IP Library › Granted Patent US 8,811,621
Granted Patent B2
US 8,811,621 · App. 12/992,317 · Granted Aug 19, 2014

Parametric stereo upmix apparatus, a parametric stereo decoder, a parametric stereo downmix apparatus, a parametric stereo encoder

Inventor: Erik Gosuinus Petrus Schuijers (Eindhoven, NL)
Assignee: Koninklijke Philips N.V.
H04S3/02
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Quick Facts
Patent No.
US 8,811,621
App. No.
12/992,317
Granted
Aug 19, 2014
Kind
B2
Abstract

A parametric stereo upmix apparatus generates left and right signals from a mono downmix signal based on spatial parameters. The parametric stereo upmix includes a predictor configured to predict a difference signal including a difference between the left and right signals based on the mono downmix signal scaled with a prediction coefficient. The prediction coefficient is derived from the spatial parameters. The parametric stereo upmix apparatus further includes an arithmetic unit configured to derive the left and right signals based on a sum and a difference of the mono downmix signal and the difference signal.

Claims (88)

1. A parametric stereo upmix apparatus for generating a left signal and a right signal from a mono downmix signal based on spatial parameters, the parametric stereo upmix apparatus comprising:

a predictor configured to predict a difference signal comprising a difference between the left signal and the right signal based on the mono downmix signal scaled with a prediction coefficient, wherein said prediction coefficient is derived from the spatial parameters; and

an arithmetic unit configured to derive the left signal and the right signal based on a sum and a difference of the mono downmix signal and said difference signal,

wherein the prediction coefficient is given as a function of the spatial parameters:

α

=

iid

-

1

-

j

·

2

·

sin

⁡

(

ipd

)

·

icc

·

iid

iid

+

1

+

2

·

cos

⁡

(

ipd

)

·

icc

·

iid

,

wherein idd is an interchannel intensity difference, and icc an interchannel coherence.

2. The parametric stereo upmix apparatus as claimed in claim 1 , wherein said prediction coefficient is based on waveform matching the downmix signal onto the difference signal.

3. The parametric stereo upmix apparatus as claimed in claim 1 , wherein the predictor is configured to enhance the difference signal by adding a scaled decorrelated mono downmix signal formed by scaling a decorrelated mono downmix signal by a scaling factor.

4. The parametric stereo upmix apparatus as claimed in claim 3 , wherein said decorrelated mono downmix is obtained by filtering the mono downmix signal.

5. The parametric stereo upmix as claimed in claim 3 , wherein the scaling factor applied to the decorrelated mono downmix is set to compensate for a prediction energy loss.

6. The parametric stereo upmix apparatus according to claim 1 , wherein said parametric stereo upmix has a prediction residual signal for the difference signal as an additional input, wherein the arithmetic unit is further configured to derive the left signal and the right signal based on the mono downmix signal, said difference signal, and said prediction residual signal for the difference signal.

7. A parametric stereo upmix apparatus for generating a left signal and a right signal from a mono downmix signal based on spatial parameters, the parametric stereo upmix apparatus comprising:

a predictor configured to predict a difference signal comprising a difference between the left signal and the right signal based on the mono downmix signal scaled with a prediction coefficient, wherein said prediction coefficient is derived from the spatial parameters; and

an arithmetic unit configured to derive the left signal and the right signal based on a sum and a difference of the mono downmix signal and said difference signal,

wherein the predictor is configured to enhance the difference signal by adding a scaled decorrelated mono downmix signal formed by scaling a decorrelated mono downmix signal by a scaling factor, and

wherein the scaling factor applied to the decorrelated mono downmix is given as a function of the spatial parameters:

β

=

iid

+

1

-

2

·

cos

⁡

(

ipd

)

·

icc

·

iid

iid

+

1

+

2

·

cos

⁡

(

ipd

)

·

icc

·

iid

-

α

2

wherein α is the prediction coefficient, idd is an interchannel intensity difference, ipd is an interchannel phase difference, and icc is an interchannel coherence.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2010
From: SCHUIJERS, ERIK GOSUINUS PETRUS
To: KONINKLIJKE PHILIPS ELECTRONICS N V
Reel/Frame 025350/0270 →
Priority Claims (1)
EP 08156801 · May 23, 2008 · regional
Continuity (1)
Related Publication 20110096932A1 · Apr 28, 2011