Claims
- 1. A method comprising:
generating a feedback signal based on a first symbol decision for a first wireless signal observation; applying the feedback signal to a received wireless signal to produced a second wireless signal observation; correlating the second wireless observation with a plurality of candidate modulation patterns; estimating and correcting a phase rotation for each of the modulation patterns; selecting one of the modulation patterns based on a maximum likelihood function; and generating a second symbol decision based on the estimated phase rotation and the selected modulation pattern.
- 2. The method of claim 1, wherein the first and second symbol decisions are CCK symbol decisions.
- 3. The method of claim 1, wherein the maximum likelihood function includes a negative cost function.
- 4. The method of claim 1, wherein generating the feedback signal includes applying a feedback filter to the first symbol decision to cancel intersymbol interference in the second wireless signal observation.
- 5. The method of claim 1, further comprising applying a matched filter to the received wireless signal.
- 6. The method of claim 1, further comprising applying a time-variant matched filter to the received wireless signal.
- 7. The method of claim 1, further comprising a matched filter to the received wireless signal prior to applying the feedback signal to the received wireless signal.
- 8. The method of claim 1, further comprising a matched filter to the receive wireless signal after applying the feedback signal to the received wireless signal.
- 9. The method of claim 1, wherein correlating the second wireless observation includes correlating the second wireless observation in parallel with a bank of correlators.
- 10. The method of claim 1, wherein correlating the second wireless observation includes correlating the second wireless observation with a fast Walsh transformer.
- 11. The method of claim 1, further comprising applying a pattern-dependent bias cancellation to the candidate modulation patterns.
- 12. A wireless communication device comprising:
a feedback loop that generates a feedback signal based on a first symbol decision for a first wireless signal observation, and applies the feedback signal to a received wireless signal to produced a second wireless signal observation; a correlator that correlates the second wireless observation with a plurality of candidate modulation patterns; a phase estimator that estimates a phase rotation of each of the modulation patterns; a phase corrector that corrects the phase rotation for each of the modulation patterns based on the estimated phase rotation; a maximum picker that selects one of the modulation patterns based on a maximum likelihood function; and a symbol estimator that generates a second symbol decision based on the estimated phase rotation and the selected modulation pattern.
- 13. The device of claim 12, wherein the first and second symbol decisions are CCK symbol decisions.
- 14. The device of claim 12, wherein the maximum likelihood function includes a negative cost function.
- 15. The device of claim 12, wherein the feedback loop includes a feedback filter that filters the first symbol decision to cancel intersymbol interference in the second wireless signal observation.
- 16. The device of claim 12, further comprising a matched filter to filter the received wireless signal.
- 17. The device of claim 12, further comprising a time-variant matched filter to filter the received wireless signal.
- 18. The device of claim 12, further comprising a matched filter to filter the received wireless signal prior to application of the feedback signal to the received wireless signal.
- 19. The device of claim 12, further comprising a matched filter to filter the received wireless signal after application of the feedback signal to the received wireless signal.
- 20. The device of claim 12, wherein the correlator includes a bank of correlators that correlate the second wireless observation with the candidate modulation patterns in parallel.
- 21. The device of claim 12, wherein the correlator includes a fast Walsh transformer.
- 22. The device of claim 12, further comprising a pattern-dependent bias cancellation circuit to cancel pattern-dependent bias in the candidate modulation patterns.
- 23. A wireless communication device comprising:
means for generating a feedback signal based on a first symbol decision for a first wireless signal observation; means for applying the feedback signal to a received wireless signal to produced a second wireless signal observation; means for correlating the second wireless observation with a plurality of candidate modulation patterns; means for estimating and correcting a phase rotation for each of the modulation patterns; means for selecting one of the modulation patterns based on a maximum likelihood function; and means for generating a second symbol decision based on the estimated phase rotation and the selected modulation pattern.
- 24. A wireless communication device comprising:
a receiver to receive a wireless signal; a symbol estimator to generate a symbol decision for the received wireless signal; and a symbol decision feedback equalization system to reduce multipath channel effects on the symbol decision based on past symbol decisions.
- 25. The device of claim 24, wherein the symbol decision feedback equalization system includes:
a feedback loop that generates a feedback signal based on a first symbol decision for a first wireless signal observation, and applies the feedback signal to the received wireless signal to produced a second wireless signal observation; a correlator that correlates the second wireless observation with a plurality of candidate modulation patterns; a phase estimator that estimates a phase rotation of each of the modulation patterns; a phase corrector that corrects the phase rotation for each of the modulation patterns based on the estimated phase rotation; and a maximum picker that selects one of the modulation patterns based on a maximum likelihood function, wherein the symbol estimator generates the second symbol decision based on the estimated phase rotation and the selected modulation pattern.
- 26. The device of claim 24, wherein the received signal conforms to one of the IEEE 802.11 wireless communication standards.
Parent Case Info
[0001] This application claims priority from U.S. provisional application serial No. 60/388,997, filed Jun. 12, 2002, the entire content of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60388997 |
Jun 2002 |
US |