IP Library Granted Patent US 9,219,458
Granted Patent B2
US 9,219,458 · App. 12/137,546 · Granted Dec 22, 2015

Methods and systems of AGC and DC calibration for OFDM/OFDMA systems

Inventor: Chae Kwan Lee (San Jose, CA)
Assignee: QUALCOMM Incorporated
H03G3/3052H03G3/3078
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Quick Facts
Patent No.
US 9,219,458
App. No.
12/137,546
Granted
Dec 22, 2015
Kind
B2
Abstract

Methods and apparatus for automatic gain control (AGC) and DC calibration for orthogonal frequency-division multiplexing (OFDM) or orthogonal frequency division multiple access (OFDMA) systems are provided in an effort to avoid saturation of the analog-to-digital converter (ADC) in a radio frequency (RF) front end of a receiver, to handle dynamic received signal power, or to avoid interruptions in a communication link for DC calibration. For certain embodiments, the quantization error in the RF front end may also be decreased.

Claims (49)

1. A method for DC calibration in a wireless communication system, comprising:

setting an analog gain of a signal received over a communications link within a predetermined Receive/Transmit Transition gap (RTG) during normal traffic exchange over the communications link and before a downlink (DL) subframe of the received signal is received by a user equipment (UE) from a base station, wherein setting the analog gain to vary according to each different downlink zone within an orthogonal frequency-division multiplexing (OFDM) or orthogonal frequency division multiple access (OFDMA) frame;

amplifying a portion of the received signal using an analog gain setting for a downlink zone in the OFDM or OFDMA frame during the portion of the received signal based on the downlink zone;

estimating a downlink zone DC offset of the amplified portion of the received signal within the predetermined RTG during the normal traffic exchange over the communications link and before the downlink (DL) subframe of the received signal is received by the user equipment (UE) from the base station; and

updating a DC offset by applying the estimated downlink zone DC offset to the amplified portion of the received signal within the predetermined Receive/Transmit Transition gap before the downlink subframe of the OFDM or OFDMA frame.

2. The method of claim 1 , further comprising:

setting the analog gain to amplify a portion of the received signal based on the DL subframe of the OFDM or OFDMA frame;

estimating a DC offset of the amplified portion of the received signal; and

applying the estimated DC offset to the amplified portion of the received signal.

3. The method of claim 2 , further comprising estimating power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the DL subframe before setting the analog gain for the amplified portion of the received signal.

4. The method of claim 1 , further comprising estimating power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the zone before setting the analog gain for the amplified portion of the received signal.

5. The method of claim 1 , further comprising calibrating the DC offset during initialization before setting the analog gain.

6. A receiver for wireless communication, comprising:

gain setting logic configured to set an analog gain for a signal received by the receiver over a communications link within a predetermined Receive/Transmit Transition gap (RTG) during normal traffic exchange over the communications link and before a downlink (DL) subframe of the received signal is received by a user equipment (UE) from a base station, wherein the gain setting logic is further configured to vary the analog gain setting according to each different downlink zone within an orthogonal frequency-division multiplexing (OFDM) or orthogonal frequency division multiple access (OFDMA) frame;

amplifier logic to amplify a portion of the received signal using the analog gain setting for a downlink zone in the OFDM or OFDMA frame during the portion of the received signal based on the downlink zone;

offset estimation logic configured to estimate a downlink zone DC offset of the amplified portion of the received signal within the predetermined RTG during the normal traffic exchange over the communications link and before the downlink (DL) subframe of the received signal is received by the user equipment (UE) from the base station; and

adjustment logic configured to update a DC offset by applying the estimated downlink zone DC offset to the amplified portion of the received signal within the predetermined Receive/Transmit Transition gap before the downlink subframe of the OFDM or OFDMA frame.

7. The receiver of claim 6 , wherein the gain setting logic is configured to set the analog gain to amplify a portion of the received signal based on the DL subframe of the OFDM or OFDMA frame, wherein the offset estimation logic is configured to estimate a DC offset of the amplified portion of the received signal, and wherein the adjustment logic is configured to apply the estimated DC offset to the amplified portion of the received signal.

8. The receiver of claim 7 , further comprising power estimation logic configured to estimate power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the DL subframe before setting the analog gain for the amplified portion of the received signal.

9. The receiver of claim 6 , further comprising power estimation logic configured to estimate power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the zone before setting the analog gain for the amplified portion of the received signal.

10. The receiver of claim 6 , further comprising calibration logic configured to calibrate the DC offset during initialization before setting the analog gain.

11. An apparatus for DC calibration in a wireless communication system, comprising:

means for setting an analog gain of a signal received over a communications link within a predetermined Receive/Transmit Transition gap (RTG) during normal traffic exchange over the communications link and before a downlink (DL) subframe of the received signal is received by a user equipment (UE) from a base station, wherein setting the analog gain to vary according to each different downlink zone within an orthogonal frequency-division multiplexing (OFDM) or orthogonal frequency division multiple access (OFDMA) frame;

means for amplifying a portion of the received signal using an analog gain setting for a downlink zone in the OFDM or OFDMA frame during the portion of the received signal based on the downlink zone;

means for estimating a downlink zone DC offset of the amplified portion of the received signal within the predetermined RTG during the normal traffic exchange over the communications link and before the downlink (DL) subframe of the received signal is received by the user equipment (UE) from the base station; and

means for updating a DC offset by applying the estimated downlink zone DC offset to the amplified portion of the received signal within the predetermined Receive/Transmit Transition gap before the downlink subframe of the OFDM or OFDMA frame.

12. The apparatus of claim 11 , further comprising: means for setting the analog gain to amplify a portion of the received signal based on the DL subframe of the OFDM or OFDMA frame; means for estimating a DC offset of the amplified portion of the received signal; and means for applying the estimated DC offset to the amplified portion of the received signal.

13. The apparatus of claim 12 , further comprising means for estimating power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the DL subframe before setting the analog gain for the amplified portion of the received signal.

14. The apparatus of claim 11 , further comprising means for estimating power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the zone before setting the analog gain for the amplified portion of the received signal.

15. The apparatus of claim 11 , further comprising means for calibrating the DC offset during initialization before setting the analog gain.

16. A mobile device, comprising:

a receiver front end for receiving a signal based on an orthogonal frequency-division multiplexing (OFDM) or orthogonal frequency division multiple access (OFDMA) frame;

gain setting logic configured to set an analog gain for the received signal within a predetermined Receive/Transmit Transition gap (RTG) during normal traffic exchange over a communications link and before a downlink (DL) subframe of the received signal is received by a user equipment (UE) from a base station, wherein the gain setting logic is further configured to vary the analog gain setting according to each different downlink zone within the OFDM or OFDMA frame;

amplifier logic to amplify a portion of the received signal using the analog gain setting for a downlink zone in the OFDM or OFDMA frame during the portion of the received signal based on the downlink zone;

estimation logic configured to estimate a downlink zone DC offset of the amplified portion of the received signal during the predetermined RTG during the normal traffic exchange over the communications link and before the downlink (DL) subframe of the received signal is received by the user equipment (UE) from the base station; and

adjustment logic configured to update a DC offset by applying the estimated downlink zone DC offset to the amplified portion of the received signal within the predetermined Receive/Transmit Transition gap before the downlink subframe of the OFDM or OFDMA frame.

17. The mobile device of claim 16 , wherein the gain setting logic is configured to set the analog gain to amplify a portion of the received signal based on the DL subframe of the OFDM or OFDMA frame, wherein the offset estimation logic is configured to estimate a DC offset of the amplified portion of the received signal, and wherein the adjustment logic is configured to apply the estimated DC offset to the amplified portion of the received signal.

18. The mobile device of claim 17 , further comprising power estimation logic configured to estimate power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the DL subframe before setting the analog gain for the amplified portion of the received signal.

19. The mobile device of claim 16 , further comprising power estimation logic configured to estimate power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the zone before setting the analog gain for the amplified portion of the received signal.

20. The mobile device of claim 16 , further comprising calibration logic configured to calibrate the DC offset during initialization before setting the analog gain.

21. A non-transitory computer-readable medium containing a program for DC calibration in a wireless communication system, which, when executed by a processor, performs operations comprising:

setting an analog gain of a signal received over a communications link within a predetermined Receive/Transmit Transition gap (RTG) during normal traffic exchange over the communications link and before a downlink (DL) subframe of the received signal is received by a user equipment (UE) from a base station, wherein setting the analog gain to vary according to each different downlink zone within an orthogonal frequency-division multiplexing (OFDM) or orthogonal frequency division multiple access (OFDMA) frame;

amplifying a portion of the received signal using an analog gain setting for a downlink zone in the OFDM or OFDMA frame during the portion of the received signal based on the downlink zone;

estimating a downlink zone DC offset of the amplified portion of the received signal within the predetermined RTG during the normal traffic exchange over the communications link and before the downlink (DL) subframe of the received signal is received by the user equipment (UE) from the base station; and

updating a DC offset by applying the estimated downlink zone DC offset to the amplified portion of the received signal within the predetermined Receive/Transmit Transition gap before the downlink subframe of the OFDM or OFDMA frame.

22. The non-transitory computer-readable medium of claim 21 , wherein the operations comprise: setting the analog gain to amplify a portion of the received signal based on the DL subframe of the OFDM or OFDMA frame; estimating a DC offset of the amplified portion of the received signal; and applying the estimated DC offset to the amplified portion of the received signal.

23. The non-transitory computer-readable medium of claim 22 , wherein the operations comprise estimating power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the DL subframe before setting the analog gain for the amplified portion of the received signal.

24. The non-transitory computer-readable medium of claim 21 , wherein the operations comprise estimating power of the received signal based on a cyclic prefix (CP) of an OFDM or OFDMA symbol of the zone before setting the analog gain for the amplified portion of the received signal.

25. The non-transitory computer-readable medium of claim 21 , wherein the operations comprise calibrating the DC offset during initialization before setting the analog gain.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2008
From: LEE, CHAE KWAN
To: QUALCOMM INCORPORATED
Reel/Frame 021268/0792 →
Continuity (1)
Related Publication 20090310690A1 · Dec 17, 2009