IP Library Granted Patent US 11,025,390
Granted Patent B2
US 11,025,390 · App. 16/324,471 · Granted Jun 1, 2021

Method for transmitting uplink sounding reference signal, terminal, network side device, and storage medium

Inventors: Rakesh Tamrakar (Beijing, CN); Qiubin Gao (Beijing, CN); Runhua Chen (Beijing, CN); Hui Li (Beijing, CN); Qiuping Huang (Beijing, CN); Mengjun Wang (Beijing, CN); Chuanjun Li (Beijing, CN); Yu Yang (Beijing, CN); Yang Song (Beijing, CN); Xin Su (Beijing, CN)
Assignee: CHINA ACADEMY OF TELECOMMUNICATIONS TECHNOLOGY
H04L5/005H04B1/713H04L5/0005H04L5/0037H04L5/0048H04L5/0091H04W28/0215H04W72/0453H04L5/0012
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 11,025,390
App. No.
16/324,471
Granted
Jun 1, 2021
Kind
B2
Abstract

A method for transmitting uplink Sounding Reference Signal, SRS, a terminal, a network side device and a storage medium are provided. The method includes determining a transmission manner for one or more uplink SRSs in a wideband system by a terminal according to a configuration from a network side device, wherein the wideband system is configured with a plurality of basic parameters; transmitting the one or more uplink SRSs to the network side device in the wideband system by the terminal according to the transmission manner.

Claims (57)

1. A method for transmitting one or more uplink Sounding Reference Signals (SRSs), comprising:

determining a transmission manner for the one or more uplink SRSs in a wideband system by a terminal according to a configuration from a network side device, wherein the wideband system is configured with a plurality of basic parameters, the plurality of basic parameters comprise subcarrier spacings;

transmitting the one or more uplink SRSs to the network side device in the wideband system by the terminal according to the transmission manner,

wherein

different subcarrier spacings correspond to different lengths of symbols for transmitting the one or more uplink SRSs,

the transmission manner comprises transmissions of the one or more uplink SRSs in a wideband, and the transmission manner further comprises one or more of following (1) to (4):

(1) whether the one or more uplink SRSs are allowed to be transmitted simultaneously in one or more frequency bands configured with the plurality of basic parameters or not;

(2) the one or more uplink SRSs are only allowed to be transmitted in one or more frequency bands configured with one basic parameter;

(3) the one or more uplink SRSs are transmitted in one or more frequency bands configured with the plurality of basic parameters;

(4) the terminal transmits, by default, the one or more uplink SRSs in a frequency band configured with the plurality of basic parameters, transmitted in one or more frequency bands configured with one basic parameter, or transmitted in frequency bands configured with the plurality of basic parameters simultaneously;

or,

the transmission manner comprises one or more of following (1) to (3):

(1) whether the one or more uplink SRSs are allowed to be transmitted by frequency-hopping among the frequency bands configured with different basic parameters or not;

(2) whether the one or more uplink SRSs are allowed to be transmitted by frequency-hopping among the frequency bands configured with a same basic parameter or not;

(3) sequences used when transmissions of the one or more uplink SRSs are frequency-hopped among frequency bands are same or different.

2. The method according to claim 1 , wherein

the configuration is configured by the network side device through a dynamic signaling, a high-layer semi-persistent signaling or in an implicit manner.

3. The method according to claim 1 , wherein,

the transmission manner is transmission of the one or more uplink SRSs in sub-bands, and a size of each of the sub-bands is configured by the network side device, and one or more frequency bands configured with one basic parameter comprise one or more sub-bands.

4. The method according to claim 1 , wherein, subcarrier spacings of the one or more uplink SRSs at different frequency-domain positions are same; or the subcarrier spacings of the one or more uplink SRSs at different frequency-domain positions are different; or the one or more uplink SRSs are in one or more consecutive subcarriers having a same subcarrier spacing at different frequency-domain positions.

5. A terminal, comprising:

a processor, and

a transceiver, configured to receive and transmit data under a control of the processor;

wherein the processor is configured to perform the method according to claim 1 .

6. The terminal according to claim 5 , wherein

the configuration is configured by the network side device through a dynamic signaling, a high-layer semi-persistent signaling or in an implicit manner.

7. The terminal according to claim 5 , wherein

the transmission manner is transmission of the one or more uplink SRSs in sub-bands, and a size of each of the sub-bands is configured by the network side device, and one or more frequency bands configured with one basic parameter comprise one or more sub-bands.

8. The terminal according to claim 5 , wherein subcarrier spacings of the one or more uplink SRSs at different frequency-domain positions are same; or the subcarrier spacings of the one or more uplink SRSs at different frequency-domain positions are different; or the one or more uplink SRSs are in one or more consecutive subcarriers having a same subcarrier spacing at different frequency-domain positions.

9. A method for transmitting one or more uplink Sounding Reference Signals (SRSs), comprising:

transmitting a configuration to a terminal by a network side device, so that the terminal determines a transmission manner for the one or more uplink SRSs in a wideband system according to the configuration, wherein the wideband system is configured with a plurality of basic parameters, the plurality of basic parameters comprise subcarrier spacings;

receiving, by the network side device, the one or more uplink SRSs transmitted by the terminal in the wideband system according to the transmission manner,

wherein, different subcarrier spacings correspond to different lengths of symbols for transmitting the one or more uplink SRSs,

the transmission manner comprises transmissions of the one or more uplink SRSs in a wideband, and the transmission manner further comprises one or more of following (1) to (4):

(1) whether the one or more uplink SRSs are allowed to be transmitted simultaneously in one or more frequency bands configured with the plurality of basic parameters or not;

(2) the one or more uplink SRSs are only allowed to be transmitted in one or more frequency bands configured with one basic parameter;

(3) the one or more uplink SRSs are transmitted in one or more frequency bands configured with the plurality of basic parameters;

(4) the terminal transmits, by default, the one or more uplink SRSs in a frequency band configured with the plurality of basic parameters, transmitted in one or more frequency bands configured with one basic parameter, or transmitted in frequency bands configured with the plurality of basic parameters simultaneously;

or,

the transmission manner comprises one or more of following (1) to (3):

(1) whether the one or more uplink SRSs are allowed to be transmitted by frequency-hopping among the frequency bands configured with different basic parameters or not;

(2) whether the one or more uplink SRSs are allowed to be transmitted by frequency-hopping among the frequency bands configured with a same basic parameter or not;

(3) sequences used when transmissions of the one or more uplink SRSs are frequency-hopped among frequency bands are same or different.

10. The method according to claim 9 , wherein,

the configuration is configured by the network side device through a dynamic signaling, a high-layer semi-persistent signaling or in an implicit manner.

11. The method according to claim 9 , wherein,

the transmission manner is transmission of the one or more uplink SRSs in sub-bands, and a size of each of the sub-bands is configured by the network side device, and one or more frequency bands configured with one basic parameter comprise one or more sub-bands.

12. The method according to claim 9 , wherein, subcarrier spacings in the one or more uplink SRSs at different frequency-domain positions are same; or the subcarrier spacings in the one or more uplink SRSs at different frequency-domain positions are different; or the one or more uplink SRSs are in one or more consecutive subcarriers having a same subcarrier spacing at different frequency-domain positions.

13. A network side device, comprising:

a processor, and

a transceiver, configured to receive and transmit data under a control of the processor;

wherein the processor is configured to perform the method according to claim 9 .

14. The network side device according to claim 13 , wherein,

the configuration is configured by the network side device through a dynamic signaling, a high-layer semi-persistent signaling or in an implicit manner.

15. The network side device according to claim 13 , wherein,

the transmission manner is transmission of the one or more uplink SRSs in sub-bands, and a size of each of the sub-bands is configured by the network side device, and one or more frequency bands configured with one basic parameter comprise one or more sub-bands.

16. The network side device according to claim 13 , wherein, subcarrier spacings of the one or more uplink SRSs at different frequency-domain positions are same; or the subcarrier spacings of the one or more uplink SRSs at different frequency-domain positions are different; or the one or more uplink SRSs are in one or more consecutive subcarriers having a same subcarrier spacing at different frequency-domain positions.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2021
From: CHINA ACADEMY OF TELECOMMUNICATIONS TECHNOLOGY
To: DATANG MOBILE COMMUNICATIONS EQUIPMENT CO., LTD.
Reel/Frame 056769/0920 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2021
From: TAMRAKAR, RAKESH; GAO, QIUBIN; CHEN, RUNHUA; LI, HUI; HUANG, QIUPING; WANG, MENGJUN; LI, CHUANJUN; YANG, YU; SONG, YANG; SU, XIN
To: CHINA ACADEMY OF TELECOMMUNICATIONS TECHNOLOGY
Reel/Frame 055426/0130 →
Priority Claims (1)
CN 201610663291.1 · Aug 12, 2016 · national
Continuity (1)
Related Publication 20190222369A1 · Jul 18, 2019