IP Library Granted Patent US 7,321,264
Granted Patent B2
US 7,321,264 · App. 10/596,041 · Granted Jan 22, 2008

Method, arrangement and device for controlling predistortion

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,321,264
App. No.
10/596,041
Granted
Jan 22, 2008
Kind
B2
Abstract

A predistortion control device ( 1 ). The device has a first predistortion control input connectable to a power amplifier output ( 21 ); a second predistortion control input ( 11 ) connectable to a signal contact of a predistortion device; and a predistortion control output ( 12 ) connectable to a control contact of the predistortion device. The predistortion control device ( 1 ) further includes a cross-correlator device ( 110 ). The cross-correlator device ( 110 ) is connected with a first cross-correlator input ( 1101, 1101 I, 1101 Q) to the first predistortion control input and a second cross-correlator input ( 1102, 1102 I, 1102 Q) to the second predistortion control input ( 11 ). The cross-correlator device ( 110 ) is further has a cross-correlator output ( 1112 ) at which a cross-correlation signal can be presented, the cross-correlation signal representing a measured cross-correlation of signals presented at the first cross-correlator input ( 1101, 1101 I, 1101 Q) and the second cross-correlator input ( 1102, 1102 I, 1102 Q). The predistortion control device ( 1 ) further has a predistortion function selector device ( 120 )( 120 ), connected with a selector input to the cross-correlator output ( 1112 ), and with a selector output to the predistortion control output ( 12 ), at which selector output a predistortion control signal can be presented. The predistortion control signal representing a predistortion function determined on the basis of said cross-correlator signal.

Claims (63)

1. A predistortion control device comprising:

a first predistortion control input selectively connected to a power amplifier output;

a second predistortion control input selectively connected to a signal contact of a predistortion device; and

a predistortion control output selectively connected to a control contact of the predistortion device, the predistortion control device further including:

a cross-correlator device connected with

a first cross-correlator input to the first predistortion control input and

a second cross-correlator input to the second predistortion control input, wherein the cross-correlator device further has a cross-correlator output at which a cross-correlation signal can be presented, the cross-correlation signal representing a measured cross-correlation (Rm) of signals presented at the first cross-correlator input and the second cross-correlator input;

a predistortion function selector device, connected with

a selector input to the cross-correlator output, and with a selector output to the predistortion control output, said pre-distortion function selector device being arranged to compare the measured cross-correlation with a cross-correlation model stored in a memory and determining on the basis of said comparison a suitable predistortion function and presenting a predistortion control signal at said selector output said predistortion control signal representing said predistortion function.

2. The predistortion control device as claimed in claim 1 , further including a quantiser device connected with a quantiser input to the first predistortion control input, and with a quantiser output to the first cross-correlator input.

3. The predistortion control device as claimed in claim 2 , wherein the quantiser device is a single-bit quantiser.

4. The predistortion control device as claimed in claim 2 , wherein the quantiser is operable as a sub-sampling device.

5. The predistortion control device as claimed in claim 2 , wherein the cross-correlator device includes a single-bit multiplier.

6. The predistortion control device as claimed in claim 2 , further including a distortion device connected with a distortion input to the first predistortion control input, and connected with a distortion output to the quantiser input.

7. The predistortion control device as claimed in claim 6 , wherein the distortion device includes a random distortion device.

8. The predistortion control device as claimed in claim 6 , wherein the distortion device includes a periodic distortion device.

9. The predistortion control device as claimed in claim 1 , wherein the second predistortion control input is connectable to a signal output of a predistortion device.

10. The predistortion control device as claimed in claim 1 , further including:

an averaging device capable of determining a time averaged cross-correlation value from a memory connected to the cross-correlator output, for storing a number of cross-correlation values, wherein the averaging device has an averaging output connected to the selector input, for presenting time averaged cross-correlation values to the predistortion function selector device.

11. The predistortion control device, as claimed in claim 1 further comprising:

a predistortion input for receiving an original signal to be predistorted;

a predistortion output for providing a predistorted output signal based on the original signal, and

a control input contact connected to the predistortion control output at which a predistortion control signal can be provided, in response to which predistortion control signal the predistortion device uses a predistortion function corresponding to the predistortion control signal to generate the predistorted output signal.

12. The predistortion control device as claimed in claim 11 , further including a power amplifier connected with:

an amplifier input to the predistortion output, and

an amplifier output to the first predistortion control input.

13. A predistortion control method, comprising the steps of:

receiving a power amplifier output signal;

receiving a predistortion signal from a signal contact of a predistortion device;

determining a measured cross-correlation value by cross-correlating the power amplifier output signal and the predistortion signal;

comparing the measured cross-correlation value with a cross-correlation model;

determining a suitable predistortion function from said comparing step, and

providing a predistortion control signal representing said predistortion function.

14. The predistortion control method, as claimed in claim 13 , further comprising:

minimising a difference between the measured cross-correlation value with a model cross-correlation value, and

deriving from said minimizing step the predistortion function.

15. An arrangement for controlling predistortion in a power amplifier, the arrangement comprising:

a predistortion control device;

a first predistortion control input selectively connected to a power amplifier output;

a second predistortion control input selectively connected to a signal contact of a predistortion device; and

a predistortion control output selectively connected to a control contact of the predistortion device, the predistortion control device further including:

a cross-correlator device connected with

a first cross-correlator input to the first predistortion control input and

a second cross-correlator input to the second predistortion control input, wherein the cross-correlator device further has a cross-correlator output at which a cross-correlation signal can be presented, the cross-correlation signal representing a measured cross-correlation (Rm) of signals presented at the first cross-correlator input and the second cross-correlator input;

a predistortion function selector device, connected with

a selector input to the cross-correlator output, and with a selector output to the predistortion control output, said pre-distortion function selector device being arranged to compare the measured cross-correlation with a cross-correlation model stored in a memory and determining on the basis of said comparison a suitable predistortion function and presenting a predistortion control signal at said selector output said predistortion control signal representing said predistortion function.

16. The arrangement as claimed in claim 15 , further including a quantiser device connected with a quantiser input to the first predistortion control input, and with a quantiser output to the first cross-correlator input.

17. The arrangement as claimed in claim 15 , wherein the quantiser device is a single-bit quantiser.

18. The arrangement as claimed in claim 16 , wherein the quantiser is operable as a sub-sampling device.

19. The arrangement as claimed in claim 16 , wherein the cross-correlator device includes a single-bit multiplier.

20. The arrangement as claimed in claim 16 , further including a distortion device connected with a distortion input to the first predistortion control input, and connected with a distortion output to the quantiser input.

21. The arrangement as claimed in claim 20 , wherein the distortion device includes a random distortion device.

22. The arrangement as claimed in claim 20 , wherein the distortion device includes a periodic distortion device.

23. The arrangement as claimed in claim 15 , wherein the second predistortion control input is connectable to a signal output of a predistortion device.

24. The arrangement as claimed in claim 15 , further including:

an averaging device capable of determining a time averaged cross-correlation value from a memory connected to the cross-correlator output, for storing a number of cross-correlation values, wherein the averaging device has an averaging output connected to the selector input, for presenting time averaged cross-correlation values to the predistortion function selector device.

25. The arrangement as claimed in claim 15 , further comprising:

a predistortion input for receiving an original signal to be predistorted;

a predistortion output for providing a predistorted output signal based on the original signal, and

a control input contact connected to the predistortion control output at which a predistortion control signal can be provided, in response to which predistortion control signal the predistortion device uses a predistortion function corresponding to the predistortion control signal to generate the predistorted output signal.

26. The arrangement as claimed in claim 25 , wherein the power amplifier is connected with:

an amplifier input to the predistortion output, and

an amplifier output to the first predistortion control input.