This application is the national stage of International Application No. PCT/CN2020/080457, filed on Mar. 20, 2020. Priority under 35 U.S.C. § 119(a) and 35 U.S.C. § 365(b) is claimed from Chinese Patent Application No. 201910327698.0, filed on Apr. 22, 2019, and entitled “DATA TRANSMISSION METHOD AND DEVICE”, the entire disclosure of which is incorporated herein by reference.
The present disclosure generally relates to communication field, and more particularly, to a data transmission method and device.
In a conventional Wireless Fidelity (Wi-Fi) system, there is merely one Media Access Control (MAC) layer and one physical layer. Therefore, control and management frames (referred as control frames hereinafter) and data frames are transmitted merely on a single link in the Wi-Fi system. Therefore, in some cases, control information of the system cannot be transmitted in time.
At present, there are some solutions for multi-link Wi-Fi systems. However, in multi-link Wi-Fi systems, transmission efficiency of control information still needs to be improved.
In an embodiment of the present disclosure, a data transmission method is provided, wherein the method is applied in a multi-link Wi-Fi system which includes a plurality of links, each of the plurality of links includes a queuing list for determining a transmission order of data in the link, and the method includes: determining a portion of the plurality of links as dedicated link, and the other portion of the plurality of links as ordinary link, wherein the dedicated link is configured to transmit control frames which include ordinary control frames and dedicated control frames, and the ordinary link is configured to transmit data frames and ordinary control frames; determining links for control frames to be transmitted and data frames to be transmitted; and when the dedicated link or the ordinary link obtains a transmission opportunity, transmitting a control frame or a data frame at a head of a queuing list of the link.
Optionally, determining a portion of the plurality of links as dedicated link includes: an Access Point (AP) configuring a portion of the plurality of links as dedicated link.
Optionally, after the portion of the plurality of links is determined as dedicated link, the method further includes: the AP broadcasting index information of the dedicated link.
Optionally, determining a portion of the plurality of links as dedicated link includes: an AP configuring a portion of the plurality of links as dedicated link in a default way.
Optionally, determining a portion of the plurality of links as dedicated link includes: a station (STA) receiving index information of the dedicated link; and configuring a portion of the plurality of links as dedicated link based on the index information.
Optionally, determining a portion of the plurality of links as dedicated link includes: a STA configuring a portion of the plurality of links as dedicated link in a default way.
Optionally, determining links for control frames to be transmitted and data frames to be transmitted includes: configuring the control frames to the dedicated link.
Optionally, determining links for control frames to be transmitted and data frames to be transmitted includes: dividing the control frames to a plurality of groups; and duplicating the plurality of groups of control frames to queuing lists of different dedicated links.
Optionally, after transmission of one ordinary control frame on the ordinary link is completed, the ordinary control frame can be transmitted again on the dedicated link; or, after transmission of one ordinary control frame on the dedicated link is completed, the ordinary control frame can be transmitted again on the ordinary link.
Optionally, after one ordinary control frame starts to be transmitted on the ordinary link, the ordinary control frame can be transmitted again on the dedicated link; or, after one ordinary control frame starts to be transmitted on the dedicated link, the ordinary control frame can be transmitted again on the ordinary link.
Optionally, after transmission of one ordinary control frame on one link is completed, the ordinary control frame cannot be transmitted again on other links.
In an embodiment of the present disclosure, a data transmission device including a memory and a processor is provided, wherein the memory has a computer program stored therein, and when the processor executes the computer program, the above data transmission method is performed.
Embodiments of the present disclosure may provide following advantages.
In embodiments of the present disclosure, the data transmission method includes: determining a portion of a plurality of links as dedicated link, and the other portion of the plurality of links as ordinary link, wherein the dedicated link is configured to transmit control frames which include ordinary control frames and dedicated control frames, and the ordinary link is configured to transmit data frames and ordinary control frames; determining links for control frames to be transmitted and data frames to be transmitted; and when the dedicated link or the ordinary link obtains a transmission opportunity, transmitting a control frame or a data frame at a head of a queuing list of the link. By configuring the dedicated link, transmission efficiency of the control frames may be improved, compatibility with existing systems is relatively good, and complexity of design is relatively low.
Referring to
The multi-link Wi-Fi system may include a STA, an AP and multiple links. Data frames are transmitted on the multiple links between the STA and the AP. In the embodiment as shown in
In some embodiments, the first link CH1 and the second link CH2 may occupy different frequency band resources to implement data transmission. For example, the first link CH1 may occupy a frequency band with a center frequency of 2 GHz, and the second link CH2 may occupy a frequency band with a center frequency of 5 GHz. In some embodiments, the first link CH1 and the second link CH2 may occupy a same frequency band to implement data transmission. In some embodiments, the frequency band shared by the two links may be relatively wide so as to be used for simultaneous data transmission on the two links, or may be used by the two links for data transmission via time division multiplexing.
In the embodiment as shown in
In the embodiment as shown in
Referring to
Referring to
The method is applied in a multi-link Wi-Fi system which includes a plurality of links, and each of the plurality of links includes a queuing list for determining a transmission order of data in the link. The data includes data frames and control frames.
In S11, a portion of the plurality of links is determined as dedicated link, and the other portion of the plurality of links is determined as ordinary link.
The dedicated link is configured to transmit control frames which include ordinary control frames and dedicated control frames, and the ordinary link is configured to transmit data frames and ordinary control frames. That is, the ordinary control frames may be transmitted on the ordinary link or the dedicated link, while the dedicated control frames may be transmitted merely on the dedicated link, and the data frames may be transmitted merely on the ordinary link. The control frames contain control information of the system, and the data frames contain service data.
Referring to
In the embodiment as shown in
In the embodiment as shown in
In the embodiment as shown in
In some embodiments, the AP may configure a portion of the plurality of links as dedicated link, and broadcast index information of the dedicated link. Therefore, the STA can determine which links are dedicated links.
In some embodiments, the AP may configure a portion of the plurality of links as dedicated link in a default way.
In some embodiments, the STA may receive index information of the dedicated link, and configure a portion of the plurality of links as dedicated link based on the index information.
In some embodiments, the STA may configure a portion of the plurality of links as dedicated link in a default way.
In S12, links for control frames to be transmitted and data frames to be transmitted are determined.
In some embodiments, after a portion of the plurality of links is determined as dedicated link, the STA may determine links for control frames to be transmitted and data frames to be transmitted, and add the control frames to be transmitted and the data frames to be transmitted into queuing lists of the corresponding links.
In some embodiments, determining links for control frames to be transmitted and data frames to be transmitted includes: configuring the control frames to the dedicated link.
For example, in the embodiment as shown in
For another example, in the embodiment as shown in
In some embodiments, determining links for control frames to be transmitted and data frames to be transmitted includes: dividing the control frames to a plurality of groups; and duplicating the plurality of groups of control frames to queuing lists of different dedicated links.
For example, in the embodiment as shown in
For another example, in the embodiment as shown in
In S13, when the dedicated link or the ordinary link obtains a transmission opportunity, a control frame or a data frame at a head of a queuing list of the link is transmitted.
In the embodiment as shown in
Embodiments as shown in
Referring to
In some embodiments, after transmission of one ordinary control frame on one link is completed, the ordinary control frame cannot be transmitted again on other links. Referring to
In some embodiments, after transmission of one ordinary control frame on the ordinary link is completed, the ordinary control frame can be transmitted again on the dedicated link; or, after transmission of one ordinary control frame on the dedicated link is completed, the ordinary control frame can be transmitted again on the ordinary link.
In some embodiments, after one ordinary control frame starts to be transmitted on the ordinary link, the ordinary control frame can be transmitted again on the dedicated link; or, after one ordinary control frame starts to be transmitted on the dedicated link, the ordinary control frame can be transmitted again on the ordinary link.
In the embodiment as shown in
In some embodiments, some STAs do not support a multi-link Wi-Fi system, however, the above mechanism that allows ordinary control frames to be repeatedly transmitted on multiple links ensures that the STAs can receive ordinary control frames, thereby improving compatibility and stability of the system.
Referring to
Although the present disclosure has been disclosed above with reference to preferred embodiments thereof, it should be understood that the disclosure is presented by way of example only, and not limitation. Those skilled in the art can modify and vary the embodiments without departing from the spirit and scope of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
201910327698.0 | Apr 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2020/080457 | 3/20/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2020/215948 | 10/29/2020 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
20160309467 | Yerramalli et al. | Oct 2016 | A1 |
20170086204 | Jung et al. | Mar 2017 | A1 |
20170099508 | Hamzeh | Apr 2017 | A1 |
20170230146 | Sun | Aug 2017 | A1 |
20170311204 | Cariou et al. | Oct 2017 | A1 |
20180206143 | Patil et al. | Jul 2018 | A1 |
20180278697 | Cariou et al. | Sep 2018 | A1 |
20210235322 | Jauh | Jul 2021 | A1 |
Number | Date | Country |
---|---|---|
101873700 | Oct 2010 | CN |
103580773 | Feb 2014 | CN |
105553868 | May 2016 | CN |
106455107 | Feb 2017 | CN |
108541399 | Sep 2018 | CN |
109640310 | Apr 2019 | CN |
2018136520 | Jul 2018 | WO |
Entry |
---|
CNIPA First Office Action for corresponding CN Application No. 201910327698.0; dated, Mar. 18, 2021. |
International Search Report with Written Opinion of the International Searching Authority for International Application No. PCT/CN2020/080457; dated May 29, 2020. No English available to date. |
EPO Extended European Search Report for corresponding EP Application No. 20795704.4, dated Dec. 5, 2022. |
Perez et al., “IEEE 802.1 1be Extremely High Throughput: The Next Generation of Wi-Fi Technology Beyond 802.11 ax”, 2019, 6 pages. |
Number | Date | Country | |
---|---|---|---|
20210368388 A1 | Nov 2021 | US |