Claims
- 1. An equalizer of a single carrier receiver, comprising:
a pre-ghost detection unit detecting one ghost from ghosts having levels higher than a predetermined threshold and detecting a time delay of the detected ghost with respect to a main ghost; a delay unit delaying an input field synchronization signal for the time delay and outputting a delay signal indicative thereof; an FF unit receiving a pre-ghost to filter the ghosts received before the detected ghost; and an FB unit receiving the delayed field synchronization signal to filter the ghosts received after the detected ghost.
- 2. The equalizer according to claim 1, further comprising:
a first adding unit adding output signals from the FF unit and the FB unit and outputting an output signal indicative thereof; and a second adding unit calculating an equalization error by using the output signal from the first adding unit and the delay signal or the delayed field synchronization signal from the delay unit, wherein the FF unit and FB unit filter the ghosts received before and after the detected ghost, respectively, according to the equalization error.
- 3. The equalizer according to claim 1, wherein the FF unit comprises an FIR type first filter and the FB unit includes an IIR type second filter, wherein the FF unit and FB unit update coefficients of the first and second filters, respectively, according to the equalization error.
- 4. The equalizer according to claim 1, wherein the pre-ghost detection unit comprises:
a correlation value calculation unit calculating a correlation value between the pre-ghost received and the field synchronization signal; a multipath estimation unit cumulating correlation values calculated using a plurality of field synchronization signals to estimate a multipath of the pre-ghost received; and a pre-ghost decision unit detecting the ghost from the ghosts having the levels higher than the predetermined threshold and detecting the time delay of the detected ghost.
- 5. The equalizer according to claim 4, wherein the pre-ghost decision unit detects one ghost received at first from the ghosts having the higher levels than the predetermined threshold as a main signal to detect the time delay of the detected ghost.
- 6. An equalization method of a single carrier receiver, comprising:
detecting one ghost from ghosts having levels higher than a predetermined threshold as a pre-ghost and detecting a time delay of the detected pre-ghost with respect to a main ghost; delaying an input field synchronization signal for the time delay; and filtering the ghosts received before and after the detected ghost.
- 7. The equalization method according to claim 6, further comprising:
calculating an equalization error using the delayed field synchronization signal, wherein the filtering of the ghosts filters the ghosts received before and after the detected ghost according to the equalization error.
- 8. The equalization method according to claim 6, wherein the filtering of the ghosts filters using an FIR type first filter and an IIR type second filter, the ghosts received before and after the detected ghost by updating coefficients of the first and second filters, respectively, according to the equalization error.
- 9. The equalization method according to claim 6, wherein the detecting of the pre-ghost comprises:
calculating a correlation value between the pre-ghost received indicative of the ghosts received before the detected ghost and the field synchronization signal; estimating a multipath of the pre-ghost received by cumulating correlation values calculated using a plurality of field synchronization signals; and detecting the ghost from the ghosts having the levels higher than the predetermined threshold and detecting the time delay of the detected ghost.
- 10. The equalization method according to claim 9, wherein the detecting of the ghost detects a ghost received at first from the ghosts having higher levels than the predetermined threshold to detect the time delay of the detected ghost.
- 11. An equalizer for a single carrier receiver, comprising:
a pre-ghost detection unit detecting one ghost from ghosts having levels higher than a predetermined threshold and detecting a time delay of the detected ghost with respect to a main ghost; a field synchronization signal generation unit generating a first field synchronization signal delayed for the time delay; an FF unit receiving a pre-ghost to filter the ghosts received before the detected ghost; and an FB unit receiving the delayed first field synchronization signal to filter the ghosts received after the detected ghost.
- 12. The equalizer according to claim 11, further comprising:
a first adding unit adding output signals from the FF unit and the FB unit and outputting an output signal indicative thereof; and a second adding unit calculating an equalization error by using the output signal from the first adding unit and the delayed first field synchronization signal from the field synchronization signal generation unit, wherein the FF unit and FB unit filter the ghosts received before and after the detected ghost, respectively, according to the equalization error.
- 13. The equalizer according to claim 11, wherein the FF unit comprises an FIR type first filter and the FB unit includes an IIR type second filter, wherein the FF unit and FB unit update coefficients of the first and second filters, respectively, according to the equalization error.
- 14. The equalizer according to claim 11, wherein the pre-ghost detection unit includes:
a correlation value calculation unit calculating a correlation value between the pre-ghost received and an input second field synchronization signal; a multipath estimation unit cumulating correlation values calculated using a plurality of second field synchronization signals to estimate a multipath of the pre-ghost received; and a pre-ghost decision unit detecting the ghost from the ghosts having levels higher than the predetermined threshold and detecting the time delay of the detected ghost.
- 15. The equalizer according to claim 14, wherein the pre-ghost decision unit detects one ghost received at first from the ghosts having the higher levels than the predetermined threshold as the main signal to detect the time delay of the detected ghost.
- 16. An equalization method of a single carrier receiver, comprising:
detecting one ghost from ghosts having levels higher than a predetermined threshold as a pre-ghost and detecting a time delay of the detected pre-ghost with respect to a main ghost; generating a first field synchronization signal delayed for the time delay; and filtering the ghosts received before and after the detected ghost.
- 17. The equalization method according to claim 16, further comprising:
calculating an equalization error using the delayed first field synchronization signal, wherein the filtering of the ghosts filters the ghosts received before and after the detected ghost according to the equalization error.
- 18. The equalization method according to claim 16, wherein the filtering of the ghosts filters using an FIR type first filter and an IIR type second filter, the ghosts received before and after the detected ghost by updating coefficients of the first and second filters, respectively, according to the equalization error.
- 19. The equalization method according to claim 16, wherein the detecting of the pre-ghost comprises:
calculating a correlation value between a pre-ghost received indicative of the ghosts received before the detected ghost and an input second field synchronization signal; estimating a multipath of the pre-ghost received by cumulating correlation values calculated using a plurality of input second field synchronization signals; and detecting the ghost from the ghosts having the levels higher than the predetermined threshold and detecting the time delay of the detected ghost.
- 20. The equalization method according to claim 19, wherein the detection of the ghost detects a ghost received at first from the ghosts having the higher levels than the predetermined threshold to detect the time delay of the detected ghost.
- 21. An equalizer of a single carrier receiver, comprising:
an FF (Feed Forward) unit filtering pre-ghosts received before a main-ghost; an FB (Feed Back) unit filtering post-ghosts received after the main-ghost; a first adder adding the filtered pre-ghosts and post-ghosts and outputting a resulting signal indicative thereof; a pre-ghost detector detecting one ghost from ghosts having levels higher than a predetermined threshold from the pre-ghosts received before the main-ghost, and detecting a time delay of the detected ghost; a delay unit delaying a field synchronization signal for the detected time delay and outputting the field synchronization signal to the FB unit; and a second adder calculating an equalization error by adding the resulting signal from the first adder and the delayed field synchronization signal, and using the equalization error to update coefficients of the FF unit and the FB unit.
- 22. The equalizer according to claim 21, wherein the main ghost is a signal having a highest level among multipath signals.
- 23. The equalizer according to claim 21, wherein the FF unit is an FIR type filter and the FB unit is an IIR type filter.
- 24. The equalizer according to claim 21, wherein the pre-ghost detector comprises:
a correlation value calculator calculating a correlation value using a correlation between the pre-ghost received before the main-ghost and the field synchronization signal, a multipath estimation unit estimating a delay profile of the pre-ghost received, and a pre-ghost decision unit detecting one ghost from the ghosts having levels higher than the predetermined threshold out of the pre-ghosts received prior to the ghost having the highest level, based on the estimated delay profile, and detecting the time delay of the detected ghost.
- 25. The equalizer according to claim 24, wherein the ghost detected by the pre-ghost decision unit is a ghost received at first or the ghost having the highest level from the ghosts having higher levels than the predetermined threshold.
- 26. The equalizer according to claim 21, wherein the ghosts of the received signal are filtered with reference to the ghost detected by the pre-ghost decision unit, from the ghosts received before the ghost having the highest level, by synchronizing the field synchronization signal from the field synchronization generator with the detected ghost.
- 27. An equalization method of a single carrier receiver, comprising:
filtering pre-ghosts received before a main-ghost; filtering post-ghosts received after the main-ghost; adding the filtered pre-ghosts and post-ghosts and outputting a resulting signal indicative thereof; detecting one ghost from ghosts having levels higher than a predetermined threshold from the pre-ghosts received before the main-ghost; detecting a time delay of the detected ghost; delaying a field synchronization signal for the detected time delay of the detected ghost; and calculating an equalization error by adding the resulting signal and the delayed field synchronization signal.
- 28. An equalization method of a single carrier receiver, comprising:
detecting one ghost from ghosts having higher levels than a predetermined threshold by applying the predetermined threshold to a pre-ghost received before the ghost having the highest level; detecting a time delay of the detected ghost; delaying an input field synchronization signal for the time delay; and filtering the ghosts received before and after the detected ghost.
- 29. The equalization method of claim 28, further comprising:
calculating a correlation value using a correlation between the pre-ghost received and the input field synchronization signal.
- 30. The equalization method of claim 28, wherein a plurality of field synchronization signals is used to calculate correlation values to be cumulated to estimate a multipath of the pre-ghost received.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-52626 |
Sep 2002 |
KR |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the priority of Korean Patent Application No. 2002-52626, filed Sep. 2, 2003 in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference.