IP Library Granted Patent US 7,061,548
Granted Patent B2
US 7,061,548 · App. 10/116,576 · Granted Jun 13, 2006

Filter device

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 7,061,548
App. No.
10/116,576
Granted
Jun 13, 2006
Kind
B2
Abstract

A filter device ( 1 ) includes a main filter unit ( 10 ), such as a 2 -D comb filter, implemented in hardware, with an input for receiving a video signal (Φ) and an output for providing a filtered video signal (Φ 1 ), a controllable temporal noise reduction unit ( 20 ) receiving the filtered video signal (Φ 1 ) from the main filter unit ( 10 ), to perform a noise reduction operation on the filtered video signal (Φ 1 ), and a unit ( 14, 30, 40 ) for detecting a very low amount of motion in a video image of the filtered video signal (Φ 1 ) and for controlling the controllable temporal noise reduction unit ( 20 ) on the basis of the detected very low amount of motion, so as to enable the filter device ( 1 ) to reduce cross-luminance and/or cross-color as well when only a very low amount of motion is present in the signal.

Claims (30)

1. A filter device comprising:

a controllable temporal noise reduction unit having a first input for receiving a first video signal (Φ 1 ), said controllable temporal noise reduction unit performing a noise reduction operation on said first video signal (Φ 1 ) to provide a filter output signal (Φ 3 ) at a filter output; and

adjustment means for detecting a very low amount of motion in a video image of said first video signal (Φ 1 ) and for controlling the controllable temporal noise reduction unit on the basis of the detected very low amount of motion, so as to enable the filter device to reduce cross-luminance and/or cross-color as well when only a very low amount of motion is present in the signal,

wherein said adjustment means includes a motion detector having a first input for receiving said first video signal (Φ 1 ), and a second input for receiving a second video signal (Φ 2 ) representing a previous image, said motion detector comprising:

a difference detector having inputs coupled to said two inputs of the motion detector, the difference detector producing a difference signal (ΦD) at an output thereof;

a pre-filter coupled to the output of the difference detector for attenuating frequencies around a color subcarrier frequency of said first video signal (Φ 1 ); and

a motion value calculator coupled to an output of the pre-filter for calculating a motion value (μ) in relationship to the filtered difference signal.

2. The filter device as claimed in claim 1 , wherein said filter device further comprises a 2-D comb filter having an input for receiving an input video signal (Φ) and an output for providing a filtered video signal as said first video signal (Φ 1 ).

3. The filter device as claimed in claim 2 , wherein the 2-D comb filter is implemented in hardware.

4. An image display apparatus comprising:

a filter device as claimed in claim 1 for generating a filter output signal (Φ 3 ); and

a display device for displaying the filter output signal (Φ 3 ).

5. A filter device comprising:

a controllable temporal noise reduction unit having a first input for receiving a first video signal (Φ 1 ), said controllable temporal noise reduction unit performing a noise reduction operation on said first video signal (Φ 1 ) to provide a filter output signal (Φ 3 ) at a filter output; and

adjustment means for detecting a very low amount of motion in a video image of said first video signal (Φ 1 ) and for controlling the controllable temporal noise reduction unit on the basis of the detected very low amount of motion, so as to enable the filter device to reduce cross-luminance and/or cross-color as well when only a very low amount of motion is present in the signal,

wherein said adjustment means comprises:

a motion detector for calculating a motion value (μ) of the first video signal (Φ 1 ); and

a control unit coupled to the motion detector for determining a filter parameter (K) for the controllable temporal noise reduction unit based partly on a predetermined noise reduction parameter Kd, and partly on a modification factor Km which is based on the motion value (μ) calculated by the motion detector, said filter parameter (K) being determined according to the formula K=Kd+Km, where Km is a function of μ, in that Km is zero for values of μ exceeding a low motion threshold μ TH .

6. The filter device as claimed in claim 5 , wherein said low motion threshold μ TH is about 5% of a maximum value of μ.

7. The filter device as claimed in claim 5 , wherein Km is a fixed non-zero value κ for values of μ falling below the low motion threshold μ TH .

8. The filter device as claimed in claim 5 , wherein Km is a fixed percentage of Kd for values of μ falling below the low motion threshold μ TH .

9. The filter device as claimed claim 5 , wherein, if μ drops below said low motion threshold μ TH , the modification factor Km is made unequal to zero only after a predetermined waiting time.

10. The filter device as claimed claim 9 , wherein said filter device further comprises a source detector for generating a source detection signal indicative of the source of the input video signal, and wherein said waiting time depends on the source detection signal.

11. A method for filtering a video signal comprising the steps of:

performing a controllable temporal noise reduction on a first video signal (Φ 1 ) to provide a filter output signal (Φ 3 );

detecting a very low amount of motion in a video image of said first video signal (Φ 1 ); and

controlling the controllable temporal noise reduction on the basis of the detected very low amount of motion, so as to enable a reduction of cross-luminance and/or cross-color as well when only a very low amount of motion is present in the signal, wherein said detecting and controlling steps comprise the steps of:

determining a difference between said first video signal (Φ 1 ) and a second video signal (Φ 2 ) representing a previous image;

pre-filtering said difference for attenuating frequencies around a color subcarrier frequency of said first video signal (Φ 1 ); and

calculating a motion value (μ) in relationship to the filtered difference.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2011
From: IPG ELECTRONICS 503 LIMITED
To: FUNAI ELECTRIC CO., LTD.
Reel/Frame 027497/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2009
From: KONINKLIJKE PHILIPS ELECTRONICS N.V.
To: IPG ELECTRONICS 503 LIMITED
Reel/Frame 022203/0791 →