EP1363435A2

Estimation of offsets carrier and sampling frequency in a multicarrier receiver

Abstract

A method (300) for estimating carrier frequency offset (CFO) and sampling frequency offset (SFO) in an Orthogonal Frequency Division Multiplexing (OFDM) system having a plurality of pilot tones. The absolute phase angle for each pilot tone is measured, and estimates of the CFO and the SFO are derived using a weighted least-squares methodology. More particularly, the phase of each pilot tone is measured for a number (n) of symbol times (302); for each of the pilot tones, the slope of a phase angle change from symbol time to symbol time is estimated using a best least-squares fit of the measured phases to a straight line (304, 306); and a weighted least-squares best-fit straight line is determined to find an estimated phase angle differential value (α(i)) for each pilot tone (308); wherein a slope of the best-fit straight line yields an estimate of the SFO (310), and an intercept with the best-fit straight line yields an estimate of the CFO (310). The plurality of pilot tones may have frequencies which are symmetrically disposed about a reference frequency, and there may be four pilot tones. The OFDM communications system is suitably a wireless LAN (WLAN) implementing a standard such as IEEE 802.11a or HiperLAN/2. Corresponding apparatus is also described.

EP1363435A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 13 May 2023, 3.4 years ago.

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10 claims: 5 independent, 5 dependent

  1. 1
    A method for estimating carrier frequency offset (CFO) and sampling frequency offset (SFO) in an Orthogonal Frequency Division Multiplexing (OFDM) communications system having a plurality of pilot tones, comprising:measuring an absolute phase angle for each pilot tone;andfitting a straight line to the measured phase angles to derive estimates of the CFO and the SFO.
  2. 3
    A method for estimating carrier frequency offset (CFO) and sampling frequency offset (SFO) in an Orthogonal Frequency Division Multiplexing (OFDM) communications system having a plurality of pilot tones, comprising:a. measuring phases of each of the pilot tones for a number (n) of symbol times;b. for each of the pilot tones, estimating the slope of a phase angle change from symbol time to symbol time using a fit of the measured phases to a straight line;andc. determining a best-fit straight line to find an estimated phase angle differential value (α(i)) for each pilot tone;wherein a slope of the best-fit straight line yields an estimate of the SFO, and an intercept with the best-fit straight line yields an estimate of the CFO.
  3. 5
    A method for estimating carrier frequency offset (CFO) and sampling frequency offset (SFO) in an Orthogonal Frequency Division Multiplexing (OFDM) communications system having a plurality of pilot tones, comprising:making phase angle measurements for each of the pilot tones over a number (n) of symbol times;calculating a least-squares best-fit (LSBF) straight line for each of the pilot tones;determining the slopes of the LSBF straight lines;using the slopes of the LSBF straight lines to estimate phase angle differential values for each pilot tone;using the estimates of phase angle differential values, producing a weighted LSBF straight-line, wherein the weighting is based upon a strength of the phase angle differential values estimates;using the slope of the weighted LSBF straight line, estimating the SFO;andusing the intercept of the weighted LSBF straight line, estimating the CFO.
  4. 7
    Apparatus for estimating carrier frequency offset (CFO) and sampling frequency offset (SFO) in an Orthogonal Frequency Division Multiplexing (OFDM) communications system having a plurality of pilot tones, comprising:means for measuring an absolute phase angle for each pilot tone;andmeans for estimating the CFO and the SFO using a straight line fitting methodology.
  5. 9
    Apparatus for estimating carrier frequency offset (CFO) and sampling frequency offset (SFO) in an Orthogonal Frequency Division Multiplexing (OFDM) system having a plurality of pilot tones, comprising:means for determining the phases of each of the pilot tones for a plurality of symbol times "n";means for estimating, for each of the pilot tones, the slope of the phase angle change from symbol time to symbol time by using a best least-squares fit of the measured phases to a first straight line, wherein the slope of the first straight line produces an estimate of α(i);andmeans for determining a weighted least-squares best-fit to a second straight line from the estimated α(i) values, said second straight line having a slope and an intercept, such that the slope of the best-fit straight line yields an estimate of the SFO, and the intercept yields an estimate of the CFO.