Abstract:
Provided is a data processing method and apparatus. The method includes: performing an inverse fast Fourier transform (IFFT) on frequency-domain data of L consecutive symbols to obtain time-domain data of the L consecutive symbols, wherein the frequency-domain data of the L consecutive symbols have a subcarrier spacing of fsc, and L≥2; and modulating the time-domain data of the L consecutive symbols with a preset function, where the modulated time-domain data of the L consecutive symbols have a symbol interval of 1/f1, and f1
Abstract:
Provided is a data processing method and apparatus. The method includes: performing an inverse fast Fourier transform (IFFT) on data and processing the data with a preset function. The preset function is the product of a first function and a second function. The first function is a function in a time domain obtained by performing a Fourier transform on a root-raised cosine function in a frequency domain. The second function is in the time domain.
Abstract:
Provided are a method for realizing device-to-device communication relay selection, a network control node and user equipment. The method includes: a network control node receiving relay-related information sent by user equipment and determining a relay node; and the network control node sending device-to-device communication relay configuration information to the determined relay node. In the technical solution, by sending relay-related information in a network to perform selection or configuration of a relay node, a corresponding solution is provided for a scenario for which relay selection is not provided, and thereby the selection of the relay node is realized.
Abstract:
A method for transmitting control information, a channel or signal, and a corresponding sending end are provided. The method includes: after performing low bit rate coding and/or low order modulation on data containing the control information, carrying the data on partial physical resources of a reference signal for transmission, herein the coding rate is lower than the highest coding rate set by the system and the modulation order is lower than the highest modulation order set by the system. The method further includes: selecting one transmission mode from multiple transmission modes configured for the channel or signal; transmitting known data; transmitting non-known data and being subject to a coding limitation and/or modulation limitation; and transmitting the non-known data and not being subject to the modulation limitation and the coding limitation; and sending transmission mode configuration information to a receiving end to indicate the selected transmission mode.
Abstract:
The present document relates to a method for sending and receiving a reference signal and a communication node. The method includes: a first communication node sending a first reference signal and a second reference signal to a second communication node, the first reference signal is different from the second reference signal. The solution achieves the effect that the second communication node acquires channel state quality through the second reference signal which is different from the first reference signal when the second communication node cannot successfully receive the first reference signal.
Abstract:
A method and device for data synchronization are provided. The method includes that: signalling and/or a forwarded packet are/is sent to M+N slave Transmission Points (TPs); and downlink data synchronization is performed with the slave TPs by sending the signalling and/or the forwarded packet, wherein M slave TPs perform Packet Data Convergence Protocol (PDCP) layer data synchronization with the master TP, N slave TPs may perform PDCP/Radio Link Control (RLC)/Medium Access Control (MAC) layer data synchronization with the master TP, M>=0, N>=0 and M+N>=1.
Abstract:
The present document discloses a method for determining a transmission time of a synchronization signal, a terminal, a base station, and a communication system. The method for determining the transmission time of the synchronization signal includes: receiving the synchronization signal; acquiring a time index of the synchronization signal; and determining the transmission time of the synchronization signal according to the time index. The present document also discloses a computer storage medium.
Abstract:
The present document discloses a wireless synchronization method and a wireless synchronization system. The method includes: determining a synchronization path between a first node and a second node (S110); and using the synchronization path to synchronize the first node and the second node (S120), herein the synchronization path is composed of one or more segments of visible paths, and the visible path is a direct path which connects two nodes visible to each other. The present document further discloses a computer storage medium.
Abstract:
A method for channel information feedback, a base station and a device, the method includes: a terminal performs a channel measurement, constructs an information matrix used for representing channel information according to a preset function, determines optimal channel parameters and feeds back the channel parameters to a base station; and the base station constructs quantization information of a characteristic vector of a channel matrix according to the received channel parameters and the channel matrix. In the technical solution provided by the embodiment of the present document, since the most essential characteristic of a dual-polarized channel, i.e., information u that represents a multipath direction, is matched in the channel matrix, channel information feedback with the lowest cost is implemented, and compared with the existing codebook feedback solution, on the basis that feedback precision is satisfied, the feedback overhead is obviously reduced, terminal implementation complexity is reduced and feedback efficiency is improved.
Abstract:
Provided are a virtual anchor point-based wireless positioning method and device, and terminal. The method includes: when an effective positioning condition is met, positioning data is acquired and stored, multipath analysis and tracking is simultaneously performed on received wireless signals transmitted by a signal transmission station, propagation distance information of each path of the signal transmission station is calculated and stored, and virtual image position information of each path of the signal transmission station is calculated and stored according to the positioning data and the propagation distance information of each path of the signal transmission station; and when the condition is not met, at least one virtual image is selected from virtual images of multiple paths of the signal transmission station as at least one positioning virtual anchor point, and current position information is obtained according to the effective positioning condition and the at least one positioning virtual anchor point.