WO2015089857A1 - 影像信号获取方法及影像信号获取装置 - Google Patents
影像信号获取方法及影像信号获取装置 Download PDFInfo
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- WO2015089857A1 WO2015089857A1 PCT/CN2013/090301 CN2013090301W WO2015089857A1 WO 2015089857 A1 WO2015089857 A1 WO 2015089857A1 CN 2013090301 W CN2013090301 W CN 2013090301W WO 2015089857 A1 WO2015089857 A1 WO 2015089857A1
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- 238000000034 method Methods 0.000 title claims abstract description 105
- 238000005070 sampling Methods 0.000 claims abstract description 60
- 241001270131 Agaricus moelleri Species 0.000 claims description 11
- 238000005259 measurement Methods 0.000 claims description 8
- 239000004973 liquid crystal related substance Substances 0.000 description 18
- 239000011159 matrix material Substances 0.000 description 5
- 238000010586 diagram Methods 0.000 description 4
- 239000011521 glass Substances 0.000 description 3
- 238000012545 processing Methods 0.000 description 2
- 208000032366 Oversensing Diseases 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000001914 filtration Methods 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N13/00—Stereoscopic video systems; Multi-view video systems; Details thereof
- H04N13/10—Processing, recording or transmission of stereoscopic or multi-view image signals
- H04N13/106—Processing image signals
- H04N13/122—Improving the 3D impression of stereoscopic images by modifying image signal contents, e.g. by filtering or adding monoscopic depth cues
- H04N13/125—Improving the 3D impression of stereoscopic images by modifying image signal contents, e.g. by filtering or adding monoscopic depth cues for crosstalk reduction
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N13/00—Stereoscopic video systems; Multi-view video systems; Details thereof
- H04N13/10—Processing, recording or transmission of stereoscopic or multi-view image signals
- H04N13/106—Processing image signals
- H04N13/122—Improving the 3D impression of stereoscopic images by modifying image signal contents, e.g. by filtering or adding monoscopic depth cues
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N13/00—Stereoscopic video systems; Multi-view video systems; Details thereof
- H04N13/30—Image reproducers
- H04N13/332—Displays for viewing with the aid of special glasses or head-mounted displays [HMD]
- H04N13/341—Displays for viewing with the aid of special glasses or head-mounted displays [HMD] using temporal multiplexing
Definitions
- the present invention relates to the field of signal processing, and in particular, to an image signal acquisition method and an image signal acquisition device. Background technique
- the 3D shutter type liquid crystal display device can greatly satisfy the user's need for viewing 3D movies.
- the left eye signal and the right eye signal need to be displayed through different frame images, so the picture refresh frequency is high, and when the left eye signal and the right eye signal are switched, the switching interval is short, and crosstalk is prone to occur. (cro sstalk) phenomenon.
- the 3D shutter type liquid crystal display performs overdrive processing on the switching signal when the left eye signal and the right eye signal are switched, thereby shortening the switching of the left eye signal and the right eye signal. Interval, avoiding the occurrence of crosstalk.
- the setting of the luminance signal of the grayscale switching screen of the 3D shutter type LCD (the crosstalk phenomenon does not occur under the luminance signal) needs to be realized by measuring the luminance signal when 256*256 groups are switched (ie, fixing the left eye).
- the gray level of the picture, the brightness signal of the right eye picture of the 256 gray levels after the switching is measured, and then the gray level of the left eye picture is switched, and then the brightness signal of the right eye picture of the switched 256 gray levels is measured until the switch is performed.
- 256 gray-scale left-eye images or measure the luminance signal when 64 * 64 sets are switched, and then perform linear interpolation on the measurement results.
- An object of the present invention is to provide an image signal acquisition method and a video signal acquisition device for efficiently acquiring luminance signals of different gray levels of a liquid crystal display, so as to solve the existing image signal acquisition method and the image signal acquisition device for acquiring a liquid crystal display.
- the efficiency of the luminance signal of different grayscale switching pictures is relatively low.
- the invention provides a method for acquiring an image signal, which comprises the steps of:
- the linear fitting operation is a fitting operation using a two-dimensional least squares method
- the steps of performing the fitting operation using the two-dimensional least squares method include:
- the luminance signal of the grayscale switching picture of the sampling gray scale X is a gray level of the picture before switching of the sampling gray level, and y is a gray level of the picture after switching of the sampling gray level, p is the The number of samples of the picture before switching, q is the number of samples of the picture after switching, and the coefficient is constant;
- the number of samples p before the switching is 9, and the number q of samples after the switching is 9.
- the number of samples p before the switching is 17, and the number q of samples after the switching is 17.
- the grayscale number of the screen before the switching of the full grayscale switching screen is 256
- the grayscale number of the screen after the switching of the full grayscale switching screen is 256.
- the invention provides a method for acquiring an image signal, which comprises the steps of:
- a nonlinear fitting operation is performed to obtain a luminance signal of the full grayscale switching picture; wherein the two-dimensional nonlinear fitting operation is a fitting operation using a two-dimensional least squares method.
- the step of performing the fitting operation by using the two-dimensional least square method includes:
- the luminance signal of the grayscale switching picture of the sampling gray scale X is a gray level of the picture before switching of the sampling gray level, and y is a gray level of the picture after switching of the sampling gray level, p is the The number of samples of the picture before switching, q is the number of samples of the picture after switching, and the coefficient is constant;
- z is the luminance signal of the full grayscale switching picture
- n is the grayscale number of the full grayscale switching picture.
- the number of samples p of the pre-switching picture is 9, and the number of samples of the picture after the switching is 9.
- the number of samples p of the pre-switching picture is 17, and the number of samples of the picture after the switching is 17.
- the grayscale number of the screen before the switching of the full grayscale switching screen is 256
- the grayscale number of the screen after the switching of the full grayscale switching screen is 256.
- the image signal acquisition method of the present invention the image signal
- the law also includes the steps:
- the present invention also provides an image signal acquisition device, comprising:
- a sampling gray scale brightness measuring module configured to measure a brightness signal of a gray scale switching picture of a sampling gray scale
- a full gray scale brightness obtaining module configured to perform a two-dimensional nonlinear fitting operation on the measured luminance signal of the gray scale switching picture of the gray scale of the sampling, to obtain a brightness signal of the full gray scale switching picture;
- the full gray scale brightness acquisition module performs the two-dimensional nonlinear fitting operation by using a two-dimensional least squares method.
- the two-dimensional nonlinear fitting operation by using the two-dimensional least squares method by the full grayscale luminance acquiring module includes: switching the screen according to the grayscale of the sampling grayscale
- the luminance signal constructs a binary polynomial function: ,, 1
- / is the luminance signal of the grayscale switching picture of the grayscale
- X is the grayscale of the grayscale pre-switching picture
- y is the switching of the sampling grayscale Gray scale of the picture
- p is the number of samples of the picture before the switching
- q is the number of samples of the picture after the switching
- the coefficient is constant
- z is the luminance signal of the full grayscale switching picture
- n is the grayscale number of the full grayscale switching picture.
- the number of samples p before the switching is 9, and the number of samples of the screen after the switching is 9.
- the number of samples p before the switching is 17, and the number of samples of the screen after the switching is 17.
- the grayscale number of the screen before the switching of the full grayscale switching screen is 256
- the grayscale number of the screen after the switching of the full grayscale switching screen is 256.
- the return includes:
- a compensation module configured to switch to the full grayscale screen
- the luminance signal is compensated for redundancy, and the low gray scale switching picture
- the gray scale is 0 to 48.
- the ⁇ 3 ⁇ 4 degree is number of the picture, which can efficiently obtain the brightness signals of different grayscale switching pictures, and solve the existing image signal acquisition method and the image signal acquisition device to obtain the liquid ⁇
- the efficiency of the redundancy signal of the different grayscale switching pictures of the Japanese display device is relatively low.
- FIG. 1 is a flow chart of a first preferred embodiment of a method for acquiring an image signal according to the present invention
- FIG. 2 is a flow chart of a second preferred embodiment of the image signal acquisition method of the present invention.
- FIG. 3 is a schematic structural view of a first preferred embodiment of the image signal acquiring apparatus of the present invention.
- FIG. 4 is a schematic structural view of a second preferred embodiment of the image signal acquiring apparatus of the present invention.
- Fig. 5 is a comparison diagram of a luminance signal obtained by using the image signal acquiring method of the present invention and a luminance signal obtained by a method of measuring a luminance signal of 64*64 sets of gray scales.
- the image signal acquisition method and image signal acquisition device of the present invention can be used in a corresponding 3D shutter type liquid crystal display device.
- the 3D shutter type liquid crystal display device includes a shutter type liquid crystal display and shutter glasses.
- the shutter type liquid crystal display includes a backlight, a liquid crystal panel, and a driving circuit for driving the liquid crystal panel for display.
- the liquid crystal panel alternately generates a left eye image and a right eye image using a higher refresh rate (generally above 120 Hz), while the shutter glasses also switch the left eye lens and the right eye lens on and off at the same refresh rate. This allows users to get a better 3D picture experience with shutter glasses.
- the image signal acquisition method and the image signal acquisition device of the present invention are used/disposed in the drive circuit of the shutter type liquid crystal display for better driving the liquid crystal panel for display, thereby avoiding the occurrence of crosstalk.
- FIG. 1 is a flowchart of a first preferred embodiment of a method for acquiring a video signal according to the present invention.
- the image signal acquisition method of the preferred embodiment includes:
- Step S101 measuring a luminance signal of the grayscale switching picture of the grayscale sampling step
- Step S102 performing a two-dimensional nonlinear fitting operation on the luminance signal of the grayscale switching screen of the measured grayscale to obtain a full grayscale switching The luminance signal of the picture; the image signal acquisition method of the preferred embodiment ends in step S102.
- step S101 the luminance signal of the grayscale switching picture of the sampling gray scale is measured.
- the gray scale of the sampling includes the gray scale of the screen before switching (such as the left eye image) and the gray scale of the screen after the switching (such as the right eye image), where the grayscale sampling number of the screen before switching can be set to 17, the number of grayscale samples of the screen after switching is 17, which is to set a 15-step intermediate grayscale image between the grayscale of the blacklist and the grayscale of the all-white screen, so that the pre-switching screen and the gray of the screen after switching are sampled.
- the order is 0 (all black screen), 16, 32, 48, 64, 80, 96, 1 12, 128, 144, 160, 176, 192, 208, 224, 240, 255 (all white screen).
- the gray scale of the screen before switching is set to the 0th gray scale, and then the driving luminance signal of the switched image of the 17 gray scales after the switching is measured; then the gray scale of the screen before switching is set to the 16th gray.
- Step and then measuring the driving brightness signal of the switched gray screen after switching, until the gray level of the screen before switching is set to the 255th gray level; thereby obtaining the luminance signal of the grayscale switching picture of the sampling gray level 17 * 17 matrix.
- the luminance signals of the grayscale switching pictures of different sampling gray levels obtained do not crosstalk when the screen is switched. Then it proceeds to step S102.
- step S102 a two-dimensional nonlinear fitting operation is performed on the 17*17 matrix of the luminance signal acquired in step S102, thereby obtaining a luminance signal of the full grayscale switching picture of the 256*256 matrix.
- a two-dimensional least squares method is employed to perform a two-dimensional nonlinear fitting operation.
- the two-dimensional nonlinear fitting operation using the two-dimensional least square method is as follows: Construct a binary polynomial function according to the luminance signal (17 * 17 matrix) of the gray scale switching picture of the gray scale of the above sampling: w _l
- / is the gray level of the sampling gray scale switching picture brightness signal
- X is the gray level of the picture before the switching gray level of the sampling gray
- y is the gray level of the picture after the switching gray level
- p is the number of samples of the picture before switching
- q is the number of samples of the picture after switching
- the coefficient is constant, and then the two-dimensional least squares method is used to construct a multivariate function about the coefficient.
- the point ( , ..., a pq ) is the minimum of the multivariate function 5 ( 3 ⁇ 4 , ⁇ , )
- z is the luminance signal of the full grayscale switching picture
- n is the grayscale number of the full grayscale switching picture
- the brightness signal of the full grayscale switching picture can be obtained. I.e. select the appropriate switch on the front surface of the screen gray Xg and after the switching picture gray y g, can be used for obtaining luminance signals corresponding to the acquired switching screens so that is a full 256 gray level matrix switch 256 * The brightness signal of the picture.
- the number of grayscale samples of the screen before switching can also be set to 9, and the number of grayscale samples of the screen after switching is also set to 9, which further reduces the measurement operation of the luminance signal.
- the amount of work, but this operation will sacrifice the accuracy of the brightness signal of a part of the acquired full grayscale switching picture.
- the image signal acquisition method of the preferred embodiment performs a two-dimensional nonlinear fitting operation on the luminance signal of the grayscale switching picture of the gray scale of the sampling to obtain the luminance signal of the full grayscale switching picture, so that the grayscale signals of different grayscales can be efficiently acquired. Switch the brightness signal of the picture.
- FIG. 2 is a flowchart of a second preferred embodiment of the image signal acquisition method of the present invention.
- the image signal acquisition method of the preferred embodiment includes:
- Step S201 measuring a luminance signal of a grayscale switching picture of the gray scale of the sampling; step S202, performing a two-dimensional nonlinear fitting operation on the luminance signal of the grayscale switching screen of the measured grayscale to obtain a full grayscale switching picture a brightness signal; step S203, performing brightness compensation on a luminance signal of the low grayscale switching picture in the full grayscale switching picture;
- the image signal acquisition method of the preferred embodiment ends in step S203.
- the specific flow of each step of the image signal acquisition method of the preferred embodiment will be described in detail below.
- step S101 is the same as the specific process of the step S101 in the first preferred embodiment of the image signal acquisition method. For details, refer to step S101 of the first preferred embodiment of the image signal acquisition method.
- step S202 The specific process of the step S202 is the same as the specific process of the step S102 in the first preferred embodiment of the image signal obtaining method. For details, refer to step S102 of the first preferred embodiment of the image signal obtaining method.
- step S203 the luminance signal of the low grayscale switching picture in the full grayscale switching picture acquired in step S202 is subjected to luminance compensation.
- the low grayscale switching screen means that the grayscale of the screen after switching is a low grayscale, that is, the grayscale of the screen after switching is 0 to 48.
- the curved surface of the luminance signal of the full grayscale switching picture obtained by the above two-dimensional nonlinear fitting operation is inaccurate in the portion of the low grayscale switching picture, such as the grayscale before the switching, and the grayscale after the switching. ;
- the screen before switching is 16 grayscale, and the screen after switching is 32 grayscale.
- the compensated brightness signal is generally a brightness signal represented by a curved surface of the brightness signal of the full gray scale switching picture obtained by the two-dimensional nonlinear fitting operation.
- the brightness signal obtained by the above surface is reduced by about 70%.
- the luminance signal of the full grayscale switching picture after the brightness compensation is more accurate.
- the image signal acquisition method of the preferred embodiment performs brightness compensation on the luminance signal of the full grayscale switching picture on the basis of the first preferred embodiment, so that the full grayscale switching The brightness signal of the picture is more accurate.
- FIG. 3 is a schematic structural diagram of a first preferred embodiment of the image signal acquisition device of the present invention.
- the image signal acquiring device 30 of the preferred embodiment includes a sampling gray scale brightness measuring module 3 1 and a full gray level brightness obtaining module 32.
- the sampling gray scale brightness measuring module 31 is configured to measure a brightness signal of the gray scale switching picture of the sampling gray level 33
- the full gray level brightness obtaining module 32 is configured to switch the brightness signal of the gray scale switching picture of the gray scale 33 of the measurement
- a two-dimensional nonlinear fitting operation is performed to obtain a luminance signal 34 of the full grayscale switching picture; wherein the full grayscale luminance acquiring module 32 performs a two-dimensional nonlinear fitting operation using a two-dimensional least squares method.
- the grayscale luminance measuring module 31 first measures the luminance signal of the grayscale switching picture of the sampling grayscale 33, and then the grayscale filtering module 32 selects the grayscale of the measured grayscale.
- the luminance signal of the grayscale switching picture of 33 performs a two-dimensional nonlinear fitting operation to obtain the luminance signal 34 of the full grayscale switching picture.
- the specific working principle of the image signal acquiring device 30 of the preferred embodiment is the same as or similar to the related description in the first preferred embodiment of the image signal acquiring method. For details, refer to the first preferred embodiment of the image signal acquiring method. Related description.
- the image signal acquiring apparatus of the preferred embodiment performs a two-dimensional nonlinear fitting operation on the luminance signal of the grayscale switching screen of the sampling gray scale to obtain a full grayscale switching screen.
- the brightness signal so that the brightness signals of the switching pictures of different gray levels can be efficiently obtained.
- FIG. 4 is a schematic structural diagram of a second preferred embodiment of the image signal acquiring apparatus of the present invention.
- the image signal acquiring device 40 of the preferred embodiment includes a sampling gray scale brightness measuring module 41, an all gray level brightness obtaining module 42 and a compensation module 45.
- the sampling gray scale brightness measuring module 41 is configured to measure a brightness signal of a gray scale picture of the gray scale 43
- the full gray level brightness obtaining module 42 is configured to perform a brightness signal of the gray scale switching picture of the measured gray scale 43 Dimensional nonlinear fitting operation to obtain a luminance signal 44 of the full grayscale switching picture; wherein the full grayscale luminance obtaining module 42 performs a two-dimensional nonlinear fitting operation using a two-dimensional least squares method; the compensation module 45 is used for the full gray
- the luminance signal of the low grayscale switching picture in the step switching picture is subjected to luminance compensation, wherein the grayscale of the picture after switching of the low grayscale switching picture is 0 to 48.
- the grayscale brightness measuring module 41 first measures the brightness signal of the grayscale switching picture of the sampling gray level 43, and then the gray level index of the measured gray level 43 by the full gray level brightness acquiring module 42.
- the luminance signal of the grayscale switching picture is subjected to a two-dimensional nonlinear fitting operation to obtain the luminance signal 44 of the full grayscale switching picture; and finally the compensation module 45 performs the luminance signal of the low grayscale switching picture in the full grayscale switching picture. Brightness compensation.
- the specific working principle of the image signal acquiring device 40 of the preferred embodiment is the same as or similar to the related description in the second preferred embodiment of the image signal acquiring method. For details, refer to the second preferred embodiment of the image signal acquiring method. Related description.
- the image signal acquiring apparatus of the preferred embodiment performs brightness compensation on the luminance signal of the full grayscale switching picture on the basis of the first preferred embodiment, so that the luminance signal of the full grayscale switching picture is more accurate.
- FIG. 5 is a schematic diagram of comparison between a luminance signal obtained by using the image signal acquisition method of the present invention and a luminance signal obtained by a method of measuring luminance signals of 64*64 gray scales.
- the abscissa of Fig. 5 is the gray scale of the screen after switching, and the ordinate is the difference of the two kinds of brightness signals.
- the gray scale of the screen before switching is 0 gray scale.
- the image signal acquisition method of the present invention only needs to measure the brightness signals of 17 * 17 sets of gray scales, and the measurement time taken by the method is only four quarters of the measurement time consumed by the method of measuring the luminance signals of 64*64 sets of gray scales. Therefore, the image signal acquisition method of the present invention greatly improves the efficiency of acquiring luminance signals of different grayscale switching pictures of the liquid crystal display.
- the image signal acquisition method and the image signal acquisition device of the present invention perform a two-dimensional nonlinear fitting operation on the luminance signal of the grayscale switching screen of the sampling gray scale to obtain the luminance signal of the full grayscale switching picture, so that the difference can be efficiently obtained.
- the gray level switching picture brightness signal solves the problem that the existing image signal acquisition method and the image signal acquisition device obtain the brightness signals of different gray scale switching pictures of the liquid crystal display are relatively low. The technical problem below.
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Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
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JP2016526829A JP2017502323A (ja) | 2013-12-17 | 2013-12-24 | 映像信号取得方法及び映像信号取得装置 |
GB1604518.9A GB2534065B (en) | 2013-12-17 | 2013-12-24 | Method and device for obtaining image signals |
KR1020167011096A KR101807686B1 (ko) | 2013-12-17 | 2013-12-24 | 이미지 신호 획득 방법 및 장치 |
US14/131,911 US9437125B2 (en) | 2013-12-17 | 2013-12-24 | Method and device for obtaining image signals |
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CN201310693359.7 | 2013-12-17 | ||
CN201310693359.7A CN103700353B (zh) | 2013-12-17 | 2013-12-17 | 影像信号获取方法及影像信号获取装置 |
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KR (1) | KR101807686B1 (zh) |
CN (1) | CN103700353B (zh) |
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GB2614973A (en) * | 2020-10-19 | 2023-07-26 | Xian Novastar Tech Co Ltd | Grayscale measurement method and apparatus |
CN113724644B (zh) * | 2021-08-27 | 2023-01-10 | 京东方科技集团股份有限公司 | 补偿显示装置的亮度与色度的方法及相关设备 |
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CN102789774A (zh) * | 2012-08-15 | 2012-11-21 | 贵阳海信电子有限公司 | 优化液晶屏3d显示效果的方法、装置及液晶电视 |
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CN100504518C (zh) * | 2005-03-03 | 2009-06-24 | 奇美电子股份有限公司 | 过驱动装置及其方法 |
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KR101386264B1 (ko) * | 2007-02-28 | 2014-04-30 | 엘지디스플레이 주식회사 | 액정 표시 장치용 오버 드라이빙 룩-업 테이블 자동 설정장치 및 그 제어 방법 |
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CN102495476A (zh) * | 2011-12-19 | 2012-06-13 | 友达光电股份有限公司 | 快门式3d眼镜及含其的3d显示系统 |
CN102802001A (zh) * | 2012-08-14 | 2012-11-28 | 深圳市华星光电技术有限公司 | 一种用于降低快门式3d液晶动态串扰的方法、装置以及液晶显示器 |
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JP2017502323A (ja) | 2017-01-19 |
CN103700353A (zh) | 2014-04-02 |
KR20160065147A (ko) | 2016-06-08 |
GB2534065A (en) | 2016-07-13 |
GB201604518D0 (en) | 2016-05-04 |
CN103700353B (zh) | 2016-03-30 |
GB2534065B (en) | 2020-04-08 |
KR101807686B1 (ko) | 2017-12-11 |
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