, second data using the first resource implementing the configuration of the first RAT.
Abstract:
Изобретение относится к система передачи трафика между пользователями. Результатом является обеспечение возможности пользователям обмениваться неизрасходованным Интернет трафиком. Система содержит сервер, первое пользовательское компьютерное устройство, второе пользовательское компьютерное устройство и программное обеспечение, первое пользовательское устройство для: доступа к сети Интернет, наличия неизрасходованного Интернет-трафика, создания точки доступа и посредством программного обеспечения отправки на сервер информации о неизрасходованном Интернет-трафике, об объеме и условиях предоставления неизрасходованного Интернет-трафика; второе пользовательское компьютерное устройство для: поиска точки доступа первого пользовательского устройства с уровнем сигнала, достаточным для осуществления Интернет-соединения, получения посредством программного обеспечения с сервера информации о неизрасходованном Интернет-трафике первого пользовательского устройства и при удовлетворении условий предоставления неизрасходованного Интернет-трафика первого пользовательского устройства подключение к точке доступа первого пользовательского устройства.
Abstract:
Embodiments of the present disclosure relate to methods and devices for uplink puncturing. In example embodiments, the terminal device obtains a first signal to be transmitted for a first service requiring a first latency. Then, the terminal device determines whether a resource block has been a shared one for the first service requiring a first latency or allocated by a network device for a second service requiring a second latency higher than the first latency. If it is determined that the resource block has been allocated for the second service, the terminal device selects a first set of resource elements based on a predefined pattern of resource elements. The first set of resource elements are discontinuously distributed in the allocated resource block. The terminal device transmits the first signal for the first service to the network device at the first set of resource elements. In this way, the low latency requirement of the first service may be met while impairing of the second service due to the missing of the REs preempted by the first service may be reduced.
Abstract:
A method for path predictive congestion avoidance includes receiving activity data for a plurality of cells, determining dominant paths for each of a plurality of cells based on the activity data, predicting a future network condition based on the dominant paths, and allocating network resources based on the predicted future network condition.
Abstract:
Wireless telecommunications network nodes, methods and computer program products are disclosed. A wireless telecommunications network node method, comprises determining a cause of a radio link failure which occurred when a user equipment is in proximity to an uplink-downlink imbalance region; and in response to the cause of the radio link failure, initiating action to optimize control of user equipment uplink-downlink decoupling-recoupling when in proximity to the uplink-downlink imbalance region. In this way, by establishing the cause of the radio link failure, it is possible to take action to alter the user equipment uplink-downlink decoupling-recoupling procedure in order to help prevent such radio link failures occurring in the future.
Abstract:
A method for a cooperative communication according to a portion of the present specification, may include receiving at least one of information related to a radio access point and information related to a user equipment (UE) receiving a service from the radio access point, from the radio access point. The receiving may be performed by using a User Datagram Protocol (UDP) and a General Packet Radio Service (GPRS) Tunneling Protocol (GTP).