CN101221659A - Dynamic contrast extension circuit and method - Google Patents

Dynamic contrast extension circuit and method Download PDF

Info

Publication number
CN101221659A
CN101221659A CNA2007100038865A CN200710003886A CN101221659A CN 101221659 A CN101221659 A CN 101221659A CN A2007100038865 A CNA2007100038865 A CN A2007100038865A CN 200710003886 A CN200710003886 A CN 200710003886A CN 101221659 A CN101221659 A CN 101221659A
Authority
CN
China
Prior art keywords
values
picture
statistical
data
dynamic contrast
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CNA2007100038865A
Other languages
Chinese (zh)
Other versions
CN100562893C (en
Inventor
高盟超
沈自强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chunghwa Picture Tubes Ltd
Original Assignee
Chunghwa Picture Tubes Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chunghwa Picture Tubes Ltd filed Critical Chunghwa Picture Tubes Ltd
Priority to CNB2007100038865A priority Critical patent/CN100562893C/en
Publication of CN101221659A publication Critical patent/CN101221659A/en
Application granted granted Critical
Publication of CN100562893C publication Critical patent/CN100562893C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The invention discloses a dynamic comparison expansion circuit, which comprises a grey scale statistical unit, an arithmetic unit and a conversion unit, wherein the grey scale statistical unit receives a picture and divides the grey scale distribution of the picture into a plurality of statistical interval to count the number of pixels in each statistical interval and obtain a plurality of statistical values. When any of the statistical values is greater than a threshold value, the arithmetic unit can adjust each statistical value according to the difference between the statistical value which is greater than the threshold value and the threshold value. Thus, the conversion unit can generate conversion data according to the adjusted statistical values and carry out dynamic comparison expansion of the picture.

Description

Dynamic contrast extension circuit and method
Technical field
The method that the present invention upholds relevant for a kind of dynamic contrast, and be particularly to a kind of method of utilizing threshold values (Threshold Value) to carry out the dynamic contrast extension.
Background technology
Dynamic contrast is upheld (Dynamic Contrast Enhancement) and is meant that the GTG that will import image carries out distribution again, and its maximum purpose is to increase image emphasis dynamic range partly, and improves the contrast of image characteristics visually.256 grey-tone images with 8 bits are example, and its GTG can be evenly distributed in the scope of 0-255.But in the application of reality, the gray-scale distribution of image is not unalterable in the film usually.
With image processing, the statistic histogram equalization is very classical and effective image enhancement technique.When receiving a picture data, can it be become evenly to the image characteristics of this picture through after certain conversion traditionally.Well known, the statistic histogram of image is the approximate probability density function that the greyscale level of each pixel correspondence in the image distributes.The meaning of Nogata equalization is that picture afterwards can be so that the number of pixels that is distributed on each greyscale level be equal or equal haply by handling.Yet because the restriction of circuit, way is not accomplished the situation of each GTG statistics.
Therefore, existing technology is to add up receiving the picture segmentation.Figure 1A is the gray-scale distribution figure of certain picture, and Figure 1B carries out the transformation curve figure that dynamic contrast is upheld according to the resulting Figure 1A of prior art.Please merge with reference to Figure 1A and 1B, in existing technology, can earlier the picture gray-scale distribution be divided into several intervals, the opinion with Figure 1A is to be divided into n1 (0-63), n2 (64-127), n3 (128-191), four intervals of n4 (192-255).Then, add up the number of each interval interior pixel, and obtain the histogram that Figure 1B illustrates.
Suppose that each interval statistical value is that n1 is 575 respectively, n2 is 374, n3 is 393, n4 is 97.Therefore, 360 pixels should be assigned on average in each interval.At this moment, in existing technology, statistical value that can each is interval is divided by 360, and obtains each interval up-to-date slope.With the n1 interval, then be statistical value 575 that this is interval divided by 360, and obtain 1.6 slope value.After each interval slope value is all calculated, just can obtain the transformation curve 101 that illustrates as Figure 1B.By this, each interval number of pixels can be adjusted according to this transformation curve, upholds and picture is carried out dynamic contrast.
Yet, be not as the gray-scale distribution of each image all illustrates just like Figure 1A.Fig. 2 A has illustrated the gray-scale distribution figure of another picture.Please refer to Fig. 2 A, in some picture, most pixel might concentrate in the scope of a certain GTG, and according to above-mentioned existing technology, will obtain the transformation curve as Fig. 2 B.
Please refer to Fig. 2 B, can it is evident that, because in Fig. 2 A, the number of pixel all concentrates in first interval of gray-scale distribution.Therefore, can cause transformation curve 201 in rising that at the beginning will be rapid.And in other interval, it is 0 that the slope of transformation curve 201 is close to.
Fig. 2 C obtains up-to-date gray-scale distribution figure for the transformation curve 201 of foundation Fig. 2 B.Please refer to Fig. 2 C, we can very clearly see, if utilize prior art to compare extension, in first interval of gray-scale distribution, the distribution proportion of number of pixels is significantly with different originally, and Here it is picture is by the distortion phenomenon of excessively upholding and causing.
In addition, existing technology also is not suitable for being used for handling the picture image with black matrix zone.Fig. 3 is a kind of synoptic diagram with the picture in black matrix zone.In some picture, have normal viewing area 301, and can display frame and with the complete black zone 303 and 305 that manifests, we claim that these black full zones 303 and 305 are exactly the black matrix zone.
In existing technology, in the time will calculating transformation curve and uphold, the number of pixels in black matrix zone can be added up in the lump the picture with black matrix zone is carried out dynamic contrast.Because the black matrix zone is not an effective viewing area, so prior art lists the number of pixels in black matrix zone the action of statistics in, might make meet carry out dynamic contrast when upholding and produce serious distortion.
Summary of the invention
Therefore, the present invention can utilize a threshold values to come that picture is carried out dynamic contrast and uphold for a kind of dynamic contrast extension circuit, makes it not have the situation generation of excessive extension.
The method that the present invention also provides a kind of dynamic contrast to uphold can be avoided picture to compare upholding and causes distortion.
The method that the present invention provides a kind of dynamic contrast to uphold again can suitably be handled the picture with black matrix zone, and can not make the picture distortion.
Dynamic contrast extension circuit provided by the present invention comprises GTG statistic unit, arithmetic element and converting unit.Wherein, the GTG statistic unit can receive a picture, and it is interval that the gray-scale distribution of this picture is divided into a plurality of statistics, adding up the number of the interval pixel of each statistics, and obtains a plurality of statistical values.Wherein arbitrary during greater than a threshold values when these statistical values, arithmetic element can be adjusted each statistical value according to the statistical value and the difference between threshold values that surpass threshold values.By this, converting unit just can produce a translation data according to adjusted statistical value, upholds this picture is carried out dynamic contrast.
In preferred embodiment, extension circuit provided by the present invention also comprises comparer, proportional zoom unit and divider.Wherein, comparer can receive the various color gray values of picture, and wherein the maximum is delivered to converting unit, the color gray values with the foundation translation data after obtaining changing.In addition, the proportional zoom unit can receive all color gray values, and calculate the convergent-divergent multiplying power of maximum colours GTG value according to the output of converting unit, more received color gray values be multiply by this convergent-divergent multiplying power, to obtain the color gray values behind the convergent-divergent.Divider then is to electrically connect proportional zoom unit and converting unit, exports with color gray values and the color gray values behind the convergent-divergent after being used for will change according to the operation result of comparer.
From another viewpoint, the invention provides the method that a kind of dynamic contrast is upheld, comprise that the gray-scale distribution with a picture is divided into N statistics interval, and N is a positive integer.In addition, add up the number that each adds up interval interior pixel, and obtain a plurality of statistical values.Wherein arbitrary during when these statistical values greater than a threshold values, then adjust each statistical value according to the statistical value and the difference between the threshold values that surpass threshold values, come that picture is carried out dynamic contrast and uphold to obtain a translation data.
In one embodiment of the invention, the step that obtains translation data comprises that also the statistical value that will surpass threshold values deduct threshold values, and obtains the difference of the two, and will replace with threshold values above the statistical value in the statistics interval of threshold values.In addition, the difference that is obtained is obtained an adjusted value divided by N, and each statistical value is added adjusted value and obtains up-to-date statistical value, make the present invention to obtain translation data according to up-to-date statistical value.
In addition, method provided by the present invention also comprises a plurality of color luma data that receive picture, and defines wherein that the maximum is maximum gray data, and remaining is defined as a plurality of less luma data.In addition, the present invention changes the maximum gray data according to translation data, and obtains up-to-date maximum gray data, and also with up-to-date maximum gray data divided by original maximum gray data, and obtain a convergent-divergent multiplying power.By this, the present invention just can be multiply by less luma data this convergent-divergent multiplying power, and obtains up-to-date less luma data, and exports up-to-date maximum gray data and less luma data.
From another viewpoint, the method that the present invention provides a kind of dynamic contrast to uphold in addition is suitable for handling the picture with a normal viewing area and a black matrix zone.The present invention includes gray-scale distribution with normal viewing area, to be divided into N statistics interval, adding up the number of the interval pixel of each statistics, and obtains a plurality of statistical values.In addition, the present invention also can add up the number of the pixel in black matrix zone, and obtains a black matrix statistical value.The present invention can obtain the black matrix statistical value one black matrix adjusted value divided by N, and each statistical value is added the black matrix adjusted value, upholds picture is carried out dynamic contrast.
From another viewpoint, method provided by the present invention comprises and receives a picture, and detects this picture whether one black matrix zone is arranged.Do not have black matrix when zone in the picture if detect, then the gray-scale distribution of picture is divided into N statistics interval, adding up the number that each adds up interval interior pixel, and obtain a plurality of statistical values.And wherein arbitrary during when these statistical values greater than a threshold values, then adjust each statistical value according to the statistical value and the difference between the threshold values that surpass threshold values, come that picture is carried out dynamic contrast and uphold to obtain a translation data.
Relatively, when detecting picture and have this black matrix zone, it is interval then the gray-scale distribution of the normal viewing area of this picture except the black matrix zone to be divided into N statistics, with the number of the pixel of adding up each statistics interval, and obtains a plurality of statistical values.In addition, the present invention also can add up the number of the pixel in black matrix zone, and obtains a black matrix statistical value.The present invention can obtain the black matrix statistical value one black matrix adjusted value divided by N, and each statistical value is added the black matrix adjusted value, upholds picture is carried out dynamic contrast.
From as can be known above, because the present invention, adjusts the interval statistical value of each statistics according to statistical value that surpasses threshold values and the difference between the threshold values.By this, just can avoid picture because excessively uphold and the distortion of generation.In addition, because the present invention understands the data in independent processing black matrix zone.Therefore, when the present invention has the picture in black matrix zone in processing, just can avoid distortion.
For above-mentioned and other purposes, feature and advantage of the present invention can be become apparent, preferred embodiment cited below particularly, and conjunction with figs. is described in detail below.
Description of drawings
Figure 1A is the gray-scale distribution figure of certain picture.
Figure 1B is then for carrying out the transformation curve figure that dynamic contrast is upheld according to the resulting Figure 1A of prior art.
Fig. 2 A is the gray-scale distribution figure of another picture.
Fig. 2 B is for carrying out the transformation curve figure that dynamic contrast is upheld according to the resulting Fig. 2 A of prior art.
Fig. 2 C obtains up-to-date gray-scale distribution figure for the transformation curve of foundation Fig. 2 B.
Fig. 3 is a kind of synoptic diagram with the picture in black matrix zone.
Fig. 4 is the flow chart of steps according to the method for a kind of dynamic contrast extension of a preferred embodiment of the present invention.
Fig. 5 is the synoptic diagram according to the method for a kind of dynamic contrast extension of a preferred embodiment of the present invention.
Fig. 6 is a kind of flow chart of steps that obtains translation data according to a preferred embodiment of the present invention.
Fig. 7 is a kind of transformation curve figure according to preferred embodiment of the present invention.
Fig. 8 is the flow chart of steps according to the method for a kind of dynamic contrast extension of another preferred embodiment of the present invention.
Fig. 9 is a circuit block diagram of adjusting circuit according to a kind of dynamic contrast of a preferred embodiment of the present invention.
Figure 10 selects a kind of dynamic contrast of embodiment to adjust the circuit block diagram of circuit according to the present invention one.
The flow chart of steps of Figure 11 for upholding according to a kind of dynamic contrast of carrying out color conversion simultaneously of a preferred embodiment of the present invention.
Embodiment
Fig. 4 is according to the flow chart of steps of a kind of dynamic contrast extension method of a preferred embodiment of the present invention, is suitable for handling an image information.Please refer to Fig. 4, when receiving a picture, meeting of the present invention is as described in the step S401, and it is interval that the gray-scale distribution of the picture that receives is divided into N statistics, and as described in the step S403, adds up the number of the interval interior pixel of each statistics, and obtains a plurality of statistical values.Wherein, N is a positive integer.
When supposing that the present invention will carry out the dynamic contrast extension to the described image information of Fig. 2 A, meeting is divided into N statistics interval with the gray-scale distribution of Fig. 2 A earlier, and with Fig. 2 A, N equals 4.That is to say that it is interval that the present invention can be divided into the gray-scale distribution among Fig. 2 A n1, n2, n3 and four statistics of n4, and then add up the interval interior number of pixels of each statistics.Though in the present embodiment, be that gray-scale distribution is divided into four statistics is interval, know that usually the knowledgeable should be known in that the statistics interval of any number all is that the present invention is included yet have in this field.
Fig. 5 is the synoptic diagram according to a kind of dynamic contrast extension method of a preferred embodiment of the present invention.Please merge with reference to Fig. 4 and Fig. 5, after having added up each number of adding up interval interior pixel, can produce a plurality of statistical values, for example square 501,503,505 and 507 among Fig. 5 is represented the interval statistical value of each statistics respectively.Then, carry out step S405, judge whether that exactly all statistical values all are not more than a threshold values TH1.When if all statistical values all are not more than threshold values TH1,, make this picture carry out existing dynamic contrast and uphold then as described in the step S407.
Relatively, suppose to have any statistical value to surpass threshold values, then, obtain a translation data with the difference between the threshold values TH1 according to the statistical value that surpasses threshold values TH1 and come picture is carried out the dynamic contrast extension as described in the step S409.
Fig. 6 is a kind of flow chart of steps that obtains translation data according to a preferred embodiment of the present invention.Please merge with reference to Fig. 5 and Fig. 6, suppose in Fig. 5, the interval primary statistics of each statistics is worth as follows:
n1:1360
n2:70
n3:5
n4:5
And threshold values TH1 is assumed to be 540.Therefore, add up the statistical value of interval n1 apparently higher than threshold values.At this moment, just as described in the step S601, will deduct threshold values above the statistical value of threshold values and obtain the two difference.Therefore, the statistical value of the interval n1 of statistics is deducted after the threshold values TH1, the difference that can obtain the two is 820.Then, this above the statistical value in the statistics interval of threshold values, is replaced with threshold values.Therefore, the interval interior statistical value of statistics just changes to 540.
Then, carry out step S603, the difference with the two obtains an adjusted value divided by N exactly.In the present embodiment, N equals four.Therefore, difference is divided by after 4, and can obtain statistical value is 205.Then, as step S605 each statistical value is added adjusted value and obtain up-to-date statistical value, for example among Fig. 5, the value of square 511,513,515 and 517 representatives.Detailed calculating formula is as follows:
n1:540+205=745
n2:70+205=275
n3:5+205=210
n4:5+205=210
So far, the present invention just can obtain translation data according to up-to-date statistical value as described in the step S607.As shown in Figure 7, it is a kind of transformation curve figure according to preferred embodiment of the present invention.Please refer to Fig. 7, transformation curve 701 is according to the transformation curve that statistical value obtained up-to-date among Fig. 5.Compare with the transformation curve 201 that Fig. 2 C is illustrated, the transformation curve that the present invention obtained is more near 1: 1 ratio.Therefore, picture is difficult for distortion.
Fig. 8 is the flow chart of steps according to a kind of dynamic contrast extension method of another preferred embodiment of the present invention.Please refer to Fig. 8, have black matrix when zone when the present invention detects the picture that is received, then can be earlier as described in the step S801, gray-scale distribution that will other normal display frames except the black matrix zone is divided into N statistics interval.Similarly, meeting of the present invention is added up each earlier and is added up the number of interval interior pixel, and obtains a plurality of statistical values, and just step S803 is described.
Next more specifically, as described in step S805, the number of statistics black matrix zone interior pixel, and obtain a black matrix statistical value.Suppose that N equals 4, just the gray-scale distribution with received picture is divided into four statistics interval (n1, n2, n3 and n4), and the statistical value in each statistics interval is as follows:
n1:560
n2:70
n3:5
n4:5
Suppose that the black matrix statistical value is 800.At this moment, 800 just can obtain a black matrix adjusted value 200 divided by 4, just as described in the step S807.Then, as described in step S809, each statistical value is all added the black matrix adjusted value, and obtain new statistical value, for example:
n1:560+200=760
n2:70+200=270
n3:5+200=205
n4:5+200=205
Then, the present invention can add up each interval interior new statistical value such as Fig. 4 and the described steps flow chart of Fig. 6 and handle, and upholds picture is carried out dynamic contrast.
Fig. 9 is a circuit block diagram of adjusting circuit according to a kind of dynamic contrast of a preferred embodiment of the present invention.Please refer to Fig. 9,, the present invention proposes dynamic contrast and adjust circuit 900, comprise GTG statistic unit 902, arithmetic element 904 and converting unit 906 in order to realize above-mentioned method.
Please continue with reference to Fig. 9, GTG statistic unit 902 is used for receiving a picture, and the gray-scale distribution of this picture is divided into several statistics intervals, and adds up the number that each adds up interval interior pixel, and obtains several statistical value data.And GTG statistic unit 902 can be delivered to arithmetic element 904 with these statistical value data ND.
Select among the embodiment at some, whether GTG statistic unit 902 can also detect the picture that is received the black matrix zone.Have black matrix when zone if detect the picture that is received, then GTG statistic unit 902 can also count the number of pixels in black matrix zone, and obtains a black matrix statistical value BD and handle for arithmetic element 904.
After arithmetic element 904 receives the statistics that GTG statistic unit 902 exported, these statisticss and threshold values TH1 will be carried out processing, and obtain new statistical value data C1 and give converting unit 906 as Fig. 4, Fig. 6 or Fig. 8.By this, the translation data TD that converting unit 906 just can obtain transformation curve for example etc. according to new statistical value data upholds picture is carried out dynamic contrast.
Because picture is carrying out dynamic contrast when upholding, its color GTG also might colorific divorce, and makes picture seem nature very.Therefore, Figure 10 selects a kind of dynamic contrast of embodiment to adjust the circuit block diagram of circuit according to the present invention one.Please refer to Figure 10, in some selected embodiment, dynamic contrast is adjusted circuit 900 can also comprise comparer 1002, proportional zoom unit 1004 and divider 1006, was used for the conversion of color GTG of synchronous processing picture.
The flow chart of steps of Figure 11 for upholding according to a kind of dynamic contrast of carrying out color conversion simultaneously of a preferred embodiment of the present invention.Please merge with reference to Figure 10 and Figure 11, comparer 1002 is each the color luma data that is used for receiving picture.In the present embodiment, these color luma data for example are red color luma data R, green tint luma data G and blue color luma data B, yet the present invention is not as limit.In addition, define that the maximum is maximum gray data M ax in these color luma data, remaining color luma data then is defined as less luma data Min_a and Min_b, just as described in the step S1101.
After comparer 1002 receives these color luma data, the maximum gray data can be delivered to converting unit 906.By this, converting unit 906 just as described in the step S1103, changes the maximum gray data according to translation data, and obtain up-to-date maximum gray data, and the converting unit 906 maximum gray data that this is up-to-date is sent to proportional zoom unit 1004.
In the present embodiment, proportional zoom unit 1004 comprises divider 1112 and multiplier 1114.When converting unit 906 was delivered to proportional zoom unit 1004 with output, divider 1112 can be as described in the step S1105, up-to-date maximum gray data divided by original maximum gray data M ax, and is obtained a convergent-divergent multiplying power K1, and deliver to multiplier 1114.By this, multiplier 1114 can carry out step S1107, exactly less luma data be multiply by this convergent-divergent multiplying power K1, and obtains up-to-date less luma data.
In addition, up-to-date maximum gray data and less luma data can exports to divider 1006 as described in the step S1109 in proportional zoom unit 1004.The selection signal SEL that divider 1006 is then produced according to comparer 1002, and the sharp B ' output of color luma data R ', G ' after will changing.
In sum, the present invention has following advantage at least:
1. because the present invention utilize to surpass the interval statistical value of the statistics of threshold values and the difference between threshold values produces translation data, therefore just can be so that picture unlikely generation distortion when carrying out the dynamic contrast extension.
2. because the present invention handles the data in black matrix zone in addition, therefore also can avoid the picture distortion that when processing has the picture in black matrix zone, is caused.
3. the present invention simultaneously also carries out synchronous conversion to each color GTG, so picture more can colorific divorce and cause distortion.
Though the present invention discloses as above with preferred embodiment; right its is not in order to limiting the present invention, anyly has the knack of this skill person, without departing from the spirit and scope of the present invention; when can doing a little change and retouching, so protection scope of the present invention is when with being as the criterion that claim was defined.

Claims (17)

1. dynamic contrast extension circuit comprises:
One GTG statistic unit receives a picture, and it is interval that the gray-scale distribution of this picture is divided into a plurality of statistics, adding up the number of the interval pixel of each statistics, and obtains a plurality of statistical values;
One arithmetic element electrically connects this GTG statistic unit, in order to wherein arbitrary during greater than a threshold values when those statistical values, adjusts each statistical value according to statistical value that surpasses this threshold values and the difference between this threshold values; And
One converting unit electrically connects this arithmetic element, produces a translation data according to those adjusted statistical values, upholds this picture is carried out dynamic contrast.
2. dynamic contrast extension circuit as claimed in claim 1 is characterized in that, also comprises:
One comparer receives a plurality of color gray values of this picture, and wherein the maximum is delivered to this converting unit, with the color gray values after obtaining changing according to this translation data;
One proportional zoom unit, receive all those color gray values, and calculate a convergent-divergent multiplying power of this maximum colours GTG value according to the output of this converting unit, to multiply by this convergent-divergent multiplying power except all the other color gray values this maximum colours GTG value again, to obtain the color gray values behind the convergent-divergent; And
One divider electrically connects this proportional zoom unit and this converting unit, in order to color gray values after will changing according to the operation result of this comparer and the output of the color gray values behind the convergent-divergent.
3. dynamic contrast extension circuit as claimed in claim 2 is characterized in that, this proportional zoom unit comprises:
One divider in order to the color gray values of the maximum after will the changing color gray values divided by original maximum, and obtains this convergent-divergent multiplying power; And
One multiplier multiply by this convergent-divergent multiplying power with all the other color gray values except the color gray values of maximum, and obtains the color gray values behind the convergent-divergent.
4. dynamic contrast extension circuit as claimed in claim 2 is characterized in that, those color gray values comprise red color GTG value, green tint GTG value and blue color gray values.
5. dynamic contrast extension circuit as claimed in claim 1 is characterized in that this translation data comprises a transformation curve.
6. the method that dynamic contrast is upheld comprises the following steps:
The gray-scale distribution of one picture is divided into N statistics interval, and wherein N is a positive integer;
Add up the number that each adds up interval interior pixel, and obtain a plurality of statistical values; And
Wherein arbitrary during when those statistical values greater than a threshold values, then adjust each those statistical value according to the statistical value and the difference between this threshold values that surpass this threshold values, come this picture is carried out the dynamic contrast extension to obtain a translation data.
7. the method for dynamic contrast extension as claimed in claim 6 is characterized in that, obtains the step of this translation data, comprises the following steps:
To deduct this threshold values above the statistical value of threshold values, and obtain the difference of the two, and will replace with this threshold values above the statistical value in the statistics interval of this threshold values;
This difference is obtained an adjusted value divided by N;
Each those statistical value is added this adjusted value and obtains a plurality of up-to-date statistical values; And
Obtain this translation data according to those up-to-date statistical values.
8. the method that dynamic contrast as claimed in claim 6 is upheld is characterized in that, also comprises the following steps:
Receive a plurality of color luma data of this picture, and define wherein that the maximum is maximum gray data, and remaining is defined as a plurality of less luma data;
These maximum gray data are changed according to this translation data, and obtained up-to-date maximum gray data;
The maximum gray data that this is up-to-date are divided by these original maximum gray data, and obtain a convergent-divergent multiplying power;
Those less luma data be multiply by this convergent-divergent multiplying power, and obtain those up-to-date less luma data; And
Export these up-to-date maximum gray data and those less luma data.
9. the method that dynamic contrast as claimed in claim 8 is upheld is characterized in that those color luma data comprise red color GTG value, green tint GTG value and blue color gray values.
10. the method for dynamic contrast extension as claimed in claim 6 is characterized in that, this translation data is a transformation curve.
11. the method that dynamic contrast is upheld be suitable for handling a picture, and this picture is divided into a normal viewing area and a black matrix zone, the method that this dynamic contrast is upheld comprises the following steps:
The gray-scale distribution of this normal viewing area is divided into N statistics interval, and wherein N is a positive integer;
Add up the number of the interval pixel of each statistics, and obtain a plurality of statistical values;
Add up the number of the pixel in this black matrix zone, and obtain a black matrix statistical value;
This black matrix statistical value is obtained a black matrix adjusted value divided by N; And
Each those statistical value is added this black matrix adjusted value, uphold this picture is carried out dynamic contrast.
12. the method that dynamic contrast as claimed in claim 11 is upheld is characterized in that, also comprises the following steps:
Receive a plurality of color luma data of this picture, and define wherein that the maximum is maximum gray data, and remaining is defined as a plurality of less luma data;
These maximum gray data are changed according to this translation data, and obtained up-to-date maximum gray data;
The maximum gray data that this is up-to-date are divided by these original maximum gray data, and obtain a convergent-divergent multiplying power;
Those less luma data be multiply by this convergent-divergent multiplying power, and obtain those up-to-date less luma data; And
Export these up-to-date maximum gray data and those less luma data.
13. the method that dynamic contrast as claimed in claim 12 is upheld is characterized in that those color luma data comprise red color GTG value, green tint GTG value and blue color gray values.
14. the method that dynamic contrast as claimed in claim 11 is upheld is characterized in that this translation data is a transformation curve.
15. the method that dynamic contrast is upheld comprises the following steps:
Receive a picture;
Detect whether a black matrix zone is arranged in this picture;
When this black matrix was not regional in this picture, it was interval then the gray-scale distribution of this picture to be divided into N statistics, and wherein N is a positive integer;
Add up the number that each adds up interval interior pixel, and obtain a plurality of statistical values; And
Wherein arbitrary during when those statistical values greater than a threshold values, then adjust each statistical value according to statistical value that surpasses this threshold values and the difference between this threshold values, come this picture is carried out the dynamic contrast extension to obtain a translation data.
16. the method that dynamic contrast as claimed in claim 15 is upheld is characterized in that, obtains the step of this translation data, comprises the following steps:
To deduct this threshold values above the statistical value of threshold values, and obtain the difference of the two, and will replace with this threshold values above the statistical value in the statistics interval of this threshold values;
This difference is obtained an adjusted value divided by N;
Each those statistical value is added this adjusted value and obtains a plurality of those up-to-date statistical values; And
Obtain this translation data according to those up-to-date statistical values.
17. the method that dynamic contrast as claimed in claim 15 is upheld is characterized in that, when this picture of detection has this black matrix zone, then comprises the following steps:
The gray-scale distribution of the normal viewing area of this picture except this black matrix zone is divided into N statistics interval;
Add up the number of the interval pixel of each statistics, and obtain a plurality of statistical values;
Add up the number of the pixel in this black matrix zone, and obtain a black matrix statistical value;
This black matrix statistical value is obtained a black matrix adjusted value divided by N; And
Each those statistical value is added this black matrix adjusted value, uphold this picture is carried out dynamic contrast.
CNB2007100038865A 2007-01-11 2007-01-11 Dynamic contrast extension circuit and method Expired - Fee Related CN100562893C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2007100038865A CN100562893C (en) 2007-01-11 2007-01-11 Dynamic contrast extension circuit and method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2007100038865A CN100562893C (en) 2007-01-11 2007-01-11 Dynamic contrast extension circuit and method

Publications (2)

Publication Number Publication Date
CN101221659A true CN101221659A (en) 2008-07-16
CN100562893C CN100562893C (en) 2009-11-25

Family

ID=39631475

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2007100038865A Expired - Fee Related CN100562893C (en) 2007-01-11 2007-01-11 Dynamic contrast extension circuit and method

Country Status (1)

Country Link
CN (1) CN100562893C (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103050076A (en) * 2012-12-10 2013-04-17 华映视讯(吴江)有限公司 Method for improving color image contrast of display system and image processing system
US9007392B2 (en) 2012-11-05 2015-04-14 Chunghwa Picture Tubes, Ltd. Method for enhancing contrast of color image displayed on display system and image processing system utilizing the same
CN105869577A (en) * 2015-11-25 2016-08-17 乐视致新电子科技(天津)有限公司 Display device image processing method and system
CN106340278A (en) * 2016-10-13 2017-01-18 深圳市华星光电技术有限公司 Driving method and apparatus of display panel
WO2018188260A1 (en) * 2017-04-14 2018-10-18 西安诺瓦电子科技有限公司 Image display control method and device, and display screen control system
CN109388783A (en) * 2017-08-09 2019-02-26 宏碁股份有限公司 Method for dynamically adjusting data hierarchy and data visualization processing device

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9007392B2 (en) 2012-11-05 2015-04-14 Chunghwa Picture Tubes, Ltd. Method for enhancing contrast of color image displayed on display system and image processing system utilizing the same
CN103050076A (en) * 2012-12-10 2013-04-17 华映视讯(吴江)有限公司 Method for improving color image contrast of display system and image processing system
CN105869577A (en) * 2015-11-25 2016-08-17 乐视致新电子科技(天津)有限公司 Display device image processing method and system
CN106340278A (en) * 2016-10-13 2017-01-18 深圳市华星光电技术有限公司 Driving method and apparatus of display panel
CN106340278B (en) * 2016-10-13 2019-02-22 深圳市华星光电技术有限公司 A kind of driving method and device of display panel
WO2018188260A1 (en) * 2017-04-14 2018-10-18 西安诺瓦电子科技有限公司 Image display control method and device, and display screen control system
CN109388783A (en) * 2017-08-09 2019-02-26 宏碁股份有限公司 Method for dynamically adjusting data hierarchy and data visualization processing device
CN109388783B (en) * 2017-08-09 2022-10-14 宏碁股份有限公司 Method for dynamically adjusting data hierarchy and data visualization processing device

Also Published As

Publication number Publication date
CN100562893C (en) 2009-11-25

Similar Documents

Publication Publication Date Title
US7317462B2 (en) Method for luminance compensation of liquid crystal display and its device
CN101170708B (en) Display device and method for improving image flashing
CN100423542C (en) Contrast correction circuit
CN101340523B (en) Method and apparatus for exposure compensating digital image
US20040233217A1 (en) Adaptive pixel-based blending method and system
US8260079B2 (en) Video acquisition with processing based on ancillary data
CN100562893C (en) Dynamic contrast extension circuit and method
CN107680056B (en) Image processing method and device
CN101059951B (en) Image processing apparatus and method
US20120212481A1 (en) Video Acquisition With Integrated GPU Processing
US11030729B2 (en) Image processing method and apparatus for adjusting a dynamic range of an image
JP6548517B2 (en) Image processing apparatus and image processing method
US20130107120A1 (en) Resolution determination device, image processor, and image display device
CN101729913A (en) Method and system for adjusting image saturation
CN108806638B (en) Image display method and device
CN102752604A (en) Image display method and intelligent device
US8107756B2 (en) Digital image tone remapping method and apparatus
CN102123288B (en) Image processing apparatus and image processing method
US10152945B2 (en) Image processing apparatus capable of performing conversion on input image data for wide dynamic range
CN103177702A (en) Display with grayscale expansion function and method thereof
CN104202555A (en) Method and device for deinterlacing
CN105957495A (en) RGB signal processing method and device
CN103021375B (en) Image intensity regulating circuit
JP3685712B2 (en) Dynamic gamma correction device
US20070109314A1 (en) Adaptive pixel-based blending method and system

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20091125

Termination date: 20200111