IP Library Granted Patent US 11,316,535
Granted Patent B2
US 11,316,535 · App. 16/523,369 · Granted Apr 26, 2022

Method and apparatus for encoding and decoding of low density parity check codes

Inventors: Hong-sil Jeong (Suwon-si, KR); Se-ho Myung (Yongin-si, KR); Kyung-joong Kim (Suwon-si, KR)
Assignee: SAMSUNG ELECTRONICS CO., LTD.
H03M13/1165H03M13/255H03M13/2906H03M13/6552H03M13/036H03M13/152
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Quick Facts
Patent No.
US 11,316,535
App. No.
16/523,369
Granted
Apr 26, 2022
Kind
B2
Abstract

An encoding apparatus is provided. The encoding includes a low density parity check (LDPC) encoder which performs LDPC encoding on input bits based on a parity-check matrix to generate an LDPC codeword formed of 64,800 bits, in which the parity-check matrix includes an information word sub-matrix and a parity sub-matrix, the information word sub-matrix is formed of a group of a plurality of column blocks each including 360 columns, and the parity-check matrix and the information word sub-matrix are defined by various tables which represent positions of value one (1) present in every 360-th column.

Claims (215)

1. A television (TV) broadcast signal transmitting method for transmitting TV broadcast data, the transmitting method comprising:

encoding input bits to generate parity bits using a matrix;

interleaving a codeword comprising the input bits and the parity bits;

mapping bits of the interleaved codeword to constellation points;

generating a TV broadcast signal based on the mapped constellation points using orthogonal frequency division multiplexing (OFDM) processing; and

transmitting the generated TV broadcast signal,

wherein the input bits are based on the TV broadcast data,

wherein the matrix is obtained based on parity indices of a low density parity check (LDPC) code, a code rate of the LDPC code being 6/15 and a code length of the LDPC code being 64800 bits, and

wherein the parity indices are represented by a table below:

1606 3402 4961 6751 7132 11516 12300 12482

12592 13342 13764 14123 21576 23946 24533 25376

25667 26836 31799 34173 35462 36153 36740 37085

37152 37468 37658

4621 5007 6910 8732 9757 11508 13099 15513 16335

18052 19512 21319 23663 25628 27208 31333 32219

33003 33239 33447 36200 36473 36938 37201 37283

37495 38642

16 1094 2020 3080 4194 5098 5631 6877 7889 8237

9804 10067 11017 11366 13136 13354 15379 18934

20199 24522 26172 28666 30386 32714 36390 37015 37162

700 897 1708 6017 6490 7372 7825 9546 10398 16605

18561 18745 21625 22137 23693 24340 24966 25015

26995 28586 28895 29687 33938 34520 34858 37056 38297

159 2010 2573 3617 4452 4958 5556 5832 6481 8227

9924 10836 14954 15594 16623 18065 19249 22394

22677 23408 23731 24076 24776 27007 28222 30343 38371

3118 3545 4768 4992 5227 6732 8170 9397 10522 11508

15536 20218 21921 28599 29445 29758 29968 31014

32027 33685 34378 35867 36323 36728 36870 38335 38623

1264 4254 6936 9165 9486 9950 10861 11653 13697

13961 15164 15665 18444 19470 20313 21189 24371

26431 26999 28086 28251 29261 31981 34015 35850 36129

37186

111 1307 1628 2041 2524 5358 7988 8191 10322 11905

12919 14127 15515 15711 17061 19024 21195 22902

23727 24401 24608 25111 25228 27338 35398 37794 38196

961 3035 7174 7948 13355 13607 14971 18189 18339

18665 18875 19142 20615 21136 21309 21758 23366

24745 25849 25982 27583 30006 31118 32106 36469 36583

37920

2990 3549 4273 4808 5707 6021 6509 7456 8240 10044

12262 12660 13085 14750 15680 16049 21587 23997

25803 28343 28693 34393 34860 35490 36021 37737 38296

955 4323 5145 6885 8123 9730 11840 12216 19194

20313 23056 24248 24830 25268 26617 26801 28557

29753 30745 31450 31973 32839 33025 33296 35710 37366

37509

264 605 4181 4483 5156 7238 8863 10939 11251 12964

16254 17511 20017 22395 22818 23261 23422 24064

26329 27723 28186 30434 31956 33971 34372 36764 38123

520 2562 2794 3528 3860 4402 5676 6963 8655 9018

9783 11933 16336 17193 17320 19035 20606 23579

23769 24123 24966 27866 32457 34011 34499 36620 37526

10106 10637 10906 34242

1856 15100 19378 21848

943 11191 27806 29411

4575 6359 13629 19383

4476 4953 18782 24313

5441 6381 21840 35943

9638 9763 12546 30120

9587 10626 11047 25700

4088 15298 28768 35047

2332 6363 8782 28863

4625 4933 28298 30289

3541 4918 18257 31746

1221 25233 26757 34892

8150 16677 27934 30021

8500 25016 33043 38070

7374 10207 16189 35811

611 18480 20064 38261

25416 27352 36089 38469

1667 17614 25839 32776

4118 12481 21912 37945

5573 13222 23619 31271

18271 26251 27182 30587

14690 26430 26799 34355

13688 16040 20716 34558

2740 14957 23436 32540

3491 14365 14681 36858

4796 6238 25203 27854

1731 12816 17344 26025

19182 21662 23742 27872

6502 13641 17509 34713

12246 12372 16746 27452

1589 21528 30621 34003

12328 20515 30651 31432

3415 22656 23427 36395

632 5209 25958 31085

619 3690 19648 37778

9528 13581 26965 36447

2147 26249 26968 28776

15698 18209 30683

1132 19888 34111

4608 25513 38874

475 1729 34100

7348 32277 38587

182 16473 33082

3865 9678 21265

4447 20151 27618

6335 14371 38711

704 9695 28858

4856 9757 30546

1993 19361 30732

756 28000 29138

3821 24076 31813

4611 12326 32291

7628 21515 34995

1246 13294 30068

6466 33233 35865

14484 23274 38150

21269 36411 37450

23129 26195 37653.

2. The TV broadcast signal transmitting method of claim 1 , wherein the matrix has a cyclic structure.

3. The TV broadcast signal transmitting method of claim 1 , wherein a predetermined number which is differently set according to the code rate and the code length is 108 when the code rate is 6/15 and the code length is 64800 bits.

4. The TV broadcast signal transmitting method of claim 1 , wherein the parity bits are generated by initiating parity bits, accumulating the input bits to the initiated parity bits based on the matrix, and performing a bit operation based on an accumulated parity bit of a parity index x and an accumulated parity bit of a parity index x−1 to output an parity bit of the parity index x,

where x is a value among values which are greater than 0 and are less than a number of parity bits.

5. The TV broadcast signal transmitting method of claim 4 , wherein the matrix is represented by q (i, j, 1) generated based on a following relationship:

q ( i,j, 1)= q ( i,j, 0)+ Q ldpc ×1(mod M inner ) for 0<1<360

where Q ldpc is a coding parameter determined by the code rate of the LDPC code and the code length of the LDPC code, M inner is the number of parity bits, q(i,j,0) is a parity index represented by a j-th entry in an i-th row of the table, i indicates an index of a row in the table, and j indicates an index of an entry in the row.

6. The TV broadcast signal transmitting method of claim 5 , wherein the input bits are accumulated to the initiated parity bits based on a following relationship,

p q(i,w(i),1) =p q(i,w(i),1) + s k ,

where s k indicates k-th input bit from among the input bits, p q(i, w(i), 1) indicates q(i, w(i), 1)-th parity bit from among the initiated parity bits, k is a value among values which are greater than or equal to 0 and are less than a number of the input bits, i=└k/360┘, 1=k mod 360), and w(i)=j.

7. A receiving method comprising:

receiving a signal from a transmitting apparatus;

demodulating the signal to generate values;

deinterleaving the values; and

decoding the deinterleaved values based on a matrix of a low density parity check (LDPC) code, a code rate of the LDPC code being 6/15 and a code length of the LDPC code being 64800 bits,

wherein the matrix is obtained based on parity indices, and

wherein the parity indices are represented by a table below:

1606 3402 4961 6751 7132 11516 12300 12482 12592 13342 13764 14123 21576 23946 24533

25376 25667 26836 31799 34173 35462 36153 36740 37085 37152 37468 37658

4621 5007 6910 8732 9757 11508 13099 15513 16335 18052 19512 21319 23663 25628 27208

31333 32219 33003 33239 33447 36200 36473 36938 37201 37283 37495 38642

16 1094 2020 3080 4194 5098 5631 6877 7889 8237 9804 10067 11017 11366 13136 13354

15379 18934 20199 24522 26172 28666 30386 32714 36390 37015 37162

700 897 1708 6017 6490 7372 7825 9546 10398 16605 18561 18745 21625 22137 23693

24966 25015 26995 28586 28895 29687 33938 34520 34858 37056 38297

159 2010 2573 3617 4452 4958 5556 5832 6481 8227 9924 10836 14954 15594 16623 18065

19249 22394 22677 23408 23731 24076 24776 27007 28222 30343 38371

3118 3545 4768 4992 5227 6732 8170 9397 10522 11508 15536 20218 21921 28599 29445

29758 29968 31014 32027 33685 34378 35867 36323 36728 36870 38335 38623

1264 4254 6936 9165 9486 9950 10861 11653 13697 13961 15164 15665 18444 19470 20313

21189 24371 26431 26999 28086 28251 29261 31981 34015 35850 36129 37186

111 1307 1628 2041 2524 5358 7988 8191 10322 11905 12919 14127 15515 15711 17061 19024

21195 22902 23727 24401 24608 25111 25228 27338 35398 37794 38196

961 3035 7174 7948 13355 13607 14971 18189 18339 18665 18875 19142 20615 21136 21309

21758 23366 24745 25849 25982 27583 30006 31118 32106 36469 36583 37920

2990 3549 4273 4808 5707 6021 6509 7456 8240 10044 12262 12660 13085 14750 15680 16049

21587 23997 25803 28343 28693 34393 34860 35490 36021 37737 38296

955 4323 5145 6885 8123 9730 11840 12216 19194 20313 23056 24248 24830 25268 26617

26801 28557 29753 30745 31450 31973 32839 33025 33296 35710 37366 37509

264 605 4181 4483 5156 7238 8863 10939 11251 12964 16254 17511 20017 22395 22818 23261

23422 24064 26329 27723 28186 30434 31956 33971 34372 36764 38123

520 2562 2794 3528 3860 4402 5676 6963 8655 9018 9783 11933 16336 17193 17320 19035

20606 23579 23769 24123 24966 27866 32457 34011 34499 36620 37526

10106 10637 10906 34242

1856 15100 19378 21848

943 11191 27806 29411

4575 6359 13629 19383

4476 4953 18782 24313

5441 6381 21840 35943

9638 9763 12546 30120

9587 10626 11047 25700

4088 15298 28768 35047

2332 6363 8782 28863

4625 4933 28298 30289

3541 4918 18257 31746

1221 25233 26757 34892

8150 16677 27934 30021

8500 25016 33043 38070

7374 10207 16189 35811

611 18480 20064 38261

25416 27352 36089 38469

1667 17614 25839 32776

4118 12481 21912 37945

5573 13222 23619 31271

18271 26251 27182 30587

14690 26430 26799 34355

13688 16040 20716 34558

2740 14957 23436 32540

3491 14365 14681 36858

4796 6238 25203 27854

1731 12816 17344 26025

19182 21662 23742 27872

6502 13641 17509 34713

12246 12372 16746 27452

1589 21528 30621 34003

12328 20515 30651 31432

3415 22656 23427 36395

632 5209 25958 31085

619 3690 19648 37778

9528 13581 26965 36447

2147 26249 26968 28776

15698 18209 30683

1132 19888 34111

4608 25513 38874

475 1729 34100

7348 32277 38587

182 16473 33082

3865 9678 21265

4447 20151 27618

6335 14371 38711

704 9695 28858

4856 9757 30546

1993 19361 30732

756 28000 29138

3821 24076 31813

4611 12326 32291

7628 21515 34995

1246 13294 30068

6466 33233 35865

14484 23274 38150

21269 36411 37450

23129 26195 37653.

8. The receiving method of claim 7 , wherein the matrix has a cyclic structure.

Priority Claims (1)
KR 10-2014-0058599 · May 15, 2014 · national
Continuity (5)
Continuation 14303834 · Jun 13, 2014
Provisional Application 61862208 · Aug 5, 2013
Provisional Application 61841502 · Jul 1, 2013
Provisional Application 61835096 · Jun 14, 2013
Related Publication 20190349008A1 · Nov 14, 2019
Cited By (1)
US 12,609,785