IP Library Granted Patent US 11,671,208
Granted Patent B2
US 11,671,208 · App. 17/851,019 · Granted Jun 6, 2023

Physical layer (PHY) data unit format for hybrid automatic repeat request (HARQ)

Inventors: Yan Zhang (San Jose, CA); Liwen Chu (San Ramon, CA); Rui Cao (Sunnyvale, CA); Hongyuan Zhang (Fremont, CA)
Assignee: Marvell Asia Pte Ltd
H04L1/1819H04L1/0008H04L1/0061H04L1/1893H04W80/02H04W84/12
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Quick Facts
Patent No.
US 11,671,208
App. No.
17/851,019
Granted
Jun 6, 2023
Kind
B2
Abstract

A wireless communication device generates physical layer (PHY) protocol service data units (PSDUs), and, in response to determining that the PHY data unit is to be transmitted according to a HARQ process, generates HARQ coding units of a common length, each of the HARQ coding units including a respective set of one or more PSDUs, and individually encodes the HARQ coding units. The wireless communication device also generates a HARQ signal field to the included in a PHY preamble of the PHY data unit. The HARQ signal field includes i) a common information subfield to indicate one or more parameters that commonly apply to each of at least some of the one or more HARQ coding units and ii) a respective HARQ coding unit information subfield for each of the HARQ coding units to indicate one or more parameters that apply to only the corresponding HARQ coding unit.

Claims (63)

1. A method for generating a physical layer (PHY) data unit for transmission in a wireless local area network (WLAN), the method comprising:

determining, at a communication device, that the PHY data unit is to be transmitted according to a hybrid automatic repeat request (HARQ) process;

generating, at the communication device, a PHY data portion of the PHY data unit, wherein generating the PHY data portion comprises:

generating one or more PHY protocol service data units (PSDUs), and

in response to determining that the PHY data unit is to be transmitted according to the HARQ process,

generating one or more HARQ coding units of a common length, each of the one or more HARQ coding units generated to include a respective set of one or more PSDUs among the one or more PSDUs, and

individually encoding HARQ coding units among the one or more HARQ coding units;

generating, at the communication device, a PHY preamble of the PHY data unit, including generating a HARQ signal field with HARQ information regarding the PHY data unit, wherein generating the HARQ signal field includes i) generating a common information subfield to indicate one or more parameters that commonly apply to each of at least some of the one or more HARQ coding units and ii) generating a respective HARQ coding unit specific information subfield for each of the one or more HARQ coding units to indicate one or more parameters that apply to only the corresponding HARQ coding unit among the one or more HARQ coding units, and to include i) an index uniquely identifying the corresponding HARQ coding unit and ii) a transmission version indicator indicating one of a) that the corresponding HARQ coding unit is an initial transmission of the HARQ coding unit and b) a transmission number corresponding to a retransmission of the corresponding HARQ coding unit; and

transmit, by the communication device, the PHY data unit.

2. The method of claim 1 , wherein generating the common information subfield field comprises generating the common information subfield to include padding information that indicates a number of padding bits that were added to each of the one or more HARQ coding units.

3. The method of claim 1 , wherein generating the common information subfield field comprises generating the common information subfield to include an indicator of whether an extra OFDM symbol segment was included for each of the one or more HARQ coding unit in connection with low density parity check (LDPC) encoding of information in the HARQ coding unit.

4. The method of claim 1 , wherein generating the one or more HARQ coding units comprises generating at least one HARQ coding unit to include an initial transmission of one or more PSDUs and at least one HARQ coding unit to include a HARQ retransmission of one or more PSDUs.

5. The method of claim 4 , further comprising, in connection with each HARQ coding unit:

determining, at the communication device, whether the HARQ coding unit includes an initial transmission of the corresponding one or more PSDUs or a HARQ retransmission of the corresponding one or more PSDUs,

in response to determining that the HARQ coding unit includes a HARQ retransmission of the corresponding one or more PSDUs, generating, at the communication device, the HARQ coding unit specific information subfield to include one or more retransmission specific subfields to indicate one or more parameters that are specific to the retransmission of the corresponding one or more PSDUs, and

in response to determining that the corresponding HARQ coding unit is an initial transmission of the HARQ coding retransmission, generating, at the communication device, the HARQ coding unit specific information subfield to exclude the one or more retransmission specific subfields.

6. The method of claim 1 , wherein generating the PHY preamble further comprises:

generating a regular signal field to be transmitted in the PHY preamble prior to transmission of the HARQ signal field in the PHY preamble, and

in response to determining that the PHY data unit is to be transmitted according to the HARQ process, generating the regular signal field to include an indicator to indicate that the PHY preamble includes the HARQ signal field following the regular signal field.

7. The method of claim 1 , wherein:

the PHY data unit is a multi-user (MU) PHY data unit to be transmitted to a plurality of other communication devices;

generating the PHY preamble further includes generating an additional signal field that includes allocation information that allocates multiple frequency resource units (RUs) among the multiple other communication devices; and

generating the HARQ signal field comprises generating a respective HARQ user information subfield for one or more respective other communication devices, wherein each HARQ user information subfield includes a HARQ coding unit information subfield for each of one or more HARQ coding units for the respective other communication device, wherein each HARQ coding unit information subfield includes indications of respective one or respective PSDU.

8. The method of claim 1 , wherein:

the PHY data unit is a multi-user (MU) PHY data unit to be transmitted to a plurality of other communication devices via a first frequency segment and a second frequency segment;

generating the PHY preamble further includes generating an additional signal field that includes allocation information that allocates to the plurality of other communication devices multiple frequency resource units (RUs) corresponding to the first frequency segment and the second frequency segment;

generating the HARQ signal field comprises generating a first HARQ signal field to be transmitted within the first frequency segment, the first HARQ signal field being generated to include HARQ information only for PSDUs to be transmitted in one or more RUs that overlap with the first frequency segment; and

the method further comprises generating a second HARQ signal field to be transmitted within the second frequency segment, the second HARQ signal field being generated to include HARQ information only for PSDUs to be transmitted in one or more RUs that overlap with the second frequency segment.

9. A wireless communication device, comprising:

a wireless network interface device implemented at least partially on one or more integrated circuit (IC) devices, and wherein the one or more IC devices are configured to:

determine that a physical layer (PHY) data unit is to be transmitted according to a hybrid automatic repeat request (HARQ) process;

generate a PHY data portion of the PHY data unit, comprising:

generating one or more PHY protocol service data units (PSDUs), and

in response to determining that the PHY data unit is to be transmitted according to the HARQ process,

generating one or more HARQ coding units of a common length, each of the one or more HARQ coding units generated to include a respective set of one or more PSDUs among the one or more PSDUs, and

individually encoding HARQ coding units among the one or more HARQ coding units; and

wherein the one or more IC devices are further configured to generate a PHY preamble of the PHY data unit, including generating a HARQ signal field with HARQ information regarding the PHY data unit, wherein generating the HARQ signal field includes i) generating a common information subfield to indicate one or more parameters that commonly apply to each of at least some of the one or more HARQ coding units and ii) generating a respective HARQ coding unit specific information subfield for each of the one or more HARQ coding units to indicate one or more parameters that apply to only the corresponding HARQ coding unit among the one or more HARQ coding units, and to include i) an index uniquely identifying the corresponding HARQ coding unit and ii) a transmission version indicator indicating one of a) that the corresponding HARQ coding unit is an initial transmission of the HARQ coding unit and b) a transmission number corresponding to a retransmission of the corresponding HARQ coding unit; and

wherein the one or more IC devices are further configured to control the wireless network interface device to transmit the PHY data unit.

10. The wireless communication device of claim 9 , wherein the one or more IC devices are configured to generate the common information subfield to include padding information that indicates a number of padding bits that were added to each of the one or more HARQ coding units.

11. The wireless communication device of claim 9 , wherein the one or more IC devices are configured to generate the common information subfield to include an indicator of whether an extra OFDM symbol segment was included for each of the one or more HARQ coding unit in connection with low density parity check (LDPC) encoding of information in the HARQ coding unit.

12. The wireless communication device of claim 9 , wherein the one or more IC devices are configured to generate the one or more HARQ coding unit at least by generating at least one HARQ coding unit to include an initial transmission of one or more PSDUs and at least one HARQ coding unit to include a HARQ retransmission of one or more PSDUs.

13. The wireless communication device of claim 12 , wherein the one or more IC devices are further configured to, in connection with each HARQ coding unit:

determine whether the HARQ coding unit includes an initial transmission of the corresponding one or more PSDUs or a HARQ retransmission of the corresponding one or more PSDUs,

in response to determining that the HARQ coding unit includes a HARQ retransmission of the corresponding one or more PSDUs, generate the HARQ coding unit specific information subfield to include one or more retransmission specific subfields to indicate one or more parameters that are specific to the retransmission of the corresponding one or more PSDUs, and

in response to determining that the corresponding HARQ coding unit is an initial transmission of the HARQ coding retransmission, generate the HARQ coding unit specific information subfield to exclude the one or more retransmission specific subfields.

14. The wireless communication device of claim 9 , wherein the one or more IC devices are further configured to:

generate a regular signal field to be transmitted in the PHY preamble prior to transmission of the HARQ signal field in the PHY preamble, and

in response to determining that the PHY data unit is to be transmitted according to the HARQ process, generate the regular signal field to include in an indicator to indicate that the PHY preamble includes the HARQ signal field following the regular signal field.

15. The wireless communication device of claim 9 , wherein:

the PHY data unit is a multi-user (MU) PHY data unit to be transmitted to a plurality of other communication devices; and

the one or more IC devices are further configured to:

generate the PHY preamble to include an additional signal field that includes allocation information that allocates multiple frequency resource units (RUs) among the multiple other communication devices; and

generating the HARQ signal field to include a respective HARQ user information subfield for one or more respective other communication devices, wherein each HARQ user information subfield includes a HARQ coding unit information subfield for each of one or more HARQ coding units for the respective other communication device, wherein each HARQ coding unit information subfield includes indications of respective one or respective PSDU.

16. The wireless communication device of claim 9 , wherein:

the PHY data unit is a multi-user (MU) PHY data unit to be transmitted to a plurality of other communication devices via a first frequency segment and a second frequency segment; and

the one or more IC devices are further configured to:

generate the PHY preamble to include an additional signal field that includes allocation information that allocates to the plurality of other communication devices multiple frequency resource units (RUs) corresponding to the first frequency segment and the second frequency segment,

generate the HARQ signal field as a first HARQ signal field to be transmitted within the first frequency segment, the first HARQ signal field being generated to include HARQ information only for PSDUs to be transmitted in one or more RUs that overlap with the first frequency segment, and

generate a second HARQ signal field to be transmitted within the second frequency segment, the second HARQ signal field being generated to include HARQ information only for PSDUs to be transmitted in one or more RUs that overlap with the second frequency segment.

17. The wireless communication device of claim 9 , wherein:

the wireless network interface device further comprises one or more transceivers implemented at least partially on the one or more IC devices.

18. The wireless communication device of claim 17 , further comprising:

one or more antennas coupled to the one or more transceivers.

Continuity (3)
Continuation 16894720 · Jun 5, 2020
Provisional Application 62857666 · Jun 5, 2019
Related Publication 20220337353A1 · Oct 20, 2022