Abstract:
The embodiments of the present application disclose resource allocation indication and receiving methods and devices. The resource allocation indication method includes that: a Base Station (BS) sends first indication information, wherein the first indication information is configured to indicate an activated Bandwidth Part (BWP) message and the activated BWP message at least includes BWP Bandwidth (BW) information; and the BS sends second indication information, wherein the second indication information is configured to indicate one or more groups of first-level Resource Block Group (RBG) sizes, each group of first-level RBG sizes includes multiple first-level RBG sizes, and each first-level RBG size corresponds to different BWP BWs, wherein there is a corresponding relationship between the first-level RBG size and different BWP BWs.
Abstract:
Disclosed are a data feedback, sending and receiving method and device, a receiving device and a sending device. The data feedback method includes generating a hybrid automatic repeat request acknowledgement (HARQ-ACK) for transmitted data; and feeding back the HARQ-ACK to a sending end.
Abstract:
Systems and methods for indicating and determining channel structure information in a wireless communication network are disclosed herein. In one embodiment, a method performed by a first node is disclosed. The method comprises: receiving a wireless signal from a second node; obtaining channel structure information indicated by the wireless signal; determining a first waveform parameter set configured for the channel structure information indicated by the wireless signal; and determining transmission attributes of a transmission link between the first node and the second node in a predetermined time duration with respect to the first waveform parameter set based on the channel structure information.
Abstract:
Systems and methods for indicating and determining channel structure information in a wireless communication network are disclosed herein. In one embodiment, a method performed by a first node is disclosed. The method comprises: receiving a wireless signal from a second node; obtaining channel structure information indicated by the wireless signal; determining a first waveform parameter set configured for the channel structure information indicated by the wireless signal; and determining transmission attributes of a transmission link between the first node and the second node in a predetermined time duration with respect to the first waveform parameter set based on the channel structure information.
Abstract:
A signal transmission method, a terminal and a network-side device. A first network-side device sends access configuration (AC) indication information to a terminal, the AC indication information being used for indicating to the terminal the currently available AC in an access configuration set (ACS). The terminal receives the access configuration set (ACS) and the access configuration (AC) indication information sent by the network-side device, and determines, according to the AC indication information, the currently available AC in the ACS.
Abstract:
Disclosed in the present disclosure are a method and device for transmitting a signal. The method comprises: sending and/or receiving, by a transmission point, a signal and/or data in a time unit; the time unit comprises: one or more regions of a first type used to send or receive a signal, and one or more regions of a second type used to send or receive data, and one or more regions of a third type in which no signals or data are sent or received.
Abstract:
Provided are a data transmission method and device. The method includes that: N second-type nodes are grouped to form a third-type node, N being a positive integer more than or equal to 2; and data is transmitted in a network formed by the second-type nodes, the third-type node and a first-type node.
Abstract:
A method for configuring power control parameters of sounding reference signals in a time division duplexing system is applied to a terminal and a system and includes: a terminal determining power control parameters of sounding reference signal SRS resources, and determining transmission power of the sounding reference signals based on the power control parameters; the terminal transmitting the sounding reference signals SRS based on the determined transmission power of the sounding reference signals SRS; a base station determining the power control parameters used by the terminal in the SRS resources; the base station receiving SRS signals based on the power control parameters. The embodiment of the present document also discloses a system for configuring power control parameters of sounding reference signals in a time division duplexing system, which corresponds to the abovementioned method.
Abstract:
Provided are methods and apparatuses for measuring CSI. The method comprises: a terminal device determining whether a subframe a channel state information interference measurement resource is located on is a downlink subframe; when the subframe where the channel state information interference measurement resource is located is a downlink subframe, the terminal device executing interference measurement by using the channel state information interference measurement resource. By means of the present disclosure, the technical problem is solved that it is difficult to effectively perform the CSI measurement caused when a base station flexibly adjust uplink-downlink configuration in a related technology, thereby achieving the technical effect of improving the data transmission performance of a system.
Abstract:
Provided are a data processing method, a communication node and a computer-readable storage medium. The data processing method includes the following. A first communication node sends first control information to a second communication node, where the first control information is used for activating or deactivating at least one semi-persistent transmission, the first control information is associated with the first semi-persistent transmission, and the at least one semi-persistent transmission includes the first semi-persistent transmission.