Claims
- 1. A receiver circuit for a communications terminal, comprising:
a signal-receiving device providing K analog reception signals; and a signal pre-processing circuit configured downstream from said signal-receiving device; said pre-processing circuit including:
an analog/digital converter device having K analog/digital converters connected in parallel for sampling the K reception signals independently of one another with a sufficient sampling rate and for providing k digital signals; a filter device connected downstream from said analog/digital converter device; and a conversion device configured between said analog/digital converter device and said filter device; said filter device having N digital filters connected in parallel for filtering the K digital signals; K and N being greater than zero; and said conversion device being configured such that N is less than K.
- 2. The receiver circuit according to claim 1, wherein N=1.
- 3. The receiver circuit according to claim 1, wherein said conversion device includes a multiplexer.
- 4. The receiver circuit according to claim 1, wherein said conversion device includes a plurality of digital zero-inserting elements that are connected in parallel.
- 5. The receiver circuit according to claim 1, wherein said conversion device includes K digital zero-inserting elements that are connected in parallel.
- 6. The receiver circuit according to claim 1, wherein one of said N digital filters has an order of magnitude L between 5 and 20.
- 7. The receiver circuit according to claim 1, wherein one of said N digital filters has an order of magnitude L between 10 and 18.
- 8. The receiver circuit according to claim 1, wherein one of said N digital filters includes:
a plurality of single digital filters; and sampling rate reduction circuits that configured in series in an alternating fashion.
- 9. The receiver circuit according to claim 1, wherein:
said signal-receiving device includes a single reception sensor outputting a single sensor reception signal; and the K reception signals are generated by splitting the reception signal.
- 10. The receiver circuit according to claim 1, wherein:
said signal-receiving device includes a single reception sensor outputting a single sensor reception signal; and the K reception signals are generated by splitting the reception signal into an in-phase reception signal and a quadrature reception signal.
- 11. The receiver circuit according to claim 1, wherein said signal-receiving device includes K reception sensors.
- 12. The receiver circuit according to claim 1, wherein said signal-receiving device includes K/2 reception sensors.
- 13. The receiver circuit according to claim 1, wherein said signal-receiving device includes a plurality of reception sensors.
- 14. The receiver circuit according to claim 13, wherein each of said plurality of said reception sensors has a directional reception characteristic for sensing radio signals in a predefined spatial segment.
- 15. A mobile station of a mobile radio system, comprising:
a receiver circuit including:
a signal-receiving device providing K analog reception signals; and a signal pre-processing circuit configured downstream from said signal-receiving device; said pre-processing circuit including:
an analog/digital converter device having K analog/digital converters connected in parallel for sampling the K reception signals independently of one another with a sufficient sampling rate and for providing k digital signals; a filter device connected downstream from said analog/digital converter device; and a conversion device configured between said analog/digital converter device and said filter device; said filter device having N digital filters connected in parallel for filtering the K digital signals; K and N being greater than zero; and said conversion device being configured such that N is less than K.
- 16. A method for signal processing in a receiver circuit of a communications terminal, which comprises:
providing a signal receiving device; providing a signal pre-processing circuit having an analog/digital converter device located in a signal path downstream of said signal-receiving device; providing the analog/digital converter device with K analog/digital converters connected in parallel; obtaining K digital signals by operating the K analog/digital converters independently of each other and with a sufficient sampling rate to digitize the K analog reception signals; connecting a filter device downstream of the analog/digital converter device and providing the filter device with N digital filters connected in parallel; filtering the K digital signals with the filter device; providing a conversion device in a signal path between the analog/digital converter device and the filter device; using the conversion device to process the K digital signals in a manner such that K and N are integers greater than 0 and N is less than K.
- 17. The method according to claim 16, which comprises:
in the conversion device, multiplexing the K digital signals into N signals; and providing the N signals to N inputs of the filter device.
- 18. The method according to claim 16, which comprises: with the conversion device, inserting a predefined number of bits with a zero value between two successive bits in each of the K digital signals.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 21 444.1 |
May 1999 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/DE00/01447, filed May 9, 2000, which designated the United States.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE00/01447 |
May 2000 |
US |
Child |
10008774 |
Nov 2001 |
US |