Communication device and communication method
10862608 ยท 2020-12-08
Assignee
Inventors
Cpc classification
H04J11/0069
ELECTRICITY
H04J13/0003
ELECTRICITY
International classification
H04L25/02
ELECTRICITY
Abstract
A communication device and a communication method are provided. The communication device includes: a processor configured to generate a Golay complementary set, and a modulator configured to modulate the Golay complementary set to a carrier. Herein, the generated Golay complementary set is generated by using an algebraic structure and has an elastic length, and is adapted to communication application such as channel estimation or signal synchronization.
Claims
1. A communication device, comprising: a processor, configured to generate a Golay complementary set; and a modulator, configured to modulate the Golay complementary set to a carrier, wherein the Golay complementary set is .sub.q, m and v are positive integers, q is a positive even number, m2, k<m, 0vmk, is an arrangement of {1, 2, . . . , m}, and the following conditions are met: condition 1: (mk+1)<(mk+2)< . . . <(m1)<(m)=m; condition 2: if v>0, then {(1), (2), . . . , (v)}={1, 2, . . . , v}, or v=0; and condition 3: for all =1, 2, . . . , k1, if (t)<(mk+), then (t1)<(mk+), wherein 2tmk, wherein the Golay complementary set is generated without a need to store each sequence of the Golay complementary set in a memory, thereby reducing storage hardware costs.
2. The communication device according to claim 1, wherein the Golay complementary set serves as a synchronization sequence.
3. The communication device according to claim 1, wherein the Golay complementary set serves as a channel estimation sequence.
4. A communication device, comprising: a demodulator, configured to receive a signal and demodulate the signal into a Golay complementary set; and a processor, configured to perform channel estimation or signal synchronization according to the Golay complementary set, wherein the Golay complementary set is .sub.q, m and v are positive integers, q is a positive even number, m2, k<m, 0vmk, it is an arrangement of {1, 2, . . . , m}, and the following conditions are met: condition 1: (mk+1)<(mk+2)< . . . <(m1)<(m)=m; condition 2: if v>0, then {(1), (2), . . . , (v)}={1, 2, . . . , v}, or v=0; and condition 2: for all =1, 2, . . . , k1, if (t)<(mk+), then (t1)<(mk+), wherein 2tmk, wherein the Golay complementary set is generated without a need to store each sequence of the Golay complementary set in a memory, thereby reducing storage hardware costs.
5. A communication method, comprising: generating a Golay complementary set; and modulating the Golay complementary set to a carrier, wherein the Golay complementary set is and .sub.q, m and v are positive integers, q is a positive even number, m2, k<m, 0vmk, is an arrangement of {1, 2, . . . , m}, and the following conditions are met: condition 1: (mk+1)<(mk+2)< . . . <(m1)<(m)=m; condition 2: if v>0, then {(1), (2), . . . , (v)}={1, 2, . . . , v}, or v=0; and condition 2: for all =1, 2, . . . , k1, if (t)<(mk+), then (t1)<(mk+), wherein 2tmk, wherein the Golay complementary set is generated without a need to store each sequence of the Golay complementary set in a memory, thereby reducing storage hardware costs.
6. The communication method according to claim 5, wherein the Golay complementary set serves as a synchronization sequence.
7. The communication method according to claim 5, wherein the Golay complementary set serves as a channel estimation sequence.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
DETAILED DESCRIPTION
(3) According to a communication device and a communication method provided in the present invention, Golay complementary sets (GCSs) having elastic lengths can be constructed, and lengths thereof are no longer limited to lengths of powers of two, and construction is performed by using an algebraic method, so that each sequence set does not need to be additionally stored by using a memory.
(4) An algebraic structure of the Golay complementary set is described herein. The Golay complementary set is
(5)
and the length of the Golay complementary set is 2.sup.m1+.sub.=1.sup.k1.sub.2.sup.(mk+)1+2.sup.v. The size of the Golay complementary set is 2.sup.k+1 that is, there are 2.sup.k+1 sequences in the Golay complementary set. Herein, S is a sequence constructed by a generalized Boolean function f. The generalized Boolean function is
(6)
where a.sub., d.sub. {0,1}, .sub.,i, g.sub.i .sub.q, m and v are positive integers, q is a positive even number, m2, k<m, 0vmk, is an arrangement of {1, 2, . . . , m}. In addition, the following conditions are met: (1) (mk+1)<(mk+2)< . . . <(m1)<(m)=m; (2) if v>0, then {(1), (2), . . . , (v)}={1, 2, . . . , v}, or v=0; and (3) for all =1, 2, . . . , k1, if (t)<(mk+), then (t1)<(mk+), where 2tmk.
(7) For example, when q=2, m=5, k=2, and (1)=1, (2)=2, (3)=3, (4)=4, and (5)=5, it is assumed that the Boolean function is f=x.sub.1x.sub.2+x.sub.2x.sub.3, the Golay complementary set is {S, S+x.sub.1, S+x.sub.4, S+x.sub.5, S+x.sub.1+x.sub.4, S+x.sub.1+x.sub.5, S+x.sub.4+x.sub.5, S+x.sub.1+x.sub.4+x.sub.5}. In this case, (4)<(5)=5, and the foregoing condition (1) is met. Moreover, for t=2, 3, (t)<(mk+1)=(4)=4, and (t1)<(4), and the foregoing condition (3) is met. Furthermore, obviously, v=1, 2, 3 also meets the foregoing condition (2). Therefore, the Golay complementary set whose size is 8 is constructed with a length of 2.sup.4+a.sub.12.sup.3+2.sup.v, a.sub.1 {0,1}, and v {0,1,2,3}. For example, if a.sub.1 and v are 0, then the length is 16+0+1=17; if a1 is 1 and v is 2, then the length is 16+8+4=28. Therefore, the Golay complementary sets having lengths of 17, 18, 20, 24, 25, 26, 28, and 32 may be constructed. The peak-to-average power ratios (PAPRs) of the Golay complementary sets are respectively 4.76, 5.56, 5, 6, 6.76, 7.54, 7, and 8.
(8) Next, an application manner of the foregoing Golay complementary set is described. FIG. 1 is a schematic block diagram of a communication device according to an embodiment of the present invention. In this example, a communication device 100 sends a wireless signal to a communication device 200. The communication device 100 includes a processor 120 and a modulator 140 coupled to each other. The communication device 200 includes a processor 220 and a demodulator 240 coupled to each other. However, in some embodiments, the communication device 100 may also include a demodulator to serve as a signal receiving end, whereas the communication device 200 may also include a modulator to serve as a signal transmitting end.
(9) Reference is made to both
(10) The demodulator 240 of the communication device 200 performs demodulation after receiving the signal. The processor 220 of the communication device 200 may perform channel estimation, signal synchronization, or the like by using the demodulated Golay complementary set. For example, using a 4G LTE-A system as an example, the sequence length of the synchronization signal is 62. Using a 3GPP NB-IoT technology as an example, first and second synchronization signals use Zadoff-Chu sequences whose lengths are respectively 11 and 132. In the construction manner of the present invention, Golay complementary sets having the same length can also be generated, that is, 8+2+1=11 and 128+4=132.
(11) In some embodiments, the Golay complementary set may serve as a channel estimation sequence.
(12) In conclusion, the embodiments of the present invention provide a communication device and a communication method, so that a Golay complementary set having an elastic length can be constructed by using an algebraic structure, and wider application requirements can be met, and storage hardware costs can be reduced.