Abstract:
Embodiments of the present application provide a transmission method, an electronic device and a storage medium. The method includes as follows: performing M repeated transmissions on a first symbol, where the first symbol includes a symbol of X pilots, X is an integer greater than or equal to 0, and M is an integer greater than or equal to 1; and performing N repeated transmissions on a second symbol, where the second symbol includes a data symbol, and N is an integer greater than or equal to 1.
Abstract:
A data transmission method and apparatus, a first communication node, and a second communication node are provided. The method includes: acquiring data, wherein the data includes information of N pilots; and sending the data and the N pilots; wherein N is an integer greater than or equal to 1.
Abstract:
Provided are a signal processing method and apparatus, a first communication node, a second communication node, and a storage medium. The signal processing method includes acquiring N first sequences, combining the N first sequences to obtain a second sequence, and generating a signal according to the second sequence. N is an integer greater than or equal to 2.
Abstract:
Provided is a data processing method and apparatus, a first communication node, a second communication node and a storage medium. The data processing method includes: N first sequences are acquired; a second sequence is determined according to at least one first sequence of the N first sequences; a processing is performed on data based on the second sequence to obtain data symbols; and the N first sequences and the data symbols are sent; where N is an integer greater than or equal to 2.
Abstract:
Provided are an information transmission method and apparatus, a communication device, a communication node and a computer-readable storage medium. The method includes that: a communication device determines a second signal according to N bits in first information, wherein the second signal includes at least one of a preamble and a Reference Signal (RS), and N is an integer greater than or equal to 1; and the communication device sends a message A including the second signal.
Abstract:
A method and a terminal for uplink power control are disclosed. The method comprising: determining the uplink transmit power by a terminal according to a transmission scenario in which the terminal belongs. In embodiments of present disclosure, uplink transmit power is determined by a terminal for uplink transmission, wherein a scheme of uplink power control is achieved.
Abstract:
This document discloses a data transmission method and apparatus. The method includes: obtaining N data symbols to be sent; determining N complex sequences to be used; processing the N data symbols using the N complex sequences respectively to generate N data symbol sequences; superimposing the N data symbol sequences to generate a superimposed data symbol sequence; and sending the superimposed data symbol sequence; where N is an integer number greater than or equal to 2.
Abstract:
The embodiments of the present document provide a method and apparatus for measuring channel state information, wherein the method includes: a terminal device determining one or more downlink subframes which are located before a subframe where aperiodic Channel State Information (CSI) report trigger information is located and belong to a specified subframe group to be CSI reference resources for the specified subframe group; and the terminal device acquiring a CSI measurement result on the CSI reference resources and generating a CSI report corresponding to the specified subframe group.
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.