Abstract:
A method includes: The receive end receives 2N channels of signals through N first antennas, where the 2N channels of signals are respectively from N second antennas of the transmit end. When transmission performance of any one of the 2N channels of signals is less than a first threshold, the receive end respectively receives, from two second antennas, two channels of signals whose polarization directions are orthogonal. When transmission performance of the two channels of signals is both greater than a second threshold, the receive end receives the 2N channels of signals through the N first antennas.
Abstract:
A cloud computing system and a method therein. The cloud computing system includes: a resource server cluster, where the resource server cluster includes at least two resource servers, each resource server in the resource server cluster has at least one type of resources of computing resources and storage resources, and at least one resource server in the resource server cluster has computing resources and storage resources; a computing resource management module configured to manage the computing resources in the resource server cluster, so as to provide a virtual computing service; and a storage resource management module configured to manage a shared storage resource pool established using the storage resources in the resource server cluster, so as to provide a virtual storage service, where storage resources included in each storage resource pool are from at least two resource servers in the resource server cluster.
Abstract:
Embodiments of the present disclosure provide a method and a device for transmitting data. The method includes: a user equipment receives downlink data sent from a base station through downlink resources of a special subframe; the user equipment determines its corresponding guard period level, the guard period level corresponds to a round-trip time of the user equipment and indicates a length of an orthogonal frequency division multiplexing (OFDM) symbol in a guard period corresponding to the user equipment in the special subframe; the user equipment determines, according to its corresponding guard period level, a position of uplink resources corresponding to the user equipment in guard period resources of the special subframe; and the user equipment sends uplink data to the base station through the uplink resources corresponding to the user equipment in the guard period resources of the special subframe.
Abstract:
The present disclosure provides a method and device for transmitting data. The method comprises: a first user equipment receives downlink data sent from a base station through downlink resources of a special subframe; the first user equipment acquires a position of uplink resources corresponding to the first user equipment in guard period resources of the special subframe, wherein the position of the uplink resources corresponding to the first user equipment in the guard period resources of the special subframe is staggered from a position of downlink resources corresponding to a second user equipment in the special subframe, and a round-trip time of the second user equipment is greater than a round-trip time of the first user equipment; and the first user equipment sends uplink data to the base station through the uplink resources corresponding to the first user equipment in the guard period resources of the special subframe.
Abstract:
The present invention provides a method and device for allocating WLAN channel resources and a wireless local area network communication system. The method includes: obtaining subcarrier allocation information, where the subcarrier allocation information is used to identify a subcarrier or a subcarrier group used to bear data, where channel quality of a subchannel where the subcarrier or the subcarrier group is located is greater than or equal to a judgment threshold; and sending data on the subcarrier according to the subcarrier allocation information. The present invention reduces a waste of transmit power of a station, and can increase a modulation order because no restriction is imposed by pull-down of a subchannel with very poor channel quality.
Abstract:
A cloud computing system and a method therein. The cloud computing system includes: a resource server cluster, where the resource server cluster includes at least two resource servers, each resource server in the resource server cluster has at least one type of resources of computing resources and storage resources, and at least one resource server in the resource server cluster has computing resources and storage resources; a computing resource management module configured to manage the computing resources in the resource server cluster, so as to provide a virtual computing service; and a storage resource management module configured to manage a shared storage resource pool established using the storage resources in the resource server cluster, so as to provide a virtual storage service, where storage resources included in each storage resource pool are from at least two resource servers in the resource server cluster.
Abstract:
This application discloses an application access method and a related apparatus. The application access method includes: A first electronic device runs a target application, and obtains first display content of the target application; the first electronic device obtains a screen display parameter of a second electronic device; the first electronic device determines display data based on the first display content and the screen display parameter of the second electronic device, where the display data includes a display location and a display size of the first display content; and the first electronic device sends the display data to the second electronic device, and the second electronic device displays an application interface of the target application based on the display data.
Abstract:
Resource scheduling includes pre-dividing a resource block RB into a plurality of sub-RBs and scheduling a UE by using a resource scheduling indication during data transmission to perform data receiving or sending in a position of a corresponding sub-RB. The resource block RB is pre-divided into a plurality of sub-RBs and during data transmission the UE is scheduled by using the resource scheduling indication to perform data receiving or sending in the position of the corresponding sub-RB, thereby improving resource utilization efficiency during transmission of a small data service and improving transmission efficiency of small data.
Abstract:
A storage resource scheduling method and a storage and computing system, where the storage and computing system has a computing system and a storage system, the computing system has at least one computing unit, and the storage system has at least one storage unit. The method executed by the computing system includes: identifying a task type of a computing unit in the at least one computing unit; sending task type information to the storage system, where the task type information carries the task type; acquiring a scheduling policy of the task type according to the task type information; and scheduling, according to the scheduling policy, a storage unit corresponding to the computing unit. In the method, different tasks of a computing unit are perceived, and resource scheduling is performed according to a task type, thereby implementing scheduling and management on different tasks of a same storage unit.