FRAME TRANSMITTING METHOD AND FRAME RECEIVING METHOD
A method of transmitting a frame is provided by a device in a WLAN. The device sets as additional data subcarriers some of subcarriers which are not set as data subcarriers in at least part of fields included in a frame of a legacy frame format, and allocates information to the additional data subcarriers.
1 . A first wireless device comprising:
a processor,
wherein the first wireless device is configured to:
transmit, using a first 20 MHz channel of a plurality of 20 MHz channels, a Ready-To-Send (RTS) frame;
receive, using the first 20 MHz channel, a Clear-To-Send (CTS) frame responsive to the RTS frame from a second wireless device;
transmit, using a second 20 MHz channel of the plurality of 20 MHz channels and a third 20 MHz channel of the plurality of 20 MHz channels, a data frame to the second wireless device; and
receive, using the second 20 MHz channel and the third 20 MHz channel, an Acknowledgement (ACK) frame responsive to the data frame,
wherein a fourth 20 MHz channel of the plurality of 20 MHz channels occupies a bandwidth between the second 20 MHz channel and the third 20 MHz channel,
wherein the fourth 20 MHz channel is not used to transmit the data frame, and
wherein the fourth 20 MHz channel is not used to receive the ACK frame.
2 . The first wireless device of claim 1 , wherein the second 20 MHz channel is not a primary 20 MHz channel of the plurality of 20 MHz channels, and wherein the third 20 MHz channel is not the primary 20 MHz channel.
3 . The first wireless device of claim 1 , wherein the first 20 MHz channel is the primary 20 MHz channel.
4 . The first wireless device of claim 1 , wherein the second 20 MHz channel is same 20 MHz channel as the first 20 MHz channel.
5 . The first wireless device of claim 1 , wherein transmitting the RTS frame comprises:
transmitting, using a subcarrier within the first 20 MHz channel, an indication that the data frame will be transmitted using the second 20 MHz channel and the third 20 MHz channel, wherein the index of the subcarrier is selected from −28, −27, 27 and 28.
6 . The first wireless device of claim 1 , wherein transmitting the RTS frame comprises transmitting a copy of the RTS frame on each of the plurality of 20 MHz channels.
7 . A method performed by a wireless device, the method comprising:
transmitting, using a first 20 MHz channel of a plurality of 20 MHz channels, a Ready-To-Send (RTS) frame;
receiving, using the first 20 MHz channel, a Clear-To-Send (CTS) frame responsive to the RTS frame from a second wireless device;
transmitting, using a second 20 MHz channel of the plurality of 20 MHz channels and a third 20 MHz channel of the plurality of 20 MHz channels, a data frame to the second wireless device; and
receiving, using the second 20 MHz channel and the third 20 MHz channel, an Acknowledgement (ACK) frame responsive to the data frame,
wherein a fourth 20 MHz channel of the plurality of 20 MHz channels occupies a bandwidth between the second 20 MHz channel and the third 20 MHz channel,
wherein the fourth 20 MHz channel is not used to transmit the data frame, and
wherein the fourth 20 MHz channel is not used to receive the ACK frame.
8 . The method of claim 7 , wherein the second 20 MHz channel is not a primary 20 MHz channel of the plurality of 20 MHz channels, and wherein the third 20 MHz channel is not the primary 20 MHz channel.
9 . The method of claim 7 , wherein the first 20 MHz channel is the primary 20 MHz channel.
10 . The method of claim 7 , wherein the second 20 MHz channel is same 20 MHz channel as the first 20 MHz channel.
11 . The method of claim 7 , wherein transmitting the RTS frame comprises:
transmitting, using a subcarrier within the first 20 MHz channel, an indication that the data frame will be transmitted using the second 20 MHz channel and the third 20 MHz channel, wherein the index of the subcarrier is selected from −28, −27, 27 and 28.
12 . The method of claim 7 , wherein transmitting the RTS frame comprises transmitting a copy of the RTS frame on each of the plurality of 20 MHz channels.
13 . A non-transistor computer-readable media (CRM) comprising computer programming instructions which, when executed by one or more processors of a wireless device, cause the wireless device to perform steps comprising:
transmitting, using a first 20 MHz channel of a plurality of 20 MHz channels, a Ready-To-Send (RTS) frame;
receiving, using the first 20 MHz channel, a Clear-To-Send (CTS) frame responsive to the RTS frame from a second wireless device;
transmitting, using a second 20 MHz channel of the plurality of 20 MHz channels and a third 20 MHz channel of the plurality of 20 MHz channels, a data frame to the second wireless device; and
receiving, using the second 20 MHz channel and the third 20 MHz channel, an Acknowledgement (ACK) frame responsive to the data frame,
wherein a fourth 20 MHz channel of the plurality of 20 MHz channels occupies a bandwidth between the second 20 MHz channel and the third 20 MHz channel,
wherein the fourth 20 MHz channel is not used to transmit the data frame, and
wherein the fourth 20 MHz channel is not used to receive the ACK frame.
14 . The non-transitory CRM of claim 13 , wherein the second 20 MHz channel is not a primary 20 MHz channel of the plurality of 20 MHz channels, and wherein the third 20 MHz channel is not the primary 20 MHz channel.
15 . The non-transitory CRM of claim 13 , wherein the second 20 MHz channel is same 20 MHz channel as the first 20 MHz channel.
16 . The non-transitory CRM of claim 13 , wherein transmitting the RTS frame comprises:
transmitting, using a subcarrier within the first 20 MHz channel, an indication that the data frame will be transmitted using the second 20 MHz channel and the third 20 MHz channel, wherein the index of the subcarrier is selected from −28, −27, 27 and 28.
17 . The non-transitory CRM of claim 13 , wherein transmitting the RTS frame comprises transmitting a copy of the RTS frame on each of the plurality of 20 MHz channels.