IP Library › Granted Patent US 10,396,820
Granted Patent B2
US 10,396,820 · App. 15/346,646 · Granted Aug 27, 2019

Modulator and modulation method using non-uniform 16-symbol signal constellation for low-density parity check codeword having 3/15 code rate

Inventors: Sung-Ik Park (Daejeon, KR); Sun-Hyoung Kwon (Daejeon, KR); Jae-Young Lee (Daejeon, KR); Heung-Mook Kim (Daejeon, KR); Nam-Ho Hur (Sejong, KR)
Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
H03M13/1165H03M13/255H03M13/2792H03M13/616H03M13/6552H04L1/0041H04L1/0042H04L1/0058H04L1/0071H04L27/3422H04L1/0057
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Quick Facts
Patent No.
US 10,396,820
App. No.
15/346,646
Granted
Aug 27, 2019
Kind
B2
Abstract

A modulator and a modulation method using a non-uniform 16-symbol signal constellation are disclosed. The modulator includes a memory and a processor. The memory receives a codeword corresponding to a low-density parity check (LDPC) code having a code rate of 3/15. The processor maps the codeword to 16 symbols of the non-uniform 16-symbol signal constellation on a 4-bit basis.

Claims (45)

1. A digital broadcasting method, comprising:

generating a codeword corresponding to a low-density parity check (LDPC) code having a code rate of 3/15 by encoding information bits;

interleaving the codeword on a bit group basis;

performing 16-symbol mapping using 16 symbols of a non-uniform 16-symbol signal constellation on a 4-bit basis after interleaving the codeword, the 16 symbols being for the LDPC code having the code rate of 3/15;

adjusting at least one of amplitude and phase of a carrier in accordance with the 16-symbol mapping to generate a modulated signal; and

broadcasting, by an antenna, a transmission signal based on the modulated signal over a physical channel,

wherein the 16 symbols are defined as shown in the following Table:

TABLE

w

Constellation

0

 0.3620 + 0.5534i

1

 0.5534 + 0.3620i

2

 0.5940 + 1.1000i

3

 1.1000 + 0.5940i

4

−0.3620 + 0.5534i

5

−0.5534 + 0.3620i

6

−0.5940 + 1.1000i

7

−1.1000 + 0.5940i

8

 0.3620 − 0.5534i

9

 0.5534 − 0.3620i

10

 0.5940 − 1.1000i

11

 1.1000 − 0.5940i

12

−0.3620 − 0.5534i

13

−0.5534 − 0.3620i

14

−0.5940 − 1.1000i

15

 −1.1000 − 0.5940i.

2. The digital broadcasting method of claim 1 , wherein the 16 symbols have non-uniform distances therebetween, and comprise a first group of four symbols of a 1st quadrant, a second group of four symbols symmetric to the four symbols of the first group with respect to an imaginary axis, a third group of four symbols symmetric to the four symbols of the first group with respect to an origin, and a fourth group of four symbols symmetric to the four symbols of the first group with respect to a real axis.

3. The digital broadcasting method of claim 2 , wherein a vector corresponding to the four symbols w 0 , w 1 , w 2 , and w 3 of the first group is w, a vector corresponding to the four symbols w 4 , w 5 , w 6 and w 7 of the second group is −conj(w) (conj(w) is a function that outputs conjugate complex numbers of all elements of w), a vector corresponding to the four symbols w 12 , w 13 , w 14 and w 15 of the third group is −w, and a vector corresponding to the four symbols w 8 , w 9 , w 10 and w 11 of the fourth group is conj(w).

4. The digital broadcasting method of claim 3 , wherein the four symbols of the first group are w 0 , w 1 , w 2 and w 3 , |real(w 0 )|=|imaginary(w 1 )| (real(i) is a function that outputs a real component of i, imaginary(i) is a function that outputs an imaginary component of i, and i is an arbitrary complex number), |real(w 1 )|=|imaginary(w 0 )|, |real(w 2 )|=|imaginary(w 3 )|, and |real(w 3 )|=|imaginary(w 2 )|.

Priority Claims (2)
KR 10-2014-0016863 · Feb 13, 2014 · national
KR 10-2015-0018675 · Feb 6, 2015 · national
Continuity (2)
Continuation 14618972 · Feb 10, 2015
Related Publication 20170054452A1 · Feb 23, 2017