Image data reduction apparatus and method, program, storage medium, and image sensing apparatus
16 claims: 5 independent, 11 dependent
- 1An image data reduction apparatus for reducing a number of pixels of image data of one line in which a plurality of pixels of a first color and a plurality of pixels of a second color are alternately arrayed in a row or column direction, the apparatus comprising:an image processing device (3) adapted to reduce the number of the pixels of the one line in the row or column direction by 1/2, characterised in that said image processing device is adapted to reduce the number of the pixels of the one line by alternately arranging, in the row or column direction, first color image data corresponding to a pixel positioned at a barycenter of successively arrayed 2 pixels of the first color on the one line in the row or column direction and second color image data corresponding to a pixel positioned at a barycenter of successively arrayed 3 pixels of the second color on the one line in the row or column direction, wherein the first color image data is generated using pixel data of the successively arrayed 2 pixels of the first color on the one line, and the second color image data is generated using pixel data of the successively arrayed 3 pixels of the second color on the one line.
- 5Apparatus according to any one of the preceding claims and further comprising:second image processing means for performing a predetermined process for the alternately arranged first and second color image data on the one line in the row or column direction to generate image data for recording;and recording means for recording the image data for recording.
- 8A method of reducing a number of pixels of image data of one line in which a plurality of pixels of a first color and a plurality of pixels of a second color are alternately arrayed in a row or column direction, the method comprising:reducing the number of the pixels of the one line in the row or column direction by 1/2, characterised in that the reduction in number of the pixels of the one line is carried out by alternately arranging, in the row or column direction, first color image data corresponding to a pixel positioned at a barycenter of successively arrayed 2 pixels of the first color on the one line in the row or column direction and second color image data corresponding to a pixel positioned at a barycenter of successively arrayed 3 pixels of the second color on the one line in the row or column direction, wherein the first color image data is generated using pixel data of the successively arrayed 2 pixels of the first color on the one line, and the second color image data is generated using pixel data of the successively arrayed 3 pixels of the second color on the one line.
Independent claims5
55 paragraphs in 4 sections, as filed
FIELD OF THE INVENTION
The present invention relates to a technique of reducing the number of pixels of an image signal read out from an image sensing element.
BACKGROUND OF THE INVENTION
Digital still cameras have become commercially available which are capable of photographing at almost the same number of recording pixels as the number of effective pixels of their image sensing elements and also of taking photographs using a smaller number of recording pixels than the number of effective pixels. As the number of pixels of image sensing elements increases year by year, comfortable photographing without any stress on the user requires an increase in speed at the building components of a digital camera, and also reduction in the data amount of a signal subjected to image processing when photographing using a smaller number of recording pixels than the actual number of effective pixels.
To meet this request, Japanese Patent Laid-Open No. <patcit id="pcit0001" dnum="US11308560B"><text>11-308560</text></patcit> proposes a method of achieving an image process and recording at high speeds by performing a reduction process for data of the Bayer array of an original image and obtaining data of a Bayer array with a smaller number of pixels. According to the method of the data reduction process disclosed in this reference, however, the barycentric positions of pixel signals of data of a Bayer array after the reduction process are localized, and an image obtained as a result of a subsequent signal process degrades. A detailed description of which will be omitted.
<figref idref="f0006">Figs. 6</figref> and <figref idref="f0007">7</figref> show an example of a conventional 1/4 reduction process which degrades an image. <figref idref="f0006">Fig. 6</figref> is a view showing the planar positions of data of a Bayer array of four G, R, B, and g colors before the reduction process. <figref idref="f0007">Fig. 7</figref> is a view showing the planar barycentric positions of data after a 1/2 reduction process in the longitudinal and lateral directions.
The transformations of the conventional reduction process are given by <maths id="math0001"><math display="block"><mi mathvariant="normal">G</mi><mo>'</mo><mn>1</mn><mo>=</mo><mfenced><mrow><mi mathvariant="normal">G</mi><mn>1</mn><mo>+</mo><mi mathvariant="normal">G</mi><mn>2</mn><mo>+</mo><mi mathvariant="normal">G</mi><mn>6</mn><mo>+</mo><mi mathvariant="normal">G</mi><mn>7</mn></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0001.tif" /></maths><maths id="math0002"><math display="block"><mi mathvariant="normal">R</mi><mo>'</mo><mn>1</mn><mo>=</mo><mfenced><mrow><mi mathvariant="normal">R</mi><mn>1</mn><mo>+</mo><mi mathvariant="normal">R</mi><mn>2</mn><mo>+</mo><mi mathvariant="normal">R</mi><mn>6</mn><mo>+</mo><mi mathvariant="normal">R</mi><mn>7</mn></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0002.tif" /></maths><maths id="math0003"><math display="block"><mi mathvariant="normal">B</mi><mo>'</mo><mn>1</mn><mo>=</mo><mfenced><mrow><mi mathvariant="normal">B</mi><mn>1</mn><mo>+</mo><mi mathvariant="normal">B</mi><mn>2</mn><mo>+</mo><mi mathvariant="normal">B</mi><mn>6</mn><mo>+</mo><mi mathvariant="normal">B</mi><mn>7</mn></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0003.tif" /></maths><maths id="math0004"><math display="block"><mi mathvariant="normal">g</mi><mo>'</mo><mn>1</mn><mo>=</mo><mfenced><mrow><mi>g1</mi><mo>+</mo><mi mathvariant="normal">g</mi><mn>2</mn><mo>+</mo><mi mathvariant="normal">g</mi><mn>6</mn><mo>+</mo><mi mathvariant="normal">g</mi><mn>7</mn></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0004.tif" /></maths>
As shown in <figref idref="f0007">Fig. 7</figref>, the pitches between the barycenters of pixels of data after the reduction process are not equal.
The document <patcit id="pcit0002" dnum="EP1282304A1"><text>EP 1 282 304 A1</text></patcit> discloses an image data reduction apparatus which converts first image data in which elements of a plurality of colors are arrayed within a plane into second image data having a smaller number of elements than the first image data by reducing the number of elements in a longitudinal direction, a lateral direction or both the longitudinal direction and the lateral direction within the plane.
The document <patcit id="pcit0003" dnum="US20010030700A1"><text>US 2001/0030700 A1</text></patcit> discloses an image pickup apparatus aiming at reducing consumed electric power without applying a load to a subsequent stage signal processing system in a case where a thinning-out processing of pixel information is carried out. To this end, there is used an XY address type solid-state image pickup element (for example, a MOS type image sensor) in which two rows and two columns are made a unit, and color filters having a color coding of repetition of the unit (repetition of two verticals (two horizontals) are arranged, and when a thinning-out read mode is specified, a clock frequency of a system is changed to 1/9, and on the basis of the changed clock frequency, a pixel is selected every three pixels in both a row direction and a column direction to successively read out a pixel signal.
SUMMARY OF THE INVENTION
An embodiment of the present invention prevents degradation of an image when data of the number of original pixels of an image sensing element is converted into data of a smaller number of pixels.
According to aspects of the present invention, there is provided an image data reduction apparatus for reducing a number of pixels of image data, as set out in independent claim 1, and a method of reducing a number of pixels of image data, as set out in independent claim 8.
Further developments and/or modifications of the above aspects of the present invention are set out in corresponding dependent claims, respectively.
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
The embodiments, however, are not exhaustive of the various embodiments of the invention as set out in the appendant claims.
In the drawings: <ul id="ul0001" list-style="none" compact="compact"><li><figref idref="f0001">Fig. 1</figref> is a view for explaining an example of an image data reduction method, which is useful for understanding the present invention;</li><li><figref idref="f0002">Fig. 2</figref> is a view for explaining the example of the image data reduction method, which is useful for understanding the present invention;</li><li><figref idref="f0003">Fig. 3</figref> is a view for explaining an embodiment of an image data reduction method, which constitutes an embodiment of the present invention;</li><li><figref idref="f0004">Fig. 4</figref> is a view for explaining the embodiment of the image data reduction method, which constitutes an embodiment of the present invention;</li><li><figref idref="f0005">Fig. 5</figref> is a block diagram showing an example of the configuration of a digital camera to which the image data reduction method of the embodiment of the present invention is applied;</li><li><figref idref="f0006">Fig. 6</figref> is a view for explaining the prior art; and</li><li><figref idref="f0007">Fig. 7</figref> is a view for explaining the prior art.</li></ul>
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(Example)
<figref idref="f0001">Figs. 1</figref> and <figref idref="f0002">2</figref> are views for explaining an example of an image data reduction method, which is useful for understanding the present invention.
The present example will exemplify a case in which the number of pixels is reduced by 1/2 in both the longitudinal and lateral directions.
<figref idref="f0001">Fig. 1</figref> shows the planar layout of data before a reduction process, and data have a Bayer array of the four G, R, B, and g colors. In <figref idref="f0001">Fig. 1</figref>, m and n are integers of 1 or more.
<figref idref="f0002">Fig. 2</figref> shows the planar Layout of data after the reduction process, and data have a Bayer array of the four G, R, B, and g colors, similar to <figref idref="f0001">Fig. 1</figref>.
For example, the transformations of the reduction process according to the present example are given by <maths id="math0005" num="(1-1)"><math display="block"><mi mathvariant="normal">G</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0005.tif" /></maths><maths id="math0006" num="(1-2)"><math display="block"><mi mathvariant="normal">R</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>2</mn></math><img file="EP1526710B1_D0006.tif" /></maths><maths id="math0007" num="(1-3)"><math display="block"><mi mathvariant="normal">B</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>2</mn></math><img file="EP1526710B1_D0007.tif" /></maths><maths id="math0008" num="(1-4)"><math display="block"><mi mathvariant="normal">g</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>+</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>2</mn></mrow></mfenced><mo>+</mo><mn>4</mn><mo>×</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>8</mn></math><img file="EP1526710B1_D0008.tif" /></maths>
As shown in <figref idref="f0002">Fig. 2</figref>, equations (1-1) to (1-4) are so set as to make the pitches between the barycenters of data after the reduction process equal to each other.
In addition to equations (1-1) to (1-4), the present example provides transformations that implement equal pitches between the barycenters of data after the reduction process.
These transformations can also implement an example. For example, equations (1-2) and (1-3) are replaced by <maths id="math0009" num="(1-2')"><math display="block"><mi mathvariant="normal">R</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>−</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mn>2</mn><mo>×</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mn>2</mn><mo>×</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>2</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>6</mn></math><img file="EP1526710B1_D0009.tif" /></maths><maths id="math0010" num="(1-3')"><math display="block"><mi mathvariant="normal">B</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>2,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mn>2</mn><mo>×</mo><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mn>2</mn><mo>×</mo><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>+</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>6</mn></math><img file="EP1526710B1_D0010.tif" /></maths>
The following transformations which process the G and g colors as the same color are also applicable: <maths id="math0011" num="(1-1')"><math display="block"><mi mathvariant="normal">G</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mn>4</mn><mo>×</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>8</mn></math><img file="EP1526710B1_D0011.tif" /></maths><maths id="math0012" num="(1-4')"><math display="block"><mi mathvariant="normal">g</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>+</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>2</mn></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>+</mo><mn>1,</mn><mi mathvariant="normal">n</mi><mo>+</mo><mn>2</mn></mrow></mfenced><mo>+</mo><mn>4</mn><mo>×</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi><mo>+</mo><mn>1</mn></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>8</mn></math><img file="EP1526710B1_D0012.tif" /></maths>
(Embodiment)
<figref idref="f0003">Figs. 3</figref> and <figref idref="f0004">4</figref> are views for explaining an embodiment of an image data reduction method, which constitutes an embodiment of the present invention.
The present embodiment will exemplify a case in which the number of pixels is reduced by 1/2 in only the lateral direction.
<figref idref="f0003">Fig. 3</figref> shows the planar layout of data before a reduction process, and data have a Bayer array of the four G, R, B, and g colors. In <figref idref="f0003">Fig. 3</figref>, m and n are integers of 1 or more.
<figref idref="f0004">Fig. 4</figref> shows the planar layout of data after the reduction process, and data have a Bayer array of the four G, R, B, and g colors, similar to <figref idref="f0003">Fig. 3</figref>.
For example, the transformations of the reduction process according to the present embodiment are given by <maths id="math0013" num="(2-1)"><math display="block"><mi mathvariant="normal">G</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">G</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>2</mn></math><img file="EP1526710B1_D0013.tif" /></maths><maths id="math0014" num="(2-2)"><math display="block"><mi mathvariant="normal">R</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mn>2</mn><mo>×</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>+</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0014.tif" /></maths><maths id="math0015" num="(2-3)"><math display="block"><mi mathvariant="normal">B</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">B</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>2</mn></math><img file="EP1526710B1_D0015.tif" /></maths><maths id="math0016" num="(2-4)"><math display="block"><mi mathvariant="normal">g</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mfenced><mrow><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>−</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mn>2</mn><mo>×</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>+</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>+</mo><mn>1,</mn><mi mathvariant="normal">n</mi></mrow></mfenced></mrow></mfenced><mo>/</mo><mn>4</mn></math><img file="EP1526710B1_D0016.tif" /></maths>
As shown in <figref idref="f0004">Fig. 4</figref>, equations (2-1) to (2-4) are so set as to make the pitches between the barycenters of data in the lateral direction after the reduction process equal to each other.
In addition to equations (2-1) to (2-4), the present embodiment provides transformations that implement equal pitches between the barycenters of data after the reduction process.
These transformations can also implement an embodiment. For example, equations (2-2) and (2-4) are replaced by <maths id="math0017" num="(2-2')"><math display="block"><mi mathvariant="normal">R</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mi mathvariant="normal">R</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced></math><img file="EP1526710B1_D0017.tif" /></maths><maths id="math0018" num="(2-4')"><math display="block"><mi mathvariant="normal">g</mi><mo>'</mo><mfenced><mrow><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced><mo>=</mo><mi mathvariant="normal">g</mi><mfenced><mrow><mn>2</mn><mi mathvariant="normal">m</mi><mo>,</mo><mi mathvariant="normal">n</mi></mrow></mfenced></math><img file="EP1526710B1_D0018.tif" /></maths>
The present embodiment has described the reduction process in only the lateral direction, but a reduction process in only the longitudinal direction can also similarly be achieved.
(Further Embodiment)
<figref idref="f0005">Fig. 5</figref> is a block diagram for explaining an embodiment, which constitutes an embodiment of the present invention, comprising a digital still camera.
In <figref idref="f0005">Fig. 5</figref>, reference numeral 1 denotes a color image sensing element of a so-called Bayer array in which columns of repetitive G and R pixels and columns of repetitive B and G pixels are alternately arrayed; 2, an A/D converter; 3, a reduction processing circuit; 4, a digital signal processing circuit; 5, a memory; 6, a microcomputer; 7, an operation switch; and 8, a recording medium such as a compact flash® card. The digital signal processing circuit 4 incorporates a bus 9, image processor 10, contraction circuit 11, compression circuit 12, system controller 13, microcomputer interface 14, recording medium interface 15, and the like. The operation switch 7 includes a release button for photographing, and a pixel count selection button for selecting the number of recording pixels.
The outline of operation from photographing to recording will be explained step by step.
When the microcomputer 6 recognizes an operation to the release button of the operation switch 7, the microcomputer 6 forms an object image on the image sensing element 1 via an image sensing optical system (not shown). After a proper exposure period, analog image data is read out column by column from the image sensing element 1. The analog image data is converted into digital data by the A/D converter 2, and the digital data is supplied as the first digital image data to the reduction processing circuit 3.
The reduction processing circuit 3 receives pixel count selection information of the pixel count selection button of the operation switch 7 from the microcomputer 6. If a reduction process is unnecessary, the first digital image data is directly sent to the digital signal processing circuit 4; if a reduction process is necessary, digital image data having undergone the reduction process is sent as the second digital image data to the digital signal processing circuit 4.
The digital signal processing circuit 4 sequentially sets control signals to respective units such as the system controller 13 from the microcomputer 6 via the microcomputer interface 14 and bus 9. The second digital image data undergoes a predetermined image process by the image processor 10. The image processor 10 executes the following process. The present embodiment adopts a color image sensing element of a Bayer array. Pixels covered with green filters are interpolated by signals from pixels covered with red filters on two sides of each of the green filters in the horizontal direction, forming signals of a red component. Also, the pixels covered with green filters are interpolated by signals from pixels covered with blue filters on two sides of each of the green filters in the vertical direction, forming signals of a blue component. The same interpolation process is done for pixels on which red filters or blue filters are arranged. After the process by the image processor, if necessary, the second digital image data is contracted by the contraction circuit 11, for example, JPEG-compressed by the compression circuit 12, and recorded on the recording medium 8 in a proper file format via the recording medium interface 15.
The second digital image signal changes in format through a series of processes, and is exchanged between the building units of the digital signal processing circuit 4 and the memory 5 via the bus 9. When the second digital signal is obtained by reducing the number of pixels by the reduction processing circuit 3, the processing amount by the units of the digital signal processing circuit 4 and the traffic of the bus 9 decrease in comparison with a digital signal subjected to no reduction process, shortening the time of a series of processes.
In the present embodiment, the processing method changes as follows between a case in which an image is obtained without decreasing the resolution and a case in which an image is obtained by decreasing the resolution.
The case in which the resolution is not decreased will be explained.
A signal is input to the digital signal processing circuit and undergoes a signal process without performing any reduction process by the reduction processing circuit 3 regardless of selecting a still picture mode in which one still picture is taken every time the release switch is pressed or a sequential shooting mode in which a plurality of still pictures are sequentially taken every time the release switch is pressed.
The case in which the resolution is decreased will be explained.
A signal undergoes a reduction process by the reduction processing circuit 3, is input to the digital signal processing circuit 4, and undergoes a signal process regardless of selecting the still picture mode in which one still picture is taken every time the release switch is pressed or the sequential shooting mode in which a plurality of still pictures are sequentially taken every time the release switch is pressed.
The present embodiment is particularly effective for the sequential shooting mode in which sequential shooting is performed by decreasing the resolution because the number of pixels is reduced before input to the digital signal processing circuit 4.
The reduction processing circuit 3 is configured in accordance with transformations as described in the above embodiment (i.e. the image data reduction method in accordance with the present invention) so as to make the pitches between the barycenters of data after a reduction process equal to each other. Thus, a final image which hardly degrades in comparison with a conventional image can be attained.
The contraction circuit 11 generates a final image by contraction in a direction in which no reduction process is done when the reduction processing circuit 3 executes a reduction process in only the lateral or longitudinal direction, as described in the above embodiment (i.e. the image data reduction method in accordance with the present invention).
In the (image data reduction method of the) above-described example and embodiment, the planar layout of signals is a so-called Bayer array. However, examples and embodiments can also be applied to an array of another type.
As described above, according to the embodiments, the data amount in subsequent processes can be decreased, and a high-quality final image can be obtained by performing a reduction process in the longitudinal or lateral direction or both the longitudinal and lateral directions.
(Other Embodiment)
Embodiments can also be achieved when a carrier (such as a storage medium, recording medium, signal, etc) which carries software program codes for realizing the functions of the above-described embodiments is supplied to a system or apparatus, and the computer (or the CPU or MPU) of the system or apparatus reads out and executes the program codes carried by the carrier. In this case, the program codes read from the carrier realize the functions of the above-described embodiments, and the carrier which carries the program codes constitutes an embodiment. The functions of the above-described embodiments are realized when the computer executes the readout program codes. Also, the functions of the above-described embodiments are realized when an OS (Operating System) or the like running on the computer performs some or all of actual processes on the basis of the instructions of the program codes.
Furthermore, the functions of the above-described embodiments are also realized when the program codes read from the carrier are written in the memory of a function expansion card inserted into the computer or the memory of a function expansion unit connected to the computer, the CPU of the function expansion card or function expansion unit performs some or all of actual processes on the basis of the instructions of the program codes.
Contents4
25 sheets
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Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US2001030700A1 | Cites | United States of America | Examiner |
| EP0720388A | Cites | European Patent Office (EPO) | – |
| EP1282304A | Cites | European Patent Office (EPO) | – |
| US2001030700A1 | Cites | United States of America | – |
| US2002085249A1 | Cites | United States of America | – |
7 members in 3 offices
Priority claims5
| Document | Office | Kind | Date |
|---|---|---|---|
| 2003361134 | Japan | A | |
| 2003361134 | Japan | A | |
| 2003361134 | Japan | – | |
| 2003361134 | – | – | – |
| JP20030361134 | – | – | – |
Members7
| Document | Office | Kind | |
|---|---|---|---|
| US2005083415A1 | United States of America | A1 | |
| EP1526710A2 | European Patent Office (EPO) | A2 | |
| JP2005130047A | Japan | A | |
| EP1526710A3 | European Patent Office (EPO) | A3 | |
| JP4338188B2 | Japan | B2 | |
| US7907182B2 | United States of America | B2 | |
| EP1526710B1This record | European Patent Office (EPO) | B1 |
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Numbers
- Publication
- 1526710
- Publication, DOCDB
- 1526710
- Publication, EPODOC
- EP1526710
- Application
- 42564807
- Application, DOCDB
- 04256480
- Application, EPODOC
- EP20040256480
Titles3
- German
- Vorrichtung und Verfahren zur Datenreduktion, Programm, Speichermedium, und Bildaufnahmevorrichtung
- English
- Image data reduction apparatus and method, program, storage medium, and image sensing apparatus
- French
- Dispositif et procédé pour la réduction de données d'images, programme, support d'enregistrement, et appareil de prise d'images
Classification
- CPC, 1
- H04N1/3935
- IPC, 5
- H04N1 393
- H04N9 03
- H04N23 40
- H04N25 00
- H04N101 00
Designated states1
- Contracting states, 1
- Türkiye
