MY165236A

Method and apparatus for constructing very high throughput long training field sequences

Abstract

Certain aspects of the present disclosure relate to techniques for constructing (902) a training sequence as a part of transmission preamble in an effort to minimize (or at least reduce) a peak-to-average power ratio (PAPR) at a transmitting node (110, 120).

MY165236A, drawing sheet 1
Sheet 1 of 18

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

61 claims: 18 independent, 43 dependent

  1. 1
    CLAIMS 1. A method for wireless communications, comprising:constructing (902), at an apparatus, a long training field (LTF) sequence of a preamble by combining a plurality of interpolating sequences with LTF tone values, wherein the LTF tone values cover at least a portion of bandwidth of a first size, and each of the LTF tone values is repeated one or more times for different subcarriers;and rotating (904), at the apparatus, phases of tones of the LTF sequence per bandwidth of the first size during a transmission of the LTF sequence.
  2. 15
    An apparatus for wireless communications, comprising:a first circuit configured to construct a long training field (LTF) sequence of a preamble by combining a plurality of interpolating sequences with LTF tone values, wherein the LTF tone values cover at least a portion of bandwidth of a first size, and each of the LTF tone values is repeated one or more times for different subcarriers;and a second circuit configured to rotate phases of tones of the LTF sequence per bandwidth of the first size during a transmission of the LTF sequence.
  3. 29
    An apparatus for wireless communications, comprising:means for constructing (902) a long training field (LTF) sequence of a preamble by combining a plurality of interpolating sequences with LTF tone values, wherein the LTF tone values cover at least a portion of bandwidth of a first size, and each of the LTF tone values is repeated one or more times for different subcarriers;and means for rotating (904) phases of tones of the LTF sequence per bandwidth of the first size during a transmission of the LTF sequence.
  4. 43
    A non-transitory computer-readable medium comprising instructions executable to:construct a long training field (LTF) sequence of a preamble by combining a plurality of interpolating sequences with LTF tone values, wherein the LTF tone values cover at least a portion of bandwidth of a first size, and each of the LTF tone values is repeated one or more times for different subcarriers;and rotate phases of tones of the LTF sequence per bandwidth of the first size during a transmission of the LTF sequence.
  5. 46
    An access point (110), comprising:at least one antenna;5 a first circuit configured to construct a long training field (LTF) sequence of a preamble by combining a plurality of interpolating sequences with LTF tone values, wherein the LTF tone values cover at least a portion of bandwidth of a first size, and 10 each of the LTF tone values is repeated one or more times for different subcarriers;a second circuit configured to rotate phases of tones of the LTF sequence per bandwidth of the first size during a transmission of the LTF sequence;and a transmitter configured to transmit via the at least one antenna the LTF 15 sequence within the preamble over a wireless channel by utilizing a bandwidth of a second size.
  6. 49
    A non-transitory machine readable storage medium (306) configured to store a preamble having a long training field (LTF) sequence, wherein the LTF sequence comprises:a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size, wherein each of the LTF tone values is repeated one or more times for different subcarriers;and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size.
  7. 50
    The non-transitory machine readable storage medium (306) recited in claim 49, wherein the bandwidth of the first size comprises at least one of a 20 MHz band or a 40 MHz band.
  8. 51
    The non-transitory machine readable storage medium (306) recited in claim 49, wherein the LTF sequence further comprises:non-pilot tones multiplied with one or more first values, wherein pilot tones are multiplied with one or more second values.
  9. 52
    The non-transitory machine readable storage medium (306) recited in claim 49, wherein the LTF sequence further comprises:different null tone values at different portions of a bandwidth used to transmit the LTF sequence, wherein each of the portions of the bandwidth comprises a 40 MHz band.
  10. 53
    The non-transitory machine readable storage medium (306) recited in claim 49, wherein the preamble further comprises a legacy portion that includes^ Ί 0 MAR ZlW AMENLinflENT one or more tones having phases that are modified according to one or more phase rotation patterns.
  11. 54
    A method for wireless communications, comprising:transmitting a preamble to one or more receiving nodes (110, 120) over a multiple-input multiple- output (ΜΙΜΟ) wireless channel, wherein the preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and rotating phases of tones of the LTF sequence per bandwidth of the first size according to the complementary sequence during the transmitting.
  12. 55
    An apparatus for wireless communications, comprising:a transmitter configured to transmit a preamble to one or more receiving nodes (110, 120) over a multiple-input multiple-output (ΜΙΜΟ) wireless channel, wherein the preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and at least one processor (900) configured to rotate phases of tones of the LTF sequence per bandwidth of the first size according to the complementary sequence during transmission of the preamble.
  13. 56
    An apparatus for wireless communications, comprising:means for transmitting a preamble to one or more receiving nodes (110, 120) over a multiple-input multiple-output (ΜΙΜΟ) wireless channel, wherein the preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and means for rotating phases of tones of the LTF sequence per bandwidth of the first size according to the complementary sequence during transmission of the preamble.
  14. 57
    A non-transitory computer-readable medium comprising instructions executable to:transmit a preamble to one or more receiving nodes (110, 120) over a multiple-input multiple-output (ΜΙΜΟ) wireless channel, wherein the preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and rotate phases of tones of the LTF sequence per bandwidth of the first size according to the complementary sequence during transmission of the preamble.
  15. 58
    A method for wireless communications, comprising:receiving a preamble from a transmitting node over a multiple-input multiple-output (ΜΙΜΟ) wireless channel, wherein the received preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and estimating the ΜΙΜΟ wireless channel from the transmitting node based at least in part on the LTF sequence in the received preamble.
  16. 59
    An apparatus for wireless communications, comprising:a receiver configured to receive a preamble from a transmitting node over a multiple- input multiple-output (ΜΙΜΟ) wireless channel, wherein the received preamble comprises a long training field (LTF) sequi interpolating sequences combined with LTF tone val portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and at least one processor (900) configured to estimate the ΜΙΜΟ wireless 5 channel from the transmitting node based at least in part on the LTF sequence in the received preamble.
  17. 60
    An apparatus for wireless communications, comprising:means for receiving a preamble from a transmitting node over a multipleio input multiple- output (ΜΙΜΟ) wireless channel, wherein the received preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the 15 LTF tone values is repeated one or more times for different subcarriers;and means for estimating the ΜΙΜΟ wireless channel from the transmitting node based at least in part on the LTF sequence in the received preamble.
  18. 61
    A non-transitory computer-readable medium comprising instructions 20 executable to:receive a preamble from a transmitting node over a multiple-input multipleoutput (ΜΙΜΟ) wireless channel, wherein the received preamble comprises a long training field (LTF) sequence having a plurality of interpolating sequences combined with LTF tone values that cover at least a portion of bandwidth of a first 25 size and a complementary sequence equivalent to phase rotation on each portion of the bandwidth of the first size, and wherein each of the LTF tone values is repeated one or more times for different subcarriers;and estimate the ΜΙΜΟ wireless channel from the transmitting node based at least in part on the LTF sequence in the received preamble.
Independent claims18