Abstract:
Example channel feedback information transmission methods are disclosed. In one example method, a terminal performs channel estimation on a subcarrier on which a downlink pilot is located, and obtains first channel information. The terminal performs a channel interpolation calculation on a channel of a data subcarrier according to the first channel information, and obtains second channel information according to a result of the channel interpolation calculation. The terminal determines a feedback factor, and obtains third channel information from the second channel information according to the feedback factor, where an amount of the third channel information is less than an amount of the second channel information. The terminal feeds back the third channel information to a base station. Some channel information is selected and fed back by means of a feedback factor.
Abstract:
Embodiments of the present invention disclose a signal processing method, apparatus, and system, where the method includes: receiving a downlink signal that carries an uplink signal; and performing first interference cancellation on the uplink signal by using an estimated self-interference signal, so that a remaining amount of interference of the uplink signal is less than a first interference threshold, thereby minimizing out-of-band interference of the uplink signal on the downlink signal without using a plurality of radio frequency front-ends or without using a duplexer on a same radio frequency front-end. In the embodiments of the present invention, no duplexer is adopted, and therefore, difficulty and a cost of base station and system layout can be reduced, and extra energy consumption of a mobile terminal can also be reduced.
Abstract:
A channel feedback information transmission method is disclosed. A terminal performs channel estimation on a subcarrier on which a downlink pilot is located, and obtains first channel information; the terminal performs a channel interpolation calculation on a channel of a data subcarrier according to the first channel information, and obtains second channel information according to a result of the channel interpolation calculation; the terminal determines a feedback factor; the terminal obtains third channel information from the second channel information according to the feedback factor, where an amount of the third channel information is less than an amount of the second channel information; and the terminal feeds back the third channel information to a base station. Some channel information is selected and fed back by means of a feedback factor.
Abstract:
A network communication method and a network communications apparatus where the method is applied to an over-the-air network system, and the over-the-air network system includes a service processing device and a level-1 over-the-air network node. The method includes generating, by the service processing device, a collection instruction, where the collection instruction includes a preset collection rule, the preset collection rule is used to instruct the level-1 over-the-air network node to collect, according to the preset collection rule, service data reported by a terminal in a target area, and the target area is an area covered by the level-1 over-the-air network node; sending, by the service processing device, the collection instruction to the level-1 over-the-air network node; and collecting, by the level-1 over-the-air network node according to the preset collection rule in the collection instruction, the service data reported by the terminal in the target area.
Abstract:
The present invention discloses a signal processing method, apparatus, and system. In M user equipments, an active set Ki and an interference set K′i of a user equipment i are determined according to power measurement values from the user equipment i to N sites; for the active set Ki of the user equipment i, superposition of sent signals of all other user equipments j of all active sites ki are cancelled out with each other, to obtain one constraint condition of a weight, and for the M user equipments, M constraint conditions are obtained, and a weight subspace T is determined; and one weight is determined in the weight subspace according to an interfering signal of another user equipment j for the user equipment i in the interference set K′i of the user equipment i and a wanted signal of the user equipment i in the active set Ki of the user equipment i.
Abstract:
The present application discloses a communication apparatus and a space division duplex method thereof. The communication apparatus includes at least one first chain, at least one second chain, and at least two antennas that are mutually independent of the first chain and the second chain. The method includes the following steps: obtaining channel state information between the communication apparatus and a peer end; selecting, according to the channel state information and from the antennas, a first antenna corresponding to the first chain and a second antenna corresponding to the second chain; connecting the first chain to the first antenna, and connecting the second chain to the second antenna; and at a same time-frequency resource, transmitting a signal by using the first chain and the first antenna connected to the first chain and receiving a signal by using the second chain and the second antenna connected to the second chain.