Abstract: ABSTRACT “SUBCARRIER ALLOCATIONS FOR OPERATION IN MIXED BANDWIDTH ENVIRONMENTS" A station, comprising at least one memory device having instructions encoded thereon; and at least one processor coupled to the one or more memory devices and configured, by the instructions, to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and to schedule the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
1. A station, comprising: at least one memory device having instructions encoded thereon; and at least one processor coupled to the one or more memory devices and configured, by the instructions, to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and to schedule the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
2. The station of claim 1, wherein the at least one processor is further configured to receive a wireless transmission from the computing device using the scheduled OFDMA tones.
3. The station of any one of claim 1-2, wherein the at least one processor is further configured to receive resource allocation information indicative of the scheduled OFDMA tones from the computing device, and to transmit a wireless transmission to the computing device in the scheduled OFDMA tones.
4. The station of any one of claims 1-3, wherein the 23 guard tones comprise 12 null tones forming a first edge of the channel and 11 null tones forming a second edge of the first channel.
5. The station of claim 4, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
6. A method for bandwidth allocation, comprising: receiving scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and scheduling the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said method characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
7. The method of claim 6, further comprising: receiving a wireless transmission from the computing device using the scheduled OFDMA tones.
8. The method of any one of claims 6-7, further comprising: receiving resource allocation information indicative of the scheduled OFDMA tones from the computing device, and transmitting a wireless transmission to the computing device in the scheduled OFDMA tones.
9. The method of any one of claims 6-8, wherein the 23 guard tones comprise 12 null tones forming a first edge of the first channel and 11 null tones forming a second edge of the channel.
10. The method of claim 9, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones. Dated this: September 15, 2021 [JAYANTA PAL] IN/PA 172 OF REMFRY & SAGAR ATTORNEY FOR THE APPLICANT[S] :
1. A station, comprising: at least one memory device having instructions encoded thereon; and at least one processor coupled to the one or more memory devices and configured, by the instructions, to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and to schedule the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
2. The station of claim 1, wherein the at least one processor is further configured to receive a wireless transmission from the computing device using the scheduled OFDMA tones.
3. The station of any one of claim 1-2, wherein the at least one processor is further configured to receive resource allocation information indicative of the scheduled OFDMA tones from the computing device, and to transmit a wireless transmission to the computing device in the scheduled OFDMA tones.
4. The station of any one of claims 1-3, wherein the 23 guard tones comprise 12 null tones forming a first edge of the channel and 11 null tones forming a second edge of the first channel.
5. The station of claim 4, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
6. A method for bandwidth allocation, comprising: receiving scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and scheduling the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said method characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
7. The method of claim 6, further comprising: receiving a wireless transmission from the computing device using the scheduled OFDMA tones.
8. The method of any one of claims 6-7, further comprising: receiving resource allocation information indicative of the scheduled OFDMA tones from the computing device, and transmitting a wireless transmission to the computing device in the scheduled OFDMA tones.
9. The method of any one of claims 6-8, wherein the 23 guard tones comprise 12 null tones forming a first edge of the first channel and 11 null tones forming a second edge of the channel.
10. The method of claim 9, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones. Dated this: September 15, 2021 [JAYANTA PAL] IN/PA 172 OF REMFRY & SAGAR ATTORNEY FOR THE APPLICANT[S] WE CLAIM:
1. A station, comprising: at least one memory device having instructions encoded thereon; and at least one processor coupled to the one or more memory devices and configured, by the instructions, to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and to schedule the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
2. The station of claim 1, wherein the at least one processor is further configured to receive a wireless transmission from the computing device using the scheduled OFDMA tones.
3. The station of any one of claim 1-2, wherein the at least one processor is further configured to receive resource allocation information indicative of the scheduled OFDMA tones from the computing device, and to transmit a wireless transmission to the computing device in the scheduled OFDMA tones.
4. The station of any one of claims 1-3, wherein the 23 guard tones comprise 12 null tones forming a first edge of the channel and 11 null tones forming a second edge of the first channel.
5. The station of claim 4, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
6. A method for bandwidth allocation, comprising: receiving scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and scheduling the multiple OFDMA tones using the received scheduling information, wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz, said method characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
7. The method of claim 6, further comprising: receiving a wireless transmission from the computing device using the scheduled OFDMA tones.
8. The method of any one of claims 6-7, further comprising: receiving resource allocation information indicative of the scheduled OFDMA tones from the computing device, and transmitting a wireless transmission to the computing device in the scheduled OFDMA tones.
9. The method of any one of claims 6-8, wherein the 23 guard tones comprise 12 null tones forming a first edge of the first channel and 11 null tones forming a second edge of the channel.
10. The method of claim 9, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones. Dated this: September 15, 2021 [JAYANTA PAL] IN/PA 172 OF REMFRY & SAGAR ATTORNEY FOR THE APPLICANT[S] , Description:AS ENCLOSED
Claims:WE CLAIM:
1. A station, comprising:
at least one memory device having instructions encoded thereon; and
at least one processor coupled to the one or more memory devices and configured, by the instructions,
to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and
to schedule the multiple OFDMA tones using the received scheduling information,
wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz,
said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
2. The station of claim 1, wherein the at least one processor is further configured
to receive a wireless transmission from the computing device using the scheduled OFDMA tones.
3. The station of any one of claim 1-2, wherein the at least one processor is further configured
to receive resource allocation information indicative of the scheduled OFDMA tones from the computing device, and
to transmit a wireless transmission to the computing device in the scheduled OFDMA tones.
4. The station of any one of claims 1-3, wherein the 23 guard tones comprise 12 null tones forming a first edge of the channel and 11 null tones forming a second edge of the first channel.
5. The station of claim 4, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
6. A method for bandwidth allocation, comprising:
receiving scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and
scheduling the multiple OFDMA tones using the received scheduling information,
wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz,
said method characterized in that the 80 MHz bandwidth channel has 1024 tones,
wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
7. The method of claim 6, further comprising:
receiving a wireless transmission from the computing device using the scheduled OFDMA tones.
8. The method of any one of claims 6-7, further comprising:
receiving resource allocation information indicative of the scheduled OFDMA tones from the computing device, and
transmitting a wireless transmission to the computing device in the scheduled OFDMA tones.
9. The method of any one of claims 6-8, wherein the 23 guard tones comprise 12 null tones forming a first edge of the first channel and 11 null tones forming a second edge of the channel.
10. The method of claim 9, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
Dated this: September 15, 2021
[JAYANTA PAL]
IN/PA 172
OF REMFRY & SAGAR
ATTORNEY FOR THE APPLICANT[S]
WE CLAIM:
1. A station, comprising:
at least one memory device having instructions encoded thereon; and
at least one processor coupled to the one or more memory devices and configured, by the instructions,
to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and
to schedule the multiple OFDMA tones using the received scheduling information,
wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz,
said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
2. The station of claim 1, wherein the at least one processor is further configured
to receive a wireless transmission from the computing device using the scheduled OFDMA tones.
3. The station of any one of claim 1-2, wherein the at least one processor is further configured
to receive resource allocation information indicative of the scheduled OFDMA tones from the computing device, and
to transmit a wireless transmission to the computing device in the scheduled OFDMA tones.
4. The station of any one of claims 1-3, wherein the 23 guard tones comprise 12 null tones forming a first edge of the channel and 11 null tones forming a second edge of the first channel.
5. The station of claim 4, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
6. A method for bandwidth allocation, comprising:
receiving scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and
scheduling the multiple OFDMA tones using the received scheduling information,
wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz,
said method characterized in that the 80 MHz bandwidth channel has 1024 tones,
wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
7. The method of claim 6, further comprising:
receiving a wireless transmission from the computing device using the scheduled OFDMA tones.
8. The method of any one of claims 6-7, further comprising:
receiving resource allocation information indicative of the scheduled OFDMA tones from the computing device, and
transmitting a wireless transmission to the computing device in the scheduled OFDMA tones.
9. The method of any one of claims 6-8, wherein the 23 guard tones comprise 12 null tones forming a first edge of the first channel and 11 null tones forming a second edge of the channel.
10. The method of claim 9, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
Dated this: September 15, 2021
[JAYANTA PAL]
IN/PA 172
OF REMFRY & SAGAR
ATTORNEY FOR THE APPLICANT[S]
WE CLAIM:
1. A station, comprising:
at least one memory device having instructions encoded thereon; and
at least one processor coupled to the one or more memory devices and configured, by the instructions,
to receive scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and
to schedule the multiple OFDMA tones using the received scheduling information,
wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz,
said station being characterized in that the 80 MHz bandwidth channel has 1024 tones, wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
2. The station of claim 1, wherein the at least one processor is further configured
to receive a wireless transmission from the computing device using the scheduled OFDMA tones.
3. The station of any one of claim 1-2, wherein the at least one processor is further configured
to receive resource allocation information indicative of the scheduled OFDMA tones from the computing device, and
to transmit a wireless transmission to the computing device in the scheduled OFDMA tones.
4. The station of any one of claims 1-3, wherein the 23 guard tones comprise 12 null tones forming a first edge of the channel and 11 null tones forming a second edge of the first channel.
5. The station of claim 4, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
6. A method for bandwidth allocation, comprising:
receiving scheduling information from a computing device that schedules multiple orthogonal frequency division multiple access, OFDMA, tones for communication of the computing device with the station; and
scheduling the multiple OFDMA tones using the received scheduling information,
wherein the multiple OFDMA tones are arranged within a resource block having a spectral width of 80 MHz, the resource block comprises a channel having a spectral width of 80 MHz,
said method characterized in that the 80 MHz bandwidth channel has 1024 tones,
wherein 23 of the 1024 tones are edge carrier and five of the 1024 tones are null tones for direct conversion at about the center of the channel, the channel having 996 allocable or otherwise usable tones.
7. The method of claim 6, further comprising:
receiving a wireless transmission from the computing device using the scheduled OFDMA tones.
8. The method of any one of claims 6-7, further comprising:
receiving resource allocation information indicative of the scheduled OFDMA tones from the computing device, and
transmitting a wireless transmission to the computing device in the scheduled OFDMA tones.
9. The method of any one of claims 6-8, wherein the 23 guard tones comprise 12 null tones forming a first edge of the first channel and 11 null tones forming a second edge of the channel.
10. The method of claim 9, wherein at least one block of OFDMA tones is selected from the set of 996 allocable OFDMA tones, the at least one block comprising 55 OFDMA tones, 110 OFDMA tones, 242 OFDMA tones, 498 OFDMA tones, or 996 OFDMA tones.
Dated this: September 15, 2021
[JAYANTA PAL]
IN/PA 172
OF REMFRY & SAGAR
ATTORNEY FOR THE APPLICANT[S]
, Description:AS ENCLOSED
| # | Name | Date |
|---|---|---|
| 1 | 202148041709-STATEMENT OF UNDERTAKING (FORM 3) [15-09-2021(online)].pdf | 2021-09-15 |
| 1 | 202148041709-Written submissions and relevant documents [03-10-2024(online)].pdf | 2024-10-03 |
| 2 | 202148041709-Correspondence to notify the Controller [16-09-2024(online)].pdf | 2024-09-16 |
| 2 | 202148041709-REQUEST FOR EXAMINATION (FORM-18) [15-09-2021(online)].pdf | 2021-09-15 |
| 3 | 202148041709-US(14)-HearingNotice-(HearingDate-18-09-2024).pdf | 2024-08-28 |
| 3 | 202148041709-PRIORITY DOCUMENTS [15-09-2021(online)].pdf | 2021-09-15 |
| 4 | 202148041709-POWER OF AUTHORITY [15-09-2021(online)].pdf | 2021-09-15 |
| 4 | 202148041709-CLAIMS [27-09-2022(online)].pdf | 2022-09-27 |
| 5 | 202148041709-FORM 18 [15-09-2021(online)].pdf | 2021-09-15 |
| 5 | 202148041709-COMPLETE SPECIFICATION [27-09-2022(online)].pdf | 2022-09-27 |
| 6 | 202148041709-FORM 1 [15-09-2021(online)].pdf | 2021-09-15 |
| 6 | 202148041709-CORRESPONDENCE [27-09-2022(online)].pdf | 2022-09-27 |
| 7 | 202148041709-FIGURE OF ABSTRACT [15-09-2021(online)].pdf | 2021-09-15 |
| 7 | 202148041709-FER_SER_REPLY [27-09-2022(online)].pdf | 2022-09-27 |
| 8 | 202148041709-FER.pdf | 2022-03-28 |
| 8 | 202148041709-DRAWINGS [15-09-2021(online)].pdf | 2021-09-15 |
| 9 | 202148041709-DECLARATION OF INVENTORSHIP (FORM 5) [15-09-2021(online)].pdf | 2021-09-15 |
| 9 | 202148041709-FORM 3 [11-01-2022(online)].pdf | 2022-01-11 |
| 10 | 202148041709-COMPLETE SPECIFICATION [15-09-2021(online)].pdf | 2021-09-15 |
| 10 | 202148041709-DECLARATION OF INVENTORSHIP (FORM 5) [15-09-2021(online)]-1.pdf | 2021-09-15 |
| 11 | 202148041709-COMPLETE SPECIFICATION [15-09-2021(online)].pdf | 2021-09-15 |
| 11 | 202148041709-DECLARATION OF INVENTORSHIP (FORM 5) [15-09-2021(online)]-1.pdf | 2021-09-15 |
| 12 | 202148041709-DECLARATION OF INVENTORSHIP (FORM 5) [15-09-2021(online)].pdf | 2021-09-15 |
| 12 | 202148041709-FORM 3 [11-01-2022(online)].pdf | 2022-01-11 |
| 13 | 202148041709-DRAWINGS [15-09-2021(online)].pdf | 2021-09-15 |
| 13 | 202148041709-FER.pdf | 2022-03-28 |
| 14 | 202148041709-FER_SER_REPLY [27-09-2022(online)].pdf | 2022-09-27 |
| 14 | 202148041709-FIGURE OF ABSTRACT [15-09-2021(online)].pdf | 2021-09-15 |
| 15 | 202148041709-CORRESPONDENCE [27-09-2022(online)].pdf | 2022-09-27 |
| 15 | 202148041709-FORM 1 [15-09-2021(online)].pdf | 2021-09-15 |
| 16 | 202148041709-COMPLETE SPECIFICATION [27-09-2022(online)].pdf | 2022-09-27 |
| 16 | 202148041709-FORM 18 [15-09-2021(online)].pdf | 2021-09-15 |
| 17 | 202148041709-CLAIMS [27-09-2022(online)].pdf | 2022-09-27 |
| 17 | 202148041709-POWER OF AUTHORITY [15-09-2021(online)].pdf | 2021-09-15 |
| 18 | 202148041709-US(14)-HearingNotice-(HearingDate-18-09-2024).pdf | 2024-08-28 |
| 18 | 202148041709-PRIORITY DOCUMENTS [15-09-2021(online)].pdf | 2021-09-15 |
| 19 | 202148041709-REQUEST FOR EXAMINATION (FORM-18) [15-09-2021(online)].pdf | 2021-09-15 |
| 19 | 202148041709-Correspondence to notify the Controller [16-09-2024(online)].pdf | 2024-09-16 |
| 20 | 202148041709-Written submissions and relevant documents [03-10-2024(online)].pdf | 2024-10-03 |
| 20 | 202148041709-STATEMENT OF UNDERTAKING (FORM 3) [15-09-2021(online)].pdf | 2021-09-15 |
| 21 | 202148041709-PatentCertificate20-12-2024.pdf | 2024-12-20 |
| 22 | 202148041709-IntimationOfGrant20-12-2024.pdf | 2024-12-20 |
| 1 | searchstrategyE_28-03-2022.pdf |