Claims
- 1. A device for reducing ingress noise in a digital signal, characterized in that it comprises:
noise predicting means for predicting an amount of ingress noise in the digital signal, and first subtracting means for subtracting the predicted amount of ingress noise from the digital signal.
- 2. The device according to claim 1, wherein the noise predicting means comprises:
a noise predictor comprising a storage unit for receiving and storing past samples of the ingress noise and a linear noise predicting filter for predicting said amount of ingress noise based on said past samples, decision means for outputting symbols (dn) corresponding to samples (sn) of the digital signal, and second subtracting means for subtracting said symbols from said samples of the digital signal to provide said past samples of the ingress noise.
- 3. The device according to claim 1, further comprising an equalizer having noise-independent coefficients for compensating for inter-symbol interference in the digital signal.
- 4. The device according to claim 3, wherein said equalizer is placed upstream of said noise predicting means.
- 5. The device according to claim 3, wherein said equalizer is a zero-forcing equalizer.
- 6. The device according to claim 1, further comprising adaptation means for adapting coefficients of a linear noise predicting filter in said noise predicting means to variations of the ingress noise in the digital signal.
- 7. The device according to claim 6, wherein said adaptation means are arranged to perform an adaptive algorithm.
- 8. The device according to claim 7, wherein said adaptation means are arranged to perform said adaptive algorithm using tap leakage for stabilizing the coefficients of the linear noise predicting filter.
- 9. The device according to claim 2, further comprising phase compensation means arranged to receive an output signal of the first subtracting means of said device, to recover a carrier phase in said output signal and to compensate said carrier phase in said output signal before said output signal is applied to the decision means of said device.
- 10. A communication system for use as a termination system for a plurality of transmitters in a TDMA network, said communication system comprising:
a modulator; a demodulator including a linear noise predicting filter; and a control unit,
wherein the demodulator reduces ingress noise in a digital signal received from at least one of said transmitters and the control unit is arranged to control the demodulator so that the coefficients of the linear noise predicting filter in the demodulator are adapted at least during reserved time slots in which no transmitter is allowed to transmit towards the communication system.
- 11. A communication system for use as a termination system for a plurality of transmitters in a TDMA network, said communication system comprising:
a modulator; a demodulator including a linear noise predicting filter; and a control unit,
wherein the demodulator reduces ingress noise in a digital signal received from at least one of said transmitters and the control unit is arranged to control the demodulator so that coefficients of the linear noise predicting filter in the demodulator are adapted at least during reserved time slots in which no transmitter is allowed to transmit towards the communication system and to control the demodulator so that said demodulator outputs decision symbols (dn) which are systematically equal to zero during the reserved time slots.
- 12. The communication system according to claim 10, wherein the control unit is arranged to control the demodulator so that the coefficients of the linear noise predicting filter are adapted only during the reserved time slots in which no transmitter is allowed to transmit towards the communication system.
- 13. The communication system according to claim 10, wherein the control unit is arranged to control the demodulator so that the coefficients of the linear noise predicting filter are continuously adapted both during the reserved time slots in which no transmitter is allowed to transmit towards the communication system and during time slots allocated for data transmission from the transmitters.
- 14. The communication system according to claim 10, wherein the system terminates cable modems for use in an hybrid fiber/coax network.
- 15. A cable modem termination system for a hybrid fiber/coax network, comprising
a modulator; a demodulator; and a control unit connected to the modulator and the demodulator,
wherein said demodulator comprises noise predicting means for predicting an amount of ingress noise in the digital signal and subtracting means for subtracting the predicted amount of ingress noise from the digital signal.
- 16. A method for reducing ingress noise in a digital signal, comprising:
predicting an amount of ingress noise in the digital signal; and subtracting the predicted amount of ingress noise from the digital signal.
- 17. The method according to claim 16, wherein said amount of ingress noise in the digital signal is predicted based on past samples of the ingress noise obtained by subtracting decision symbols (dn) corresponding to samples (sn) of the digital signal from said samples of the digital signal.
- 18. The method according to claim 16, further comprising equalizing the digital signal by means of an equalizer having noise-independent coefficients, for compensating for inter-symbol interference in the digital signal.
- 19. The method according to claim 18, wherein the equalization of the digital signal is carried out in a receiver, before the ingress noise prediction.
- 20. The method according to claim 18, wherein the equalization of the digital signal is carried out in the form of a pre-equalization in a transmitter, and the ingress noise prediction is carried out in a receiver.
- 21. The method according to claim 18, wherein said equalizer is a zero-forcing equalizer.
- 22. The method according to claim 16, further comprising adapting the coefficients of a linear noise predicting filter used for predicting said amount on ingress noise to variations of the ingress noise in the digital signal.
- 23. The method according to claim 22, wherein the adaptation of the coefficients of the linear noise predicting filter is carried out by execution of an adaptive algorithm which uses tap leakage for stabilizing the coefficients.
- 24. The method according to claim 22, wherein the digital signal is received in a termination system for transmitters in a TDMA network, the ingress noise prediction, the subtraction of the predicted amount of ingress noise from the digital signal and the adaptation of the coefficients of the linear noise predicting filter are carried out in the termination system, and the adaptation of the coefficients of the linear noise predicting filter is carried out at least during reserved time slots in which no transmitter is allowed to transmit towards the termination system.
- 25. The method according to claim 24, wherein the decision symbols (dn) are systematically set to zero during the reserved time slots.
Priority Claims (1)
Number |
Date |
Country |
Kind |
01 400 956.7 |
Apr 2001 |
EP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. §119(a) to European Application No. 01400956.7, entitled “INGRESS NOISE REDUCTION IN A DIGITAL RECEIVER,” filed on Apr. 12, 2001, the contents of which are hereby incorporated by reference.