Claims
- 1. A method for estimating the bit error rate in a radio receiver, which comprises:
with an equalizer in a radio receiver, generating reliability information indicating probabilities that a data symbol received by the radio receiver via a radio channel is based on a specific transmitted value; generating the reliability information as soft decision information; with a bit error rate estimator, evaluating the reliability information to obtain bit error rate information regarding a bit error rate of a received signal corresponding to received data symbols; and quantizing the soft decision information into K quantization levels, determining a symbol error rate information item for a corresponding quantization level of each quantized soft decision information item, and dependent thereon, calculating the bit error rate information p for a complete burst in accordance with a formula: 18p=∑k=0K-1(nkpk)∑k=0K-1nkwhere K denotes a number of the quantization levels, nk denotes a number of estimated symbols in a quantization level k, and pk denotes a symbol error rate of the quantization level k.
- 2. The method according to claim 1, which comprises: calculating the symbol error rate pk of the quantization level k from quantized soft decision information qk of the quantization level k in accordance with a formula:
- 3. The method according to claim 2, which comprises:
determining the soft decision information q in accordance with a formula: 20q=lnP1P2where P1 indicates a probability that a received data symbol is based on a first transmitted value, and P2 indicates a probability that a received data symbol is based on a second transmitted value; approximating the probability P1 by a path metric of a first path of a trellis diagram that describes the radio channel, the first path being a path of the trellis diagram that has a first transmitted value with a best path metric at a specific instant; and approximating the probability P2 by a path metric of a second path of the trellis diagram, the second path being a path of the trellis diagram that has a second transmitted value with a best path metric at the specific instant.
- 4. The method according to claim 1, which comprises:
determining the soft decision information q in accordance with a formula: 21q=lnP1P2where P1 indicates a probability that a received data symbol is based on a first transmitted value, and P2 indicates a probability that a received data symbol is based on a second transmitted value; approximating the probability P1 by a path metric of a first path of a trellis diagram that describes the radio channel, the first path being a path of the trellis diagram that has a first transmitted value with a best path metric at a specific instant; and approximating the probability P2 by a path metric of a second path of the trellis diagram, the second path being a path of the trellis diagram that has a second transmitted value with a best path metric at the specific instant.
- 5. The method according to claim 4, which comprises:
approximating ln(P1) by MOP/2σ2 and approximating ln(P2) by MZP/2σ2, where MOP denotes the path metric of the first path of the trellis diagram and MZP denotes the path metric of the second path of the trellis diagram, and σ2 denotes a noise power that is superposed on the received signal along the radio channel.
- 6. The method according to claim 5, which comprises:
approximating the soft decision information q using a formula: 22q=CMOP-MZP2σ2where C represents a scaling constant; and subsequently quantizing the soft decision information q into the K quantization levels.
- 7. A radio receiver, comprising:
an equalizer for equalizing a radio signal received via a radio channel and for generating reliability information indicating probabilities that a received data symbol is based on a specific transmitted value; and a bit error rate estimator for evaluating the reliability information supplied by said equalizer to obtain bit error rate information p regarding a bit error rate of a received signal corresponding to received data symbols; said equalizer generating the reliability information as soft decision information; and said bit error rate estimator quantizing the soft decision information into a plurality of quantization levels, determining a symbol error rate information item for a corresponding quantization level from each quantized soft decision information item, and in a manner dependent thereon, calculating the bit error rate information p for a complete burst in accordance with a formula: 23p=∑k=0K-1nkpk∑k=0K-1nkwhere K denotes a number of the quantization levels, nk denotes a number of estimated symbols in a quantization level k, and pk denotes a symbol error rate of the quantization level k.
- 8. The radio receiver according to claim 7, comprising:
a deinterleaver; said bit error rate estimator connected between said equalizer and said deinterleaver.
- 9. The radio receiver according to claim 7, wherein said bit error rate estimator is configured for:
calculating the symbol error rate pk of the quantization level k from quantized soft decision information qk of the quantization level k in accordance with a formula: 24pk=11+exp(qk)
- 10. The radio receiver according to claim 7, wherein said bit error rate estimator is configured for:
determining the soft decision information q in accordance with a formula: 25q=lnP1P2where P1 indicates a probability that a received data symbol is based on a first transmitted value, and P2 indicates a probability that a received data symbol is based on a second transmitted value; approximating the probability P1 by a path metric of a first path of a trellis diagram that describes the radio channel, the first path being a path of the trellis diagram that has a first transmitted value with a best path metric at a specific instant; and approximating the probability P2 by a path metric of a second path of the trellis diagram, the second path being a path of the trellis diagram that has a second transmitted value with a best path metric at the specific instant.
- 11. The radio receiver according to claim 7, wherein said bit error rate estimator is configured for:
approximating ln(P1) by MOP/2σ2 and approximating ln(P2) by MZP/2σ2, where MOP denotes the path metric of the first path of the trellis diagram and MZP denotes the path metric of the second path of the trellis diagram, and σ2 denotes a noise power that is superposed on the received signal along the radio channel.
- 12. The radio receiver according to claim 7, wherein said bit error rate estimator is configured for:
approximating the soft decision information q using a formula: 26q=CMOP-MZP2σ2where C represents a scaling constant; and subsequently quantizing the soft decision information q into the K quantization levels.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 199 43 386.0 |
Sep 1999 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/EP00/08702, filed Sep. 6, 2000, which designated the United States.
Continuations (1)
|
Number |
Date |
Country |
| Parent |
PCT/EP00/08702 |
Sep 2000 |
US |
| Child |
10095312 |
Mar 2002 |
US |