IP Library Granted Patent US 8,068,558
Granted Patent B2
US 8,068,558 · App. 12/337,444 · Granted Nov 29, 2011

Selective peak power reduction

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Quick Facts
Patent No.
US 8,068,558
App. No.
12/337,444
Granted
Nov 29, 2011
Kind
B2
Abstract

The present invention provides a technique for reducing the peak power of a combined signal that has a first signal of a first modulation type and a second signal of a second modulation type. Based on the combined signal, peak reduction distortion is determined. The peak reduction distortion is configured such that, if applied to the entirety of the combined signal, excessive peaks throughout the combined signal would be reduced. However, instead of applying the entirety of the peak reduction distortion, a selected portion of the peak reduction distortion is applied to a corresponding portion of the combined signal to reduce the peak power of the combined signal.

Claims (51)

1. A method for reducing peak power associated with a signal comprising:

generating a first signal of a first modulation type and a second signal of a second modulation type;

combining the first signal and the second signal to form a combined input signal, wherein the first signal resides in a first frequency band of the combined input signal, the second signal resides in a second frequency band of the combined input signal, and the first frequency band is different than the second frequency band;

generating peak reduction distortion based on the combined input signal;

selecting a portion of the peak reduction distortion that corresponds to the first frequency band as a selected portion of the peak reduction distortion; and

applying the selected portion of the peak reduction distortion in the first frequency band of the combined input signal to provide a combined output signal with a reduced peak to average ratio.

2. The method of claim 1 wherein at least another portion of the peak reduction distortion is not applied to the combined input signal when the selected portion of the peak reduction distortion is applied to the combined input signal.

3. The method of claim 1 wherein the peak reduction distortion has spectral components in at least the first frequency band and the second frequency band.

4. The method of claim 1 wherein generating the peak reduction distortion comprises generating a peaks signal representative of those peaks within the combined input signal that exceed a defined threshold and selecting a portion of the peak reduction distortion comprises filtering the peaks signal to obtain the selected portion of the peak reduction distortion.

5. The method of claim 4 wherein generating the peaks signal comprises:

removing from the combined input signal the peaks within the combined input signal that exceed the defined threshold to provide a clipped signal; and

subtracting the clipped signal from the combined input signal to provide the peaks signal.

6. The method of claim 1 wherein a portion of the peak reduction distortion that corresponds to the second frequency band is effectively not applied in the second frequency band of the combined signal.

7. The method of claim 1 wherein effectively only the selected portion of the peak reduction distortion is applied to the combined input signal and other portions of the peak reduction distortion that correspond to areas outside of the first frequency band are not applied to the combined input signal.

8. The method of claim 1 wherein the first modulation type is one of frequency division multiple access (FDMA), orthogonal frequency division multiple access (OFDM), code division multiple access (CDMA), and time division multiple access (TDMA), and the second modulation type is another of frequency division multiple access (FDMA), orthogonal frequency division multiple access (OFDM), code division multiple access (CDMA), and time division multiple access (TDMA).

9. The method of claim 8 wherein the first modulation type is OFDM and the second modulation type is TDMA.

10. The method of claim 8 wherein the first modulation type is CDMA and the second modulation type is OFDM.

11. The method of claim 1 wherein the first signal is positioned in the combined input signal about zero (0) hertz.

12. The method of claim 1 further comprising upconverting the combined output signal to a radio frequency signal and amplifying the radio frequency signal for transmission.

13. The method of claim 1 further comprising applying a peak power reduction process to the first signal prior to the first signal being combined with the second signal to form the combined input signal.

14. The method of claim 1 comprising upsampling the first signal and the second signal to a common sampling frequency prior to the first signal being combined with the second signal to form the combined input signal.

15. A communication system comprising:

upconversion circuitry configured to up-convert a combined output signal to a radio frequency signal for transmission;

signal processing circuitry associated with the up-conversion circuitry and configured to:

generate a first signal of a first modulation type and a second signal of a second modulation type;

combine the first signal and the second signal to form a combined input signal, wherein the first signal resides in a first frequency band of the combined input signal, the second signal resides in a second frequency band of the combined input signal, and the first frequency band is different than the second frequency band;

generate peak reduction distortion based on the combined input signal;

selecting a portion of the peak reduction distortion that corresponds to the first frequency band as a selected portion of the peak reduction distortion; and

apply the selected portion of the peak reduction distortion in the first frequency band of the combined input signal to provide the combined output signal with a reduced peak to average power ratio.

16. The communication system of claim 15 wherein at least another portion of the peak reduction distortion is not applied to the combined input signal when the selected portion of the peak reduction distortion is applied to the combined input signal.

17. The communication system of claim 15 wherein the peak reduction distortion has spectral components in at least the first frequency band and the second frequency band.

18. The communication system of claim 15 wherein:

to generate the peak reduction distortion, the signal processing circuitry is further configured to generate a peaks signal representative of those peaks within the combined input signal that exceed a defined threshold; and

to select a portion of the peak reduction distortion, the signal processing circuitry is further configured to filter the peaks signal to obtain the selected portion of the peak reduction distortion.

19. The communication system of claim 18 wherein to generate the peaks signal, the signal processing circuitry is further configured to:

remove from the combined input signal the peaks within the combined input signal that exceed the defined threshold to provide a clipped signal; and

subtract the clipped signal from the combined input signal to provide the peaks signal.

20. The communication system of claim 15 wherein a portion of the peak reduction distortion that corresponds to the second frequency band is effectively not applied in the second frequency band of the combined input signal.

21. The communication system of claim 15 wherein effectively only the selected portion of the peak reduction distortion is applied to the combined input signal and other portions of the peak reduction distortion that correspond to areas outside of the first frequency band are not applied to the combined input signal.

22. The communication system of claim 15 wherein the first modulation type is one of frequency division multiple access (FDMA), orthogonal frequency division multiple access (OFDM), code division multiple access (CDMA), and time division multiple access (TDMA), and the second modulation type is another of frequency division multiple access (FDMA), orthogonal frequency division multiple access (OFDM), code division multiple access (CDMA), and time division multiple access (TDMA).

23. The communication system of claim 22 wherein the first modulation type is OFDM and the second modulation type is TDMA.

24. The communication system of claim 22 wherein the first modulation type is CDMA and the second modulation type is OFDM.

25. The communication system of claim 15 wherein the first signal is positioned in the combined input signal about zero (0) hertz.

26. The communication system of claim 15 wherein the signal processing circuitry is further configured to apply a peak power reduction process on the first signal prior to the first signal being combined with the second signal to form the combined input signal.

27. The communication system of claim 15 wherein the signal processing circuitry is further configured to upsample the first signal and the second signal to a common sampling frequency prior to the first signal being combined with the second signal to form the combined input signal.

28. A method for reducing peak power associated with a signal comprising:

generating a first signal of a first modulation type and a second signal of a second modulation type;

combining the first signal and the second signal to form a combined input signal, wherein the first signal resides in a first frequency band of the combined input signal, the second signal resides in a second frequency band of the combined input signal, and the first frequency band is different than the second frequency band;

generating peak reduction distortion based on the combined input signal;

selecting a first portion of the peak reduction distortion that corresponds to the first frequency band and a second portion of the peak reduction distortion that corresponds to the second frequency band; and

applying the first portion of the peak reduction distortion in the first frequency band of the combined input signal and the second portion of the peak reduction distortion in the second frequency band of the combined input signal to provide a combined output signal.

Assignments (7)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 19, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064271/0199 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064104/0103 →
CHANGE OF NAME Recorded Oct 16, 2014
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 034012/0031 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: ROCKSTAR BIDCO, LP
To: 2256355 ONTARIO LIMITED
Reel/Frame 028018/0848 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: 2256355 ONTARIO LIMITED
To: RESEARCH IN MOTION LIMITED
Reel/Frame 028020/0474 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2011
From: NORTEL NETWORKS LIMITED
To: ROCKSTAR BIDCO, LP
Reel/Frame 027143/0717 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2008
From: MORRIS, BRADLEY JOHN; FULLER, ARTHUR THOMAS GERALD
To: NORTEL NETWORKS LIMITED
Reel/Frame 021997/0027 →