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Method for generating soft decision measurement in Turbo-STBC system

An implementation method and soft decision technology, applied in baseband system components, shaping networks in transmitters/receivers, and error prevention/detection through diversity reception, which can solve the problem of high hardware implementation complexity

Inactive Publication Date: 2013-09-25
BEIJING UNIV OF CHEM TECH
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AI Technical Summary

Problems solved by technology

The method is designed and implemented based on the FPGA (Field Programmable Gate Array, Field Programmable Logic Gate Array) platform, including an STBC decoding module and an LLR soft-decision metric generation module, which respectively implement STBC decoding and LLR operations, and when designing the LLR generation module Using a simple algorithm, it solves the problem of high hardware implementation complexity of the traditional LLR algorithm

Method used

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  • Method for generating soft decision measurement in Turbo-STBC system
  • Method for generating soft decision measurement in Turbo-STBC system
  • Method for generating soft decision measurement in Turbo-STBC system

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Embodiment Construction

[0024] Embodiments of the present invention will be further described below in conjunction with the accompanying drawings:

[0025] In the Turbo-STBC cascaded system composed of 2 transmitting antennas and 2 receiving antennas, the data is input into the STBC encoding module after Turbo encoding and modulation, and the STBC encoding module converts two continuous modulation symbols s 0 , s 1 Orthogonal encoding processing is performed to generate the transmit matrix:

[0026] S = S 0 - s 1 * s 1 s 0 * ...

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Abstract

The invention provides a method for generating LLR soft decision measurement in a Turbo-STBC system, wherein the Turbo-STBC system is composed of two transmitting antennas and two receiving antennas. The method is achieved through the fact that an LLR generator module is designed to be arranged on an FPGA. In a Turbo-STBC cascade system, an LLR generator enables baseband signals of a receiving end to be decoded through an STBC decoder and then inputs the baseband signals to an LLR arithmetic unit for calculations, and generated LLR soft decision measurement is used as the input of a follow-up Turbo soft decision decoder for conducting Turbo decoding. When an internal arithmetic module is designed, a parallel arithmetic idea is completely used, and the throughput of the system is improved. A hardware reusing technology is used in the design of the STBC decoder, the arithmetic unit function is guaranteed to be achieved, and meanwhile the consumption to hardware resources of the arithmetic unit is saved. A simple algorithm is used in the design of the LLR arithmetic unit, and compared with a traditional algorithm, the complexity for achieving arithmetic unit hardware is lowered.

Description

technical field [0001] The present invention relates to the field of wireless communication, and more particularly relates to a method for realizing the generation of LLR (Log likelihood Ratio, log likelihood ratio) soft decision metric in a Turbo-STBC (Space Time Block Code, space-time block code) system. Background technique [0002] As a channel coding scheme that can approach the Shannon limit, Turbo codes are widely used in wireless communication systems due to their excellent performance. Turbo codes organically combine convolutional codes and random interleavers to achieve random coding. The decoder passes Using soft-input and soft-output iterative decoding to approximate maximum likelihood decoding can obtain higher decoding gain. [0003] STBC is a transmit diversity coding method commonly used in MIMO (Multiple Input Multiple Output) multi-antenna systems. There is a big improvement. In the Turbo-STBC cascaded system, the transmitting end encodes the modulated da...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04L25/03H04L1/06
Inventor 何苏勤陈皓吕英明翟海超汪正波刘兵仉乾隆
Owner BEIJING UNIV OF CHEM TECH
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