IP Library Granted Patent US 12,192,921
Granted Patent B2
US 12,192,921 · App. 17/160,248 · Granted Jan 7, 2025

Synchronization signal transmission method and terminal

Inventors: Siqi Liu (Chang'an Dongguan, CN); Zichao Ji (Chang'an Dongguan, CN); Kai Wu (Chang'an Dongguan, CN)
Assignee: VIVO MOBILE COMMUNICATION CO., LTD.
H04W56/001H04L5/0053H04L5/0094
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,192,921
App. No.
17/160,248
Granted
Jan 7, 2025
Kind
B2
Abstract

A synchronization signal transmission method and a terminal are provided. The synchronization signal transmission method, applied to a terminal, includes: transmitting or receiving a sidelink synchronization signal block, where the sidelink synchronization signal block includes: a primary sidelink synchronization signal PSSS and a secondary sidelink synchronization signal SSSS, the PSSS and the SSSS being distributed in orthogonal frequency division multiplexing OFDM symbols occupied by the sidelink synchronization signal block.

Claims (103)

1. A synchronization signal transmission method, applied to a terminal side, comprising:

transmitting or receiving a sidelink synchronization signal block,

wherein the sidelink synchronization signal block comprises: a primary sidelink synchronization signal PSSS and a secondary sidelink synchronization signal SSSS, the PSSS and the SSSS being distributed in orthogonal frequency division multiplexing OFDM symbols occupied by the sidelink synchronization signal block according to a preset rule, wherein the preset rule comprises at least one of the following:

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block; or,

one of the PSSS and the SSSS is located in the fourth symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

wherein when one slot comprises candidate time domain locations of at least two sidelink synchronization signal blocks, and the subcarrier spacing is a second spacing, and one slot comprises candidate time domain locations of two sidelink synchronization signal blocks, an OFDM symbol index corresponding to the first symbol of candidate time domain locations of each of the two sidelink synchronization signal blocks is x+14n or y+14n,

wherein 0≤n<m; m is a maximum number of slots occupied by a sidelink synchronization signal block; and n=0 corresponds to the first OFDM symbol of the first slot comprising candidate time domain locations of a sidelink synchronization signal block, a value of x is set to 0, and a value of y is set to 6 or 7;

wherein when one slot comprises candidate time domain locations of a sidelink synchronization signal block, the preset rule comprises at least one of the following:

one of the PSSS and the SSSS is located in the third and fourth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the eleventh and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and third OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the twelfth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fifth and seventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the tenth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and sixth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the ninth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and eleventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot; or,

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot.

2. The synchronization signal transmission method according to claim 1 , wherein when one slot comprises candidate time domain locations of two sidelink synchronization signal blocks, an OFDM symbol index corresponding to the first symbol of candidate time domain locations of each of the two sidelink synchronization signal blocks is 14n or 7+14n,

wherein 0≤n<m; m is a maximum number of slots occupied by sidelink synchronization signal block; and n=0 corresponds to the first OFDM symbol of the first slot comprising candidate time domain locations of a sidelink synchronization signal block.

3. The synchronization signal transmission method according to claim 1 , wherein when the number of OFDM symbols occupied by a sidelink synchronization signal block is greater than or equal to 5, the preset rule is:

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block.

4. The synchronization signal transmission method according to claim 1 , wherein when the number of OFDM symbols occupied by a sidelink synchronization signal block is greater than or equal to 6, the preset rule is at least one of the following:

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block; or,

one of the PSSS and the SSSS is located in the fourth symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block.

5. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is a first spacing, and one slot comprises candidate time domain locations of two sidelink synchronization signal blocks, an OFDM symbol index corresponding to the first symbol of candidate time domain locations of each of the two sidelink synchronization signal blocks is 14n or 7+14n,

wherein 0≤n<m; m is a maximum number of slots occupied by sidelink synchronization signal block; and n=0 corresponds to the first OFDM symbol of the first slot comprising candidate time domain locations of a sidelink synchronization signal block.

6. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is a first spacing, and a number of OFDM symbols occupied by a sidelink synchronization signal block is greater than or equal to 5, the preset rule is:

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block.

7. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is a first spacing, and a number of OFDM symbols occupied by a sidelink synchronization signal block is greater than or equal to 6, the preset rule is at least one of the following:

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block; or,

one of the PSSS and the SSSS is located in the fourth symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block.

8. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is a second spacing, and a number of OFDM symbols occupied by a sidelink synchronization signal block is greater than or equal to 6, the preset rule is at least one of the following:

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block; or,

one of the PSSS and the SSSS is located in the fourth symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block.

9. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is 120 kHz, and a number of OFDM symbols occupied by a sidelink synchronization signal block is greater than or equal to 5, the preset rule comprises:

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block.

10. The synchronization signal transmission method according to claim 1 , when the preset rule is: one of the PSSS and the SSSS is located in the third and fourth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the eleventh and twelfth OFDM symbols of one slot; or

when one of the PSSS and the SSSS is located in the second and third OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the twelfth and thirteenth OFDM symbols of one slot, the sixth and ninth OFDM symbols of one slot is used for transmitting or receiving a demodulation reference signal.

11. The synchronization signal transmission method according to claim 1 , wherein when at least two candidate time domain locations of sidelink synchronization signal blocks are consecutive in time domain, and sidelink synchronization signal blocks have been transmitted or received on at least the candidate time domain locations of the sidelink synchronization signal blocks, transmission directions of the sidelink synchronization signal blocks on the candidate time domain locations of the at least two sidelink synchronization signal blocks are the same.

12. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is a third spacing, the preset rule is at least one of the following:

one of the PSSS and the SSSS is located in the third and sixth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the ninth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot; or,

one of the PSSS and the SSSS is located in the fourth and eleventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot.

13. The synchronization signal transmission method according to claim 1 , wherein when the subcarrier spacing is a fourth spacing, the preset rule is at least one of the following:

one of the PSSS and the SSSS is located in the third and fourth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the eleventh and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot; or,

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot.

14. A terminal, comprising a memory, a processor, and a program stored in the memory and capable of running on the processor, wherein when the program is executed by the processor, steps of a synchronization signal transmission method are implemented, wherein the synchronization signal transmission method comprises:

transmitting or receiving a sidelink synchronization signal block,

wherein the sidelink synchronization signal block comprises: a primary sidelink synchronization signal PSSS and a secondary sidelink synchronization signal SSSS, the PSSS and the SSSS being distributed in orthogonal frequency division multiplexing OFDM symbols occupied by the sidelink synchronization signal block according to a preset rule, wherein the preset rule comprises at least one of the following:

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block; or,

one of the PSSS and the SSSS is located in the fourth symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

wherein when one slot comprises candidate time domain locations of at least two sidelink synchronization signal blocks, and the subcarrier spacing is a second spacing, and one slot comprises candidate time domain locations of two sidelink synchronization signal blocks, an OFDM symbol index corresponding to the first symbol of candidate time domain locations of each of the two sidelink synchronization signal blocks is x+14n or y+14n,

wherein 0≤n<m; m is a maximum number of slots occupied by a sidelink synchronization signal block; and n=0 corresponds to the first OFDM symbol of the first slot comprising candidate time domain locations of a sidelink synchronization signal block, a value of x is set to 0, and a value of y is set to 6 or 7;

wherein when one slot comprises candidate time domain locations of a sidelink synchronization signal block, the preset rule comprises at least one of the following:

one of the PSSS and the SSSS is located in the third and fourth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the eleventh and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and third OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the twelfth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fifth and seventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the tenth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and sixth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the ninth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and eleventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot; or,

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot.

15. A non-transitory computer-readable storage medium, wherein the non-transitory computer-readable storage medium stores a program, and when the program is executed by a processor, steps of a synchronization signal transmission method are implemented, wherein the synchronization signal transmission method comprises:

transmitting or receiving a sidelink synchronization signal block,

wherein the sidelink synchronization signal block comprises: a primary sidelink synchronization signal PSSS and a secondary sidelink synchronization signal SSSS, the PSSS and the SSSS being distributed in orthogonal frequency division multiplexing OFDM symbols occupied by the sidelink synchronization signal block according to a preset rule, wherein the preset rule comprises at least one of the following:

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the fifth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the second symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

one of the PSSS and the SSSS is located in the third symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block; or,

one of the PSSS and the SSSS is located in the fourth symbol of a sidelink synchronization signal block, and the other of the PSSS and the SSSS is located in the sixth symbol of the sidelink synchronization signal block;

wherein when one slot comprises candidate time domain locations of at least two sidelink synchronization signal blocks, and the subcarrier spacing is a second spacing, and one slot comprises candidate time domain locations of two sidelink synchronization signal blocks, an OFDM symbol index corresponding to the first symbol of candidate time domain locations of each of the two sidelink synchronization signal blocks is x+14n or y+14n,

wherein 0≤n<m; m is a maximum number of slots occupied by a sidelink synchronization signal block; and n=0 corresponds to the first OFDM symbol of the first slot comprising candidate time domain locations of a sidelink synchronization signal block, a value of x is set to 0, and a value of y is set to 6 or 7;

wherein when one slot comprises candidate time domain locations of a sidelink synchronization signal block, the preset rule comprises at least one of the following:

one of the PSSS and the SSSS is located in the third and fourth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the eleventh and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and third OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the twelfth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fifth and seventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the tenth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and sixth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the ninth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the second and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and eleventh OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and thirteenth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the third and ninth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot;

one of the PSSS and the SSSS is located in the fourth and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the sixth and twelfth OFDM symbols of one slot; or,

one of the PSSS and the SSSS is located in the third and tenth OFDM symbols of one slot, and the other of the PSSS and the SSSS is located in the fifth and twelfth OFDM symbols of one slot.

16. The terminal according to claim 15 , wherein when one slot comprises candidate time domain locations of two sidelink synchronization signal blocks, an OFDM symbol index corresponding to the first symbol of candidate time domain locations of each of the two sidelink synchronization signal blocks is 14n or 7+14n,

wherein 0≤n<m; m is a maximum number of slots occupied by sidelink synchronization signal block; and n=0 corresponds to the first OFDM symbol of the first slot comprising candidate time domain locations of a sidelink synchronization signal block.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2021
From: LIU, SIQI; JI, ZICHAO; WU, KAI
To: VIVO MOBILE COMMUNICATION CO.,LTD.
Reel/Frame 055169/0746 →
Priority Claims (1)
CN 201810856303.1 · Jul 27, 2018 · national
Continuity (2)
Continuation PCTCN2019096338 · Jul 17, 2019
Related Publication 20210153146A1 · May 20, 2021
References Cited (33)
US 20160174174A1 · Chae et al. · 2016 [cited by applicant]
US 20170013577A1 · Berggren · 2017 [cited by applicant]
US 20170055234A1 · Seo et al. · 2017 [cited by applicant]
US 20170245229A1 · Seo et al. · 2017 [cited by applicant]
US 20170272299A1 · Chae et al. · 2017 [cited by applicant]
US 20180019904A1 · Lee et al. · 2018 [cited by applicant]
US 20180054788A1 · Kwon et al. · 2018 [cited by applicant]
US 20180092002A1 · Manolakos et al. · 2018 [cited by applicant]
US 20180098299A1 · Chae · 2018 [cited by applicant]
US 20180270776A1 · Yasukawa et al. · 2018 [cited by applicant]
US 20180302202A1 · Kim · 2018 [cited by examiner]
US 20180352525A1 · Li et al. · 2018 [cited by applicant]
US 20200015214A1 · Si · 2020 [cited by examiner]
CN 106797265A · 2017 [cited by applicant]
CN 107113552A · 2017 [cited by applicant]
CN 107734557A · 2018 [cited by applicant]
CN 108141340A · 2018 [cited by applicant]
EP 3099123A1 · 2016 [cited by applicant]
EP 3142273A1 · 2017 [cited by examiner]
EP 3190732A1 · 2017 [cited by applicant]
KR 20160060695A · 2016 [cited by applicant]
KR 20170003547A · 2017 [cited by applicant]
KR 20180020863A · 2018 [cited by applicant]
WO 2017057321A1 · 2017 [cited by applicant]
WO 2017057987A1 · 2017 [cited by applicant]
WO 2017124338A1 · 2017 [cited by applicant]
EP Search Report in Application No. 19840206.7 dated Aug. 25, 2021. [cited by applicant]
“Synchronization enhancement for V2V” 3GPP TSG-RAN WG1 Meeting #82bis, R1-1552324, ZTE, Oct. 5, 2019. [cited by applicant]
Written Opinion and International Search Report in Application No. PCT/CN2019/096338 dated Feb. 11, 2021. [cited by applicant]
IN Office Action in Application No. 202127008356 dated Jan. 20, 2022. [cited by applicant]
JP Office Action in Application No. 2021-527268 dated Mar. 7, 2022. [cited by applicant]
EP Office Action dated Mar. 31, 2023 as received in Application No. 19840206.7. [cited by applicant]
First Office Action for Korean Application No. 10-2021-7005204, dated Feb. 27, 2024, 4 Pages. [cited by applicant]