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LDPC encoder based on second-level partial parallel input accumulative left shift in CDR

A technology of encoder and encoding method, applied in the field of QC-LDPC encoder, which can solve the problems of slow encoding speed, large memory, and high circuit cost

Inactive Publication Date: 2017-09-22
RONGCHENG DINGTONG ELECTRONICS INFORMATION SCI & TECH CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This scheme has two disadvantages: one is that a large amount of memory is required, resulting in high circuit cost; the other is that the information bits are serially input, and the encoding speed is slow

Method used

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  • LDPC encoder based on second-level partial parallel input accumulative left shift in CDR
  • LDPC encoder based on second-level partial parallel input accumulative left shift in CDR
  • LDPC encoder based on second-level partial parallel input accumulative left shift in CDR

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Embodiment Construction

[0015] The preferred embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, so as to define the protection scope of the present invention more clearly.

[0016] The row and column weights of a circular matrix are the same, denoted as w. If w=0, then the circulant matrix is ​​an all-zero matrix. If w=1, then the circulant matrix is ​​permutable, called a permutation matrix, which can be obtained by cyclically shifting the identity matrix I to the right by several bits. The check matrix H of the QC-LDPC code is composed of c×t b×b order circulant matrices H j,k (1≤j≤c, 1≤k≤t, t=e+c) constitute the following array:

[0017]

[0018] Usually, any circulant matrix in the parity check matrix H is either an all-zero matrix (w=0) or a permutation matrix (w=1). Let the circular matrix H j,k the firs...

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Abstract

The invention provides a QC-LDPC encoder based on a two-stage pipeline in CDR, which includes a multiplier for a sparse matrix and a vector and a multiplier for a vector and a high-density matrix. The multiplier of sparse matrix and vector realizes the multiplication operation of sparse matrix and vector, and the multiplier of vector and high-density matrix adopts the mechanism of partial parallel input accumulation left shift to realize the multiplication operation of vector and high-density matrix. The entire encoding process is divided into two stages of pipeline. The 3 / 4 code rate QC-LDPC encoder in the CDR system provided by the present invention has the advantages of low cost, high throughput and the like.

Description

technical field [0001] The invention relates to the field of channel coding, in particular to a QC-LDPC coder in a CDR system with two-stage partial parallel input accumulation left shift. Background technique [0002] Low-Density Parity-Check (Low-Density Parity-Check, LDPC) code is one of efficient channel coding techniques, and Quasi-Cyclic LDPC (QC-LDPC) code is a special LDPC code. Both the generation matrix G and the check matrix H of the QC-LDPC code are arrays composed of circulant matrices, which have the characteristics of a segmented cycle, so they are called QC-LDPC codes. The first row of the circulant matrix is ​​the result of the cyclic right shift of the last row by 1 bit, and the remaining rows are the result of the cyclic right shift of the previous row by 1 bit. Therefore, the circulant matrix is ​​completely characterized by its first row. Usually, the first row of a circulant matrix is ​​called its generator polynomial. [0003] The CDR standard adopts...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03M13/11
CPCH03M13/1162
Inventor 刘明璐
Owner RONGCHENG DINGTONG ELECTRONICS INFORMATION SCI & TECH CO LTD
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