Communication apparatus and communication method for PPDU format identification
The present disclosure provides communication apparatus and communication method for PPDU format identification. The communication apparatus includes circuitry adapted to generate a Physical Layer Protocol Data Unit, PPDU, that contains a first signal field, a second signal field and a third signal field; and a transmitter adapted to transmit the generated PPDU, wherein the second signal field indicates whether a physical layer, PHY, version of the generated PPDU is not older than a defined PHY version, and the third signal field contains version independent bits comprising a PHY version identifier that indicates the PHY version of the generated PPDU.
1 . A communication apparatus comprising:
circuitry adapted to generate a Physical Layer Protocol Data Unit, PPDU, that contains a first signal field, a second signal field, a third signal field including a version independent part and a version dependent part, and an Extremely High Throughput signal (EHT-SIG) field or a future signal field defined in future PPDUs newer than an EHT-PPDU; and
a transmitter adapted to transmit the generated PPDU,
wherein the second signal field indicates whether a physical layer (PHY) version of the generated PPDU is not older than a defined PHY version,
wherein the version independent-fields, which are part is consistent in-a statie location across the EHT-PPDU and the future PPDUs,
wherein the version independent part includes a PHY version identifier, an uplink/downlink flag, a basic service set (BSS) color, and a transmission opportunity (TXOP) duration,
wherein the PHY version identifier contains a defined number of version independent bits that indicates the PHY version of the generated PPDU, and
wherein the third signal field is Binary Phase Shift Keying (BPSK) modulated and is consistent across the EHT PPDU and the future PPDUs.
2 . The communication apparatus according to claim 1 , wherein the version dependent part has a variable number of bits.
3 . The communication apparatus according to claim 1 , wherein the second signal field is a repeat of the first signal field.
4 . The communication apparatus according to claim 3 , wherein the second signal field is mapped to tones, and respective values of the second signal field at a part of the tones are generated according to corresponding values of the first signal field at the part of the tones.
5 . The communication apparatus according to claim 4 , wherein respective values of the second signal field at a part of the tones are inverted from corresponding values of the first signal field at the part of the tones.
6 . The communication apparatus according to claim 4 , wherein the tones are data subcarriers.
7 . The communication apparatus according to claim 1 , wherein a PPDU for the defined PHY version is the EHT-PPDU.
8 . The communication apparatus according to claim 1 , wherein the second signal field and the third signal field are encoded in a single Orthogonal Frequency Division Multiplexing (OFDM) symbol.
9 . The communication apparatus according to claim 1 , wherein the first signal field and the second signal field indicate whether the PHY version of the generated PPDU is not older than the defined PHY version.
10 . A communication method comprising:
generating a Physical Layer Protocol Data Unit, PPDU, that contains a first signal field, a second signal field, a third signal field including a version independent part and a version dependent part, and an Extremely High Throughput signal (EHT-SIG) field or a future signal field defined in future PPDUs newer than an EHT-PPDU; and
transmitting the generated PPDU,
wherein the second signal field indicates whether a physical layer (PHY) version of the generated PPDU is not older than a defined PHY version,
wherein the version independent part is consistent in a statie location across the EHT-PPDU and the future PPDUs,
wherein the version independent part includes a PHY version identifier, an uplink/downlink flag, a basic service set (BSS) color, and a transmission opportunity (TXOP) duration,
wherein the PHY version identifier contains a defined number of version independent bits that indicates the PHY version of the generated PPDU, and
wherein the third signal field is Binary Phase Shift Keying (BPSK) modulated and is consistent across the EHT PPDU and the future PPDUs.
11 . The communication method according to claim 10 , wherein the version dependent have part has a variable number of bits.
12 . The communication method according to claim 10 , wherein the second signal field and the third signal field are encoded in a single Orthogonal Frequency Division Multiplexing (OFDM) symbol.