AP1092A

Method and apparatus for fine frequency synchronization in multi-carrier demodulation systems.

Abstract

A method and an apparatus relate to a fine frequency synchronization compensating for a carrier frequency deviation from an oscillator frequency in a multi-carrier demodulation system (130)of the type capable of carrying out a differential phase decoding of multi-carrier modulated signals, the signals comprising a plurality of symbols (200), each symbol being defined by phase differences between simultaneous carriers (202)having different frequencies. A phase difference between phases of the same carrier (202)in different symbols (200)is determined. Thereafter, a frequency offset is determined by eliminating phase shift uncertainties corresponding to codeable phase shifts from the phase difference. Finally, a feedback correction of the carrier frequency deviation is performed based on the determined frequency offset. Alternatively, an averaged frequency offset can be determined by averaging determined frequency offsets of a plurality of carriers (202). Then, the feedback correction of the frequency deviation is performed based on the averaged frequency offset.

AP1092A, drawing sheet 1
Sheet 1 of 13

Term

No projected expiry on record.

  1. Priority and filed
  2. Granted
  3. Today

15 claims: 5 independent, 10 dependent

  1. 1
    What is claimed is 1. A method of performing a fine frequency synchronization 5 compensating for a carrier frequency deviation from an oscillator frequency in a multi-carrier demodulation system of the type capable of carrying out a differential phase decoding of multi-carrier modulated signals, said signals comprising a plurality of symbols, each 10 symbol being defined by phase differences between simultaneous carriers having different frequencies, said method comprising the steps of:a) determining a phase difference between phases of 15 the same carrier in different symbols;b) determining a frequency offset by eliminating phase shift uncertainties related to the transmitted information from said phase difference making use of 20 a M-PSK decision device;and c) performing a feedback correction of said carrier frequency deviation based on said determined frequency offset.
  2. 2
    A method of performing a fine frequency synchronization compensating for a carrier frequency deviation from an oscillator frequency in a multi-carrier demodulation system of the type capable of carrying out a differen30 tial phase decoding of multi-carrier modulated signals, said signals comprising a plurality of symbols, each symbol being defined by phase differences between siΑΡ/Γ7 0 0 / 0 1 9 27 AF Ο ο 1 Ο 9 2 - 47 multaneous carriers having different frequencies, said method comprising the steps of:a) determining respective phase of the same carrier in
  3. 3
    5 different symbols;b) eliminating phase shift uncertainties related to the transmitted information from said phases to determine respective phase deviations making use of a 10 M-PSK decision device;c) determining a frequency offset by determining a phase difference between said phase deviations;and d) performing a feedback correction of said carrier frequency deviation based on said determined frequency offset. The method according to claim 1, wherein 00/01927 U CL said steps a) and b) are performed for a plurality of carriers in said symbols, an averaged frequency offset is determined by averaging 25 said determined frequency offsets of said plurality of carriers, and said feedback correction of said frequency deviation is performed based on said averaged frequency offset in 30 said step c). 4. The method according to claim 2, wherein ρ 0 0 1 0 9 2 - 48 said steps a), b) and c) are performed for a plurality of carriers in said symbols, 5 an averaged frequency offset is determined by averaging said determined frequency offsets of said plurality of carriers, and said feedback correction of said frequency deviation is 10 performed based on said averaged frequency offset. 5. The method according to claim 1, wherein said step a) comprises the step of determining a phase difference between phases of the same carrier in symbols which are 15 adjacent in the time axis direction.
  4. 7
    9. An apparatus for performing a fine frequency synchroni30 zation compensating for a carrier frequency deviation from an oscillator frequency, for a multi-carrier demodulation system of the type capable of carrying out a ΑΡ/Γ/00 / 0 1 9 27 APυ Ο 1 Ο 9 2 - 49 differential phase decoding of multi-carrier modulated signals, said signals comprising a plurality of symbols, each symbol being defined by phase differences between simultaneous carriers having different frequen5 cies, said apparatus comprising:means for determining a phase difference between phases of the same carrier in different symbols;
  5. 8
    10 M-PSK decision device for determining a frequency offset by eliminating phase shift uncertainties related to the transmitted information from said phase difference; and 15 means for performing a feedback correction of said frequency deviation based on said determined frequency offset. 10. An apparatus for performing a fine frequency synchroni20 zation compensating for a carrier frequency deviation from an oscillator frequency, for a multi-carrier demodulation system of the type capable of carrying out a differential phase decoding of multi-carrier modulated signals, said signals comprising a plurality of sym25 bols, each symbol being defined by phase differences between simultaneous carriers having different frequencies, said apparatus comprising:means for determining respective phases of the same 30 carrier in different symbols;ΑΡ/Γ/ 00/01927 AP Q Ο 1 ο 9 2 - 50 M-PSK decision device for eliminating phase shift uncertainties related to the transmitted information from said phases to determine respective phase deviations;5 means for determining a frequency offset by determining a phase difference between said phase deviations;means for performing a feedback correction of said frequency deviation based on said determined frequency 10 offset.
  6. 15
    20 said numerical controlled oscillator.