Link adaptation control for extremely high throughput systems
US-11764836-B2 · Sep 19, 2023 · US
US12206471B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12206471-B2 |
| Application number | US-202318354973-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 19, 2023 |
| Priority date | Oct 20, 2021 |
| Publication date | Jan 21, 2025 |
| Grant date | Jan 21, 2025 |
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The application relates to link adaptation for extremely high throughput (EHT) systems. Various approaches are provided to enable transmission of link adaptation parameters for single-user multiple input multiple output (SU-MIMO), and multi-user multiple input multiple output MU-MIMO. In some embodiments, two control IDs in the A-control subfield are used, one for SU-MIMO and one for MU-MIMO. These can both be reserved control IDs, or a combination of a reserved control ID and control ID 2 normally used for HE link adaptation. In some embodiments, a single control ID in the A-control subfield is used. This can be a reserved control ID or control ID 2 normally used for HE link adaptation.
Opening claim text (preview).
The invention claimed is: 1. A method comprising: communicating, by a wireless communication device, a medium access control (MAC) frame comprising a MAC header, frame body and frame check sequence; the MAC header comprising: a high throughput (HT) control sub-field, the HT control sub-field containing a control ID value and control information; wherein when the control ID value contained in the HT control sub-field is set to a first value, in a case where the MAC frame is a frame of an extremely high throughput (EHT) protocol, the control information contained in the HT control sub-field contains EHT link adaptation parameters for EHT communication; wherein when the control ID value contained in the HT control sub-field is set to the first value, in a case where the MAC frame is a frame of a high efficiency (HE) protocol, the control information contained in the HT control sub-field contains HE link adaptation parameters for HE communication; wherein the first value is 2. 2. The method of claim 1 wherein: the control information includes an unsolicited modulation and coding scheme feedback (MFB) sub-field, a bandwidth sub-field indicating a recommended physical layer protocol data unit (PPDU) bandwidth, and a modulation and coding scheme Request Sequence Identifier (MSI)/PPDU Format, Coding Type) subfield defined as follows: when the unsolicited MFB sub-field is 0, MSI/(PPDU Format, Coding Type) containing MSI; when the unsolicited MFB sub-field is 1, the MSI/(PPDU Format, Coding Type) containing PPDU format and coding type. 3. The method of claim 1 , the method further comprising in the case that the MAC frame is a frame of the HE protocol communicating an indication at a physical layer that the MAC frame is a frame of the HE protocol and in the case that the MAC frame is a frame of the EHT protocol communicating an indication at the physical layer that the MAC frame is a frame of the EHT protocol. 4. The method of claim 1 wherein communicating comprises transmitting by an access point (AP). 5. The method of claim 1 wherein communicating comprises receiving by an access point. 6. The method of claim 1 wherein communicating comprises transmitting by a non-access point (AP) station (STA). 7. The method of claim 1 wherein communicating comprises receiving by a non-AP station (STA). 8. The method of claim 1 wherein the HT control sub-field comprises a high efficiency (HE) variant HT control field, the HE variant HT control field including an A-control subfield, wherein the A-control subfield contains said control ID value and said control information. 9. A method comprising: communicating, by a wireless communication device, a medium access control (MAC) frame comprising a MAC header, frame body and frame check sequence; the MAC header comprising: a high throughput (HT) control sub-field, the HT control sub-field containing a control ID value and control information; wherein when the control ID value contained in the HT control sub-field is set to a value of 2, the control information contained in the HT control sub-field contains extremely high throughput (EHT) link adaptation parameters for EHT communication. 10. The method of claim 9 wherein communicating comprises transmitting by an access point (AP). 11. The method of claim 9 wherein communicating comprises receiving by an access point. 12. The method of claim 9 wherein communicating comprises transmitting by a non-access point station (STA). 13. The method of claim 9 wherein communicating comprises receiving by a non-access point station (STA). 14. The method of claim 9 wherein the HT control sub-field comprises a high efficiency (HE) variant HT control field, the HE variant HT control field including an A-control subfield, wherein the A-control subfield contains said control ID value and said control information. 15. An access point comprising a processor and memory, the access point configured to execute a method comprising: communicating, by the access point, a medium access control (MAC) frame comprising a MAC header, frame body and frame check sequence; the MAC header comprising: a high throughput (HT) control sub-field, the HT control sub-field containing a control ID value and control information; wherein when the control ID value contained in the HT control sub-field is set to a first value, in a case where the MAC frame is a frame of an extremely high throughput (EHT) protocol, the control information contained in the HT control sub-field contains EHT link adaptation parameters for EHT communication; wherein when the control ID value contained in the HT control sub-field is set to the first value, in a case where the MAC frame is a frame of a high efficiency (HE) protocol, the control information contained in the HT control sub-field contains HE link adaptation parameters for HE communication; wherein the first value is 2. 16. The access point of claim 15 wherein the HT control sub-field comprises a high efficiency (HE) variant HT control field, the HE variant HT control field including an A-control subfield, wherein the A-control subfield contains said control ID value and said control information. 17. The access point of claim 15 wherein communicating comprises at least one of transmitting or receiving. 18. A non-access point (AP) station comprising a processor and memory, the non-AP station configured to execute a method comprising: communicating, by the non-AP station, a medium access control (MAC) frame comprising a MAC header, frame body and frame check sequence; the MAC header comprising: a high throughput (HT) control sub-field, the HT control sub-field containing a control ID value and control information; wherein when the control ID value contained in the HT control sub-field is set to a first value, in a case where the MAC frame is a frame of an extremely high throughput (EHT) protocol, the control information contained in the HT control sub-field contains EHT link adaptation parameters for EHT communication; wherein when the control ID value contained in the HT control sub-field is set to the first value, in a case where the MAC frame is a frame of a high efficiency (HE) protocol, the control information contained in the HT control sub-field contains HE link adaptation parameters for HE communication; wherein the first value is 2. 19. The non-access point station of claim 18 wherein the HT control sub-field comprises a high efficiency (HE) variant HT control field, the HE variant HT control field including an A-control subfield, wherein the A-control subfield contains said control ID value and said control information. 20. The non-access point station of claim 18 wherein communicating comprises at least one of transmitting or receiving.
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