Communication apparatus and method, computer program, and communication system enabling improved throughput for an entire plurality of users
US-9264119-B2 · Feb 16, 2016 · US
US9930662B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9930662-B2 |
| Application number | US-201715414004-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 24, 2017 |
| Priority date | May 8, 2009 |
| Publication date | Mar 27, 2018 |
| Grant date | Mar 27, 2018 |
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Official abstract text for this publication.
Communication operations are optimally conducted by applying space-division multiple access in which wireless resources on a spatial axis are shared among a plurality of users. By applying an RD protocol to a communication system that conducts space-division multiple access, spatially multiplexed frames in a TXOP are made more efficient. By specifying a frame length for reverse direction frames with reverse direction permission information and having respective transmitters of reverse direction frames make their frame lengths uniform while respecting the specification, AGC operation stabilizes. Also, a transmit start time for reverse direction frames can be specified by reverse direction permission information, and respective transmitters of reverse direction frames can transmit frames at the same time while respecting the specification.
Opening claim text (preview).
The invention claimed is: 1. A communication apparatus, comprising: circuitry configured to: generate a plurality of media access control (MAC) information fields that include trigger information, wherein the trigger information indicates that reverse direction frame transmission is permitted, and wherein the plurality of MAC information fields are addressed to respective communication apparatuses of a plurality of communication apparatuses; transmit the plurality of MAC information fields in a first frame duration to the plurality of communication apparatuses; and receive, in a second frame duration, a plurality of response frames compliant with the trigger information sent from each communication apparatus of the plurality of communication apparatuses, respectively, wherein the plurality of response frames have same frame length. 2. The communication apparatus according to claim 1 , wherein the communication apparatus further comprises a plurality of antenna elements configured to transmit the plurality of MAC information fields, and receive the plurality of response frames. 3. The communication apparatus according to claim 1 , wherein the circuitry is further configured to specify, by the trigger information, the frame length for the plurality of response frames. 4. The communication apparatus according to claim 1 , wherein the circuitry is further configured to specify, by the trigger information, that an uplink multi-user Multi-Input Multi-Output (MU-MIMO) is used for the plurality of response frames. 5. The communication apparatus according to claim 1 , wherein the plurality of response frames are data frames. 6. A communication apparatus, comprising: circuitry configured to: generate a reverse direction response frame that has a frame length specified by trigger information, wherein the generation of the reverse direction response frame is based on a reception of a plurality of Media Access Control (MAC) information fields addressed to the communication apparatus, wherein the plurality of MAC information fields include the trigger information which indicates that reverse direction frame transmission is permitted, and wherein the plurality of MAC information fields are sent in a first frame duration; and transmit the reverse direction response frame in a second frame duration concurrently with a plurality of communication apparatuses that transmit respective reverse direction response frames, wherein the reverse direction response frames transmitted from the plurality of communication apparatuses have the frame length specified by the trigger information. 7. The communication apparatus according to claim 6 , wherein the circuitry is further configured to transmit the reverse direction response frame at a time. 8. The communication apparatus according to claim 6 , wherein the circuitry is further configured to pad the reverse direction response frame such that, the reverse direction response frame has the frame length specified by the trigger information. 9. The communication apparatus according to claim 6 , wherein the trigger information further indicates that an uplink multi-user Multi-Input Multi-Output (MU-MIMO) is used for the reverse direction response frame, and the circuitry is further configured to execute the uplink MU-MIMO for the reverse direction response frame based on the trigger information. 10. The communication apparatus according to claim 6 , wherein the reverse direction response frame is a data frame. 11. A communication method, comprising: generating a plurality of Media Access Control (MAC) information fields that include trigger information, wherein the trigger information indicates that reverse direction frame transmission is permitted, and wherein the plurality of MAC information fields are addressed to respective communication apparatuses of a plurality of communication apparatuses; transmitting the plurality of MAC information fields in a first frame duration to the plurality of communication apparatuses; and receiving, in a second frame duration, a plurality of response frames compliant with the trigger information sent from each communication apparatus of the plurality of communication apparatuses, respectively, wherein the plurality of response frames have same frame length. 12. A communication method, comprising: in a communication apparatus: generating a reverse direction response frame that has a frame length specified by trigger information, wherein the generating of the reverse direction response frame is based on a reception of a plurality of Media Access Control (MAC) information fields, addressed to the communication apparatus, that include the trigger information which indicates that reverse direction frame transmission is permitted, and wherein the plurality of MAC information fields are sent in a first frame duration; and transmitting the reverse direction response frame in a second frame duration simultaneously with a plurality of communication apparatuses that transmit respective reverse direction response frames, wherein the reverse direction response frames transmitted from the plurality of communication apparatuses have the frame length specified by the trigger information. 13. A communication device, comprising: circuitry configured to: generate a plurality of media access control (MAC) information fields that include trigger information, wherein the trigger information indicates that reverse direction frame transmission is permitted, and wherein the plurality of MAC information fields are addressed to respective destinations of a plurality of destinations; transmit the plurality of MAC information fields in a first frame duration to the plurality of destinations; and receive, in a second frame duration, a plurality of response frames compliant with the trigger information sent from the respective destinations of the plurality of destinations, wherein the plurality of response frames have same frame length. 14. The communication device according to claim 13 , wherein the circuitry is further configured to specify, by the trigger information, the frame length for the plurality of response frames. 15. The communication device according to claim 13 , wherein the circuitry is further configured to specify, by the trigger information, that an uplink multi-user Multi-Input Multi-Output (MU-MIMO) is used for the plurality of response frames. 16. A communication device, comprising: circuitry configured to: generate a reverse direction response frame that has a frame length specified by trigger information, wherein the generation of the reverse direction response frame is based on a reception of a plurality of Media Access Control (MAC) information fields addressed to the communication device, wherein the plurality of MAC information fields that include the trigger information which indicates that reverse direction frame transmission is permitted, and wherein the plurality of MAC information fields are sent in a first frame duration; transmit the reverse direction response frame in a second frame duration at a time, wherein the trigger information further indicates that an uplink multi-user Multi-Input Multi-Output (MU-MIMO) is used for the reverse direction response frame, and execute the uplink MU-MIMO for the reverse direction response frame based on the trigger information. 17. The communication device according to claim 16 , wherein the circuitry is further configured to pad the reverse direction response frame such that the reverse direction response fr
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