IP Library › Granted Patent US 12,538,276
Granted Patent B2
US 12,538,276 · App. 18/154,515 · Granted Jan 27, 2026

Data transmission method and apparatus

Inventors: Lei Gao (Beijing, CN); Xingqing Cheng (Beijing, CN); Jian Wang (Beijing, CN)
Assignee: HUAWEI TECHNOLOGIES CO., LTD.
H04W72/0446H04L5/0051H04W72/0453H04W72/20
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Quick Facts
Patent No.
US 12,538,276
App. No.
18/154,515
Granted
Jan 27, 2026
Kind
B2
Abstract

A data transmission method and apparatus that may be applied to short-range wireless communication, for example, a cockpit domain includes receiving at least one piece of first configuration information from a first node, where the at least one piece of first configuration information indicates at least one of a first time-domain resource or a first frequency domain resource, where the first time-domain resource or the first frequency domain resource is used to carry first data and a first reference signal, and where the first reference signal is a demodulation reference signal of the first data; and transmitting the first reference signal on a second time-frequency resource, where the second time-frequency resource does not overlap a third time-frequency resource.

Claims (43)

1 . A data transmission method, comprising:

receiving first configuration information from a first node, wherein the first configuration information indicates at least one of a first time-domain resource or a first frequency-domain resource, wherein at least one of the first time-domain resource or the first frequency-domain resource is for carrying first data and a first reference signal, and wherein the first reference signal is a demodulation reference signal of the first data; and

transmitting the first reference signal on a second time-frequency resource,

wherein the second time-frequency resource does not overlap a third time-frequency resource,

wherein the third time-frequency resource is for carrying at least one of second data or a control-type signal, and

wherein in a first frequency-domain range:

a first time-domain start position of the second time-frequency resource is an earliest time subunit in a second time-domain resource that is other than a first time-domain range in the first time-domain resource; and

a second time domain resource of the third time-frequency resource overlaps the first time-domain resource.

2 . The data transmission method of claim 1 , wherein a second time-domain start position of the second time-frequency resource is an earliest time subunit in a second time-domain resource that is in the first time-domain resource and that is for carrying the first reference signal.

3 . The data transmission method of claim 1 , wherein a second time-domain start position of the second time-frequency resource in the first frequency-domain range is different from the first time-domain start position in a second frequency-domain range.

4 . The data transmission method of claim 3 , wherein the first frequency-domain range comprises N consecutive frequency units in a frequency domain or the second frequency-domain range comprises M consecutive frequency units in the frequency domain, and wherein N and M are positive integers.

5 . The data transmission method of claim 1 , wherein a second time-domain start position of a time-frequency resource that is for carrying the first data in the first frequency-domain range is not earlier than the first time-domain start position of the second time-frequency resource in the first frequency-domain range.

6 . The data transmission method of claim 1 , wherein in a first frequency-domain range, a plurality of time subunits comprised in the second time-frequency resource is either consecutive or inconsecutive in a time domain.

7 . The data transmission method of claim 1 , wherein the first reference signal comprises a plurality of reference signals corresponding to a plurality of antenna ports, wherein the first data is from the antenna ports, and wherein at least two of the reference signals occupy at least one of different time subunits in a time domain or different frequency units in a frequency domain.

8 . The data transmission method of claim 7 , further comprising receiving second configuration information, wherein the second configuration information comprises multiplexing manner information of the reference signals.

9 . The data transmission method of claim 1 , wherein the first time-domain resource comprises a time subunit of one or more first time units, and wherein the one or more first time units comprises at least one first time subunit, a first guard period (GP), at least one second time subunit, and a second guard period that are consecutive in a time domain.

10 . A data transmission method, comprising:

sending first configuration information to a second node, wherein the first configuration information indicates at least one of a first time-domain resource or a first frequency-domain resource, wherein at least one of the first time-domain resource or the first frequency-domain resource carries first data and a first reference signal, and wherein the first reference signal is a demodulation reference signal of the first data; and

receiving the first reference signal on a second time-frequency resource,

wherein the second time-frequency resource does not overlap a third time-frequency resource,

wherein the third time-frequency resource is for carrying at least one of second data or a control-type signal, and

wherein in a first frequency-domain range:

a first time-domain start position of the second time-frequency resource is an earliest time subunit in a second time-domain resource that is other than a first time-domain range in the first time-domain resource; and

a second time-domain resource of the third time-frequency resource overlaps the first time-domain resource.

11 . The data transmission method of claim 10 , wherein a second time-domain start position of the second time-frequency resource is an earliest time subunit in a second time-domain resource that is in the first time-domain resource and that is for carrying the first reference signal.

12 . The data transmission method of claim 10 , wherein a second time-domain start position of the second time-frequency resource in the first frequency-domain range is different from the first time-domain start position in a second frequency-domain range.

13 . The data transmission method of claim 12 , wherein the first frequency-domain range comprises N consecutive frequency units in a frequency domain or the second frequency-domain range comprises M consecutive frequency units in the frequency domain, and wherein N and M are positive integers.

14 . The data transmission method of claim 10 , wherein a second time-domain start position of a time-frequency resource that is for carrying the first data in the first frequency domain range is not earlier than the first time-domain start position of the second time-frequency resource in the first frequency-domain range.

15 . The data transmission method of claim 10 , wherein in a first frequency-domain range, a plurality of time subunits comprised in the second time-frequency resource is either consecutive or inconsecutive in a time domain.

16 . The data transmission method of claim 10 , wherein the first reference signal comprises a plurality of reference signals corresponding to a plurality of antenna ports, wherein the first data is from the antenna ports, and wherein at least two of the reference signals occupy at least one of different time subunits in a time domain or different frequency units in a frequency domain.

17 . The data transmission method of claim 16 , further comprising sending second configuration information, wherein the second configuration information comprises multiplexing manner information of the reference signals.

18 . An apparatus, comprising:

a non-transitory storage medium configured to store program instructions; and

a processor coupled to the non-transitory storage medium and configured to execute the program instructions that cause the apparatus to:

receive first configuration information from a first node, the first configuration information indicates at least one of a first time-domain resource or a first frequency-domain resource, wherein at least one of the first time-domain resource or the first frequency-domain resource is for carrying first data and a first reference signal, and wherein the first reference signal is a demodulation reference signal of the first data; and

transmit the first reference signal on a second time-frequency resource,

wherein the second time-frequency resource does not overlap a third time-frequency resource,

wherein the third time-frequency resource is for carrying at least one of second data or a control-type signal, and

wherein in a first frequency-domain range:

a first time-domain start position of the second time-frequency resource is an earliest time subunit in a second time-domain resource that is other than a first time-domain range in the first time-domain resource; and

a second time domain resource of the third time-frequency resource overlaps the first time-domain resource.

19 . The apparatus of claim 18 , wherein a second time-domain start position of the second time-frequency resource is an earliest time subunit in a second time-domain resource that is in the first time-domain resource and that is for carrying the first reference signal.

20 . The apparatus of claim 18 , wherein a second time-domain start position of the second time-frequency resource in the first frequency-domain range is different from the first time-domain start position in a second frequency-domain range.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2023
From: GAO, LEI; CHENG, XINGQING; WANG, JIAN
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 064632/0117 →
Priority Claims (1)
CN 202010683210.0 · Jul 15, 2020 · national
Continuity (2)
Continuation PCTCN2021104326 · Jul 2, 2021
Related Publication 20230156676A1 · May 18, 2023
References Cited (14)
US 12273913B2 · Xiong · 2025 [cited by examiner]
US 20200229198A1 · Kung · 2020 [cited by examiner]
US 20210337513A1 · Wu · 2021 [cited by examiner]
US 20220014332A1 · Wang · 2022 [cited by examiner]
US 20220070846A1 · Yang · 2022 [cited by examiner]
US 20220337462A1 · Li · 2022 [cited by examiner]
US 20220376864A1 · Zhao · 2022 [cited by examiner]
US 20220386156A1 · Park · 2022 [cited by examiner]
US 20220408429A1 · Choi · 2022 [cited by examiner]
US 20230121866A1 · Wu · 2023 [cited by examiner]
US 20230164847A1 · Kim · 2023 [cited by examiner]
CN 109413622A · 2019 [cited by applicant]
CN 109714735A · 2019 [cited by applicant]
EP 3664555A1 · 2020 [cited by applicant]