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Double-transmission-block data transmitting and receiving method and device, transmitter, and receiver

A technology of a data sending method and a data receiving method, which is applied in the communication field and can solve problems such as no Gray mapping attribute

Active Publication Date: 2016-06-01
ZTE CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The present invention provides a data sending and receiving method, device, transmitter and receiver of a double transmission block, so as to at least solve the problem in the related art that there is no Gray mapping attribute in the constellation point finally combined by direct addition of two TBs question

Method used

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  • Double-transmission-block data transmitting and receiving method and device, transmitter, and receiver

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Embodiment 1

[0118] Figure 11 is an abstract schematic diagram of wireless uplink transmission according to the preferred embodiment 1 of the present invention, as shown in Figure 11 As shown, the data transmission method based on dual transport blocks can be applied to a wireless uplink transmission scenario, and the UE transmits dual TB information (TB1, TB2) to the base station.

[0119] According to this preferred embodiment, in the UE, the double TB (TB1, TB2) is modulated into a complex symbol sequence S1 and S2 with a certain power, and after superposition, a complex symbol sequence S3 is generated. S3 is related to S1 and S2, and has the Gray attribute .

[0120]First, the UE divides the information bits to be transmitted into two parts, and each part generates a transport block according to a certain coding and modulation scheme (MCS), or in other words, generates a complex symbol sequence S1 with a certain power and a complex symbol sequence S2 with a certain power. The compl...

Embodiment 2

[0129] According to this preferred embodiment, in the UE, the double TB (TB1, TB2) is modulated into a complex symbol sequence S1 and S2 with a certain power, and after superposition, a complex symbol sequence S3 is generated. S3 is related to S1 and S2, and has the Gray attribute .

[0130] First, the UE divides the information bits to be transmitted into two parts, and each part generates a transport block according to a certain coding and modulation scheme (MCS), or in other words, generates a complex symbol sequence S1 with a certain power and a complex symbol sequence S2 with a certain power. The complex symbol sequence S1 is obtained by multiplying a power-normalized modulation symbol sequence by a power adjustment factor, and the complex symbol sequence S2 is obtained by multiplying a power-normalized modulation symbol sequence by a power adjustment factor. Suppose the power adjustment factor of S1 is The power adjustment factor of S2 is more than the Then the c...

Embodiment 3

[0139] Figure 16 is an abstract schematic diagram of wireless downlink transmission according to the third preferred embodiment of the present invention, as shown in Figure 16 As shown, the method can be applied to a wireless downlink transmission scenario, where the base station transmits dual TB information (TB1, TB2) to the UE.

[0140] According to this preferred embodiment, in the base station, the double TB (TB1, TB2) is modulated into a complex symbol sequence S1 and S2 with a certain power, and after being superimposed, a complex symbol sequence S3 is generated. S3 is related to S1 and S2, and has the Gray attribute .

[0141] First, the UE divides the information bits to be transmitted into two parts, and each part generates a transport block according to a certain coding and modulation scheme (MCS), or in other words, generates a complex symbol sequence S1 with a certain power and a complex symbol sequence S2 with a certain power. The complex symbol sequence S1 i...

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Abstract

The invention discloses a double-transmission-block data transmitting and receiving method and device, a transmitter, and a receiver. The method comprises the steps: dividing to-be-divided data into two parts, wherein the two parts are respectively processed in a corresponding preset coding and modulation mode to generate transmission blocks TB1 and TB2; enabling the transmission block TB1 to be modulated into a complex number symbol sequence S1 with certain power, and enabling the transmission block TB2 to be modulated into a complex number symbol sequence S2 with certain power; enabling the complex number symbol sequence S1 and S2 to be superposed and generating a complex number symbol sequence S3 corresponding to a new transmission block, wherein the complex number symbol sequence S3 corresponding to the new transmission block has Gray attributes; and transmitting the new transmission block to the receiver. The method improves the frequency spectrum efficiency, enables a symbol constellation point to have the Gray attributes after superposing, improves the SIC demodulation performance, and can distribute different powers to different data flows.

Description

technical field [0001] The present invention relates to the communication field, in particular, to a data sending and receiving method, device, transmitter and receiver of a double transmission block. Background technique [0002] In the communication between the base station and the UE, according to the channel conditions between the base station and the UE, one transmission block that can match the channel and have a certain Modulation Coding Scheme (MCS for short), that is, a certain spectral efficiency, can be transmitted at a time. Therefore, a cellular communication standard will clearly specify a set of coding and modulation methods to match different wireless channels. In actual communication, the actual channel quality may be very good. For example, if the UE is in the center of the cell, the channel quality at this time is higher than that required by the highest MCS in the standard. Under the existing MCS standard, when the SNR condition of the UE in the cell is ...

Claims

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Application Information

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IPC IPC(8): H04L1/00
CPCH04B1/1027H04L1/0003H04L1/0009H04L27/183H04L27/3416H04L27/3461H04L27/3488H04W52/04H04W52/16H04W52/346H04L2001/0098H04L27/3405H04L27/362H04B17/10H04B17/12H04B17/20H04L1/0004H04L1/0005H04L1/0058H04L27/0008H04L27/04
Inventor 袁志锋戴建强
Owner ZTE CORP