IP Library Granted Patent US 7,519,488
Granted Patent B2
US 7,519,488 · App. 11/142,049 · Granted Apr 14, 2009

Signal processing method and system for noise removal and signal extraction

Assignee: Lawrence Livermore National Security, LLC
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Quick Facts
Patent No.
US 7,519,488
App. No.
11/142,049
Granted
Apr 14, 2009
Kind
B2
Abstract

A signal processing method and system combining smooth level wavelet pre-processing together with artificial neural networks all in the wavelet domain for signal denoising and extraction. Upon receiving a signal corrupted with noise, an n-level decomposition of the signal is performed using a discrete wavelet transform to produce a smooth component and a rough component for each decomposition level. The n th level smooth component is then inputted into a corresponding neural network pre-trained to filter out noise in that component by pattern recognition in the wavelet domain. Additional rough components, beginning at the highest level, may also be retained and inputted into corresponding neural networks pre-trained to filter out noise in those components also by pattern recognition in the wavelet domain. In any case, an inverse discrete wavelet transform is performed on the combined output from all the neural networks to recover a clean signal back in the time domain.

Claims (37)

1. A signal processing method comprising:

receiving a signal corrupted with noise;

performing an n-level decomposition of said signal using a discrete wavelet transform to produce a smooth component and a rough component for each decomposition level;

inputting the n th level smooth component into a corresponding neural network pre-trained to recognize and extract substantially-noiseless ideal signal feature patterns from the n th level smooth component exclusively;

performing an inverse discrete wavelet transform on the substantially-noiseless ideal signal feature patterns extracted by the neural network to recover a clean signal, and

outputting the de-noised clean signal.

2. The signal processing method of claim 1 , further comprising:

inputting the rough components of pre-selected decomposition levels into separate corresponding neural networks each pre-trained to recognize and extract substantially-noiseless ideal signal feature patterns from the corresponding one of the pre-selected rough components exclusively; and

performing an inverse discrete wavelet transform on the substantially-noiseless ideal signal feature patterns extracted by all the neural networks to recover a clean signal.

3. The signal processing method of claim 2 ,

wherein the rough components are pre-selected beginning in order with the highest decomposition levels.

4. The signal processing method of claim 2 ,

wherein the rough components of all decomposition levels are inputted into separate corresponding neural networks.

5. The signal processing method of claim 1 ,

wherein said signal has a Gaussian shape.

6. The signal processing method of claim 5 ,

wherein said discrete wavelet transform is a Daubechies-2 wavelet transform.

7. The signal processing method of claim 6 ,

wherein a four-level decomposition is performed using said Daubechies-2 wavelet transform.

8. The signal processing method of claim 1 ,

wherein each of said neural networks is a projection neural network.

9. The signal processing method of claim 1 ,

further comprising removing a baseline prior to performing the n-level decomposition of said signal.

10. A signal processing method comprising:

receiving a signal corrupted with noise;

decomposing the signal into a plurality of signal components using a predetermined transform;

inputting each of the plurality of decomposed signal components into a corresponding neural network pre-trained to recognize and extract substantially-noiseless ideal signal feature patterns from the corresponding one of the decomposed signal components exclusively, in the transform domain;

performing an inverse transform on the substantially-noiseless ideal signal feature patterns extracted by all the neural networks to recover a clean signal in the time domain, and

outputting the de-noised clean signal.

11. The signal processing method of claim 10 ,

wherein the plurality of signal components are filtered to remove noise.

12. A system comprising:

a discrete wavelet transformer for iteratively decomposing a signal into a plurality of decomposition levels each having a smooth component and a rough component;

at least one neural network(s) corresponding in number to a set of pre-selected components comprising a highest-level smooth component and a predetermined number of rough components, each neural network operatively coupled to the discrete wavelet transformer to receive a corresponding one of the pre-selected components, and pre-trained to recognize and extract substantially-noiseless ideal signal feature patterns from the corresponding one of the pre-selected components exclusively; and

an inverse discrete wavelet transformer capable of recovering a clean signal in the time domain from the substantially-noiseless ideal signal feature patterns extracted by the plurality of neural networks.

13. The system of claim 12 ,

wherein each of plurality of neural networks has been trained using noiseless signal data or ideal data derived from physical principle and such trained neural network after sufficient training will generalize its capability to recover signal from unseen corrupted data.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2016
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 038187/0559 →
CONFIRMATORY LICENSE Recorded Sep 17, 2012
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 028995/0564 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2007
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 020012/0032 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2005
From: FU, CHI YUNG; PETRICH, LOREN
To: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
Reel/Frame 016785/0885 →
Continuity (2)
Provisional Application 6057531500 · May 28, 2004
Related Publication 20050265629A1 · Dec 1, 2005