IP Library Granted Patent US 7,590,202
Granted Patent B2
US 7,590,202 · App. 11/669,486 · Granted Sep 15, 2009

Reduced-complexity antenna system using multiplexed receive chain processing

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Quick Facts
Patent No.
US 7,590,202
App. No.
11/669,486
Granted
Sep 15, 2009
Kind
B2
Abstract

A method and associated system for processing a plurality of replicas of a signal in a signal processing chain, the method includes receiving each of the plurality of replicas of the signal at one of a corresponding plurality of respective antenna elements and orthogonally multiplexing the replicas of the signal on to a single processing chain. The multiplexed replicas are down converted from RF to baseband and converted from an analog to a digital multiplexed signal. The digital multiplexed replicas are then demultiplexed into a plurality of separate signals that correspond to replicas of the signal received at respective ones of the plurality of antennas. In variations, the orthogonal multiplexing includes frequency spreading the replicas of the signal on the single processing chain in accordance with complex Walsh codes. In other variations, the signal replicas are offset in phase by 90 degrees and time multiplexed on the single processing chain.

Claims (73)

1. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonally multiplexing comprises spreading said plurality of replicas of said received signal.

2. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonally multiplexing comprises orthogonally spreading said plurality of replicas of said received signal.

3. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonally multiplexing comprises orthogonally spreading said plurality of replicas of said received signal using Walsh Codes.

4. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonally multiplexing comprises orthogonally spreading said plurality of replicas of said received signal using complex Walsh Codes.

5. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonally multiplexing comprises orthogonally multiplexing said plurality of replicas of said received signal on to a single processing chain.

6. The method according to claim 5 , comprising converting said orthogonally multiplexed signal to said plurality of signals within said single processing chain.

7. The method according to claim 6 , wherein said orthogonally multiplexing comprises orthogonally spreading said plurality of replicas of said received signal on to said single processing chain.

8. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonal multiplexing comprises match filtering each of said converted plurality of signals which corresponds to one of said plurality of replicas of said received signal.

9. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonal multiplexing comprises pulse match filtering each of said converted plurality of signals which corresponds to one of said plurality of replicas of said received signal.

10. A method for processing a signal, the method comprising:

orthogonally multiplexing a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, thereby generating an orthogonally multiplexed signal;

converting said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal; and

wherein said orthogonal multiplexing comprises:

injecting switching signals into each one of said plurality of replicas of said received signal; and

generating said switching signals via a plurality of mixers.

11. The method according to claim 10 , wherein each of said plurality of mixers generate orthogonal switch signals.

12. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits spreads said plurality of replicas of said received signal.

13. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits orthogonally spreads said plurality of replicas of said received signal.

14. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits orthogonally spreads said plurality of replicas of said received signal using Walsh Codes.

15. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits orthogonally spreads said plurality of replicas of said received signal using complex Walsh Codes.

16. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits orthogonally multiplexes said plurality of replicas of said received signal on to a single processing chain.

17. The apparatus according to claim 16 , wherein said one or more circuits converts said orthogonally multiplexed signal to said plurality of signals within said single processing chain.

18. The apparatus according to claim 17 , wherein said one or more circuits orthogonally spreads said plurality of replicas of said received signal on to said single processing chain.

19. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits match filters each of said converted plurality of signals which corresponds to each one of said plurality of replicas of said received signal.

20. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal,

wherein said orthogonal multiplexing by said one or more circuits pulse match filters each of said converted plurality of signals which corresponds to each one of said plurality of replicas of said received signal.

21. An apparatus for processing a signal, the apparatus comprising:

one or more circuits that orthogonally multiplexes a plurality of replicas of a signal received via a corresponding plurality of spatially distinct antennas, to generate an orthogonally multiplexed signal; and

said one or more circuits converts said orthogonally multiplexed signal to a plurality of signals, each of which corresponds to one of said plurality of replicas of said received signal, wherein:

said orthogonal multiplexing by said one or more circuits injects switching signals into each one of said plurality of replicas of said received signal, and

said one or more circuits comprises a plurality of mixers that generates said switching signals.

22. The apparatus according to claim 21 , wherein each of said plurality of mixers generate orthogonal switch signals.

Assignments (5)
CORRECTIVE ASSIGNMENT TO CORRECT THE EFFECTIVE DATE OF MERGER PREVIOUSLY RECORDED AT REEL: 047195 FRAME: 0827. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Nov 5, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047924/0571 →
MERGER Recorded Oct 4, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047195/0827 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: BROADCOM CORPORATION
Reel/Frame 041712/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2017
From: BROADCOM CORPORATION
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041706/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: BROADCOM CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037806/0001 →