Claims
- 1. A method for estimating a bit error rate of a received signal of a wireless telecommunication system, said method comprising the steps of:
a) estimating a channel impulse response based on said received signal; b) subjecting said received signal to a channel equalizing operation performed on the basis of time statistics derived from said channel impulse response; c) determining adaptive reference time domain characteristics based on an actual weighting information obtained from said channel estimating step; d) subjecting said received signal to a reference channel equalizing operation performed on the basis of said adaptive reference time domain characteristics; and e) estimating said bit error rate by comparing output signals of said channel equalizing operation and said reference channel equalizing operation.
- 2. A method according to claim 1, wherein said received signal is a matched filtered signal, and wherein said actual weighting information comprises an information obtained from a corresponding matched filter operation.
- 3. A method according to claim 1, wherein said channel impulse response is estimated by using correlations between received and known training sequencies.
- 4. A method according to claim 3, wherein said correlations represent delay spread and multi path propagation effects caused by a radio channel through which said received signal has been transmitted.
- 5. A method according to claim 3, wherein said correlations are used in said channel equalizing operation as a decision metric addition to matched filtered samples.
- 6. A method according to claim 1, wherein said adaptive reference time domain characteristics are used as a channel delay spread and signal distortion metric in said reference channel equalizing operation.
- 7. A method according to claim 1, wherein said estimating of said bit error rate is performed by calculating a difference between said output signals of said channel equalizing operation and said reference channel equalizing operation over a predetermined measuring period.
- 8. A method for estimating a bit error probability of a received signal of a wireless telecommunication system, said method comprising the steps of:
a) estimating a channel impulse response from said received signal; b) subjecting said received signal to a channel equalizing operation performed on the basis of time statistics derived from said channel impulse response; and c) calculating said bit error probability by using an actual weighting information obtained from said channel estimation step and an output signal of said channel equalizing operation.
- 9. A method according to claim 8, wherein said bit error probability is calculated burstwise on the basis of the following equation:
- 10. A method according to claim 9, wherein said channel-specific parameter is a constant.
- 11. A method according to claim 9, wherein said channel-specific parameter is calculated on the basis of the following equation:
- 12. A method according to claim 9, wherein said channel-specific parameter is determined in dependence on an amount of phase error determined in said channel equalizing operation.
- 13. A method according to claim 9, wherein said channel-specific parameter is determined in dependence on an amount of energy included in a predetermined number of taps of said estimated channel impulse response.
- 14. A method according to claim 8, wherein said calculating said bit error probability is performed in dependence on a relation between a standard deviation or variance and the mean of the means of a predetermined number of soft bits obtained from said channel equalizing operation.
- 15. A method according to claim 14, wherein said bit error probability is calculated using only said predetermined number of soft bits of a block with a smallest mean, if said relation exceeds a predetermined threshold.
- 16. An apparatus for estimating a bit error rate in a received signal of a wireless telecommunication system, said apparatus comprising:
a) estimating means (1) for estimating a channel impulse response based on said received signal; b) channel equalizing means (4) for subjecting said received signal to a channel equalizing operation performed on the basis of time statistics derived from said channel impulse response; c) determining means (7) for determining adaptive reference time domain characteristics based on an actual weighting information supplied from said estimating means (1); d) reference channel equalizing means (5) for subjecting said received signal to a reference channel equalizing operation performed on the basis of said adaptive reference time domain characteristics; and e) comparing means (6) for comparing output signals of said channel equalizing means (4) and said reference channel equalizing means (5) to obtain said estimation of said bit error rate.
- 17. An apparatus according to claim 16, further comprising a matched filter (3) through which said received signal is supplied to said channel equalizing means (4) and said reference channel equalizing means (5), wherein said weighting information comprises an information obtained from said matched filter (3).
- 18. An apparatus according to claim 16, wherein said estimating means (1) is arranged to estimate said channel impulse response by using correlations between received and known training sequences.
- 19. An apparatus according to claim 18, wherein said channel equalizing means (4) is arranged to use said correlations as a decision metric addition to matched filtered samples.
- 20. An apparatus according to claim 16, wherein said reference channel equalizing means (5) is arranged to use said adaptive reference time domain characteristics as a channel delay spread and signal distortion metric.
- 21. An apparatus according to claim 16, wherein said comparing means (6) comprises counting means for counting the differences between the output signals of said channel equalizing means (4) and said reference channel equalizing means (5) over a predetermined measuring period.
- 22. An apparatus for estimating a bit error probability of a received signal of a wireless telecommunication system, said apparatus comprising:
a) estimating means (1) for estimating a channel impulse response based on said received signal; b) channel equalizing means (4) for subjecting said received signal to a channel equalizing operation performed on the basis of time statistics derived from said channel impulse response; and c) calculating means (10) for calculating said error probability by using an actual weighting information obtained from said estimating means (1) and an output signal of said channel equalizing means (4).
- 23. An apparatus according to claim 22, wherein said calculating means (10) is arranged to determine a channel-specific parameter in dependence on an amount of phase error determined in said channel equalizing means (4).
- 24. An apparatus according to claim 23, wherein said calculating means (10) is arranged to determine said channel-specific parameter in dependence on an amount of energy included in a predetermined number of taps of said estimated channel impulse response and obtained from said estimating means (1).
- 25. An apparatus according to claim 22, wherein said calculating means (10) is arranged to calculate said bit error probability in dependence on a relation between a standard deviation or variance and the means of a predetermined number of soft bits.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of International Application PCT/EP00/05687 having an international filing date of Jun. 20, 2000 and from which priority is claimed under all applicable sections of Title 35 of the United States Code including, but not limited to, Sections 120, 363 and 365(c).
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/05687 |
Jun 2000 |
US |
Child |
10067088 |
Feb 2002 |
US |