Development of technology of video enhancement became very important part of video signal processing. World leaders develops the own technology of video enhancement. This paper addresses to technology trends regarding...
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ISBN:
(纸本)9780819467843
Development of technology of video enhancement became very important part of video signal processing. World leaders develops the own technology of video enhancement. This paper addresses to technology trends regarding Video Signal Processing.
A method is proposed for solving the mapping problem from the three-dimensional color space to the four-dimensional CMYK space of printer ink signals by means of a neural network. The CIE-L*a*b* color system is used a...
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A method is proposed for solving the mapping problem from the three-dimensional color space to the four-dimensional CMYK space of printer ink signals by means of a neural network. The CIE-L*a*b* color system is used as the device-independent color space. The color reproduction problem is considered as the problem of controlling an unknown static system with four inputs and three outputs. A controller determines the CMYK signals necessary to produce the desired L*a*b* values with a given printer. Our solution method for this control problem is based on a two-phase procedure which eliminates the need for UCR and GCR. The first phase determines a neural network as a model of the given printer, and the second phase determines the combined neural network system by combining the printer model and the controller in such a way that it represents an identity mapping in the L*a*b* color space. Then the network of the controller part realizes the mapping from the L*a*b* space to the CMYK space. Practical algorithms are presented in the form of multilayer feedforward networks. The feasibility of the proposed method is shown in experiments using a dye sublimation printer and an ink jet printer. (C) 1998 SPIE and IS&T. [S1017-9909(98)02003-0].
The colorcontrol of reproduced images has been a critical problem in TV system. The viewer can adjust the colorcontrol at the receiver for optimal color reproduction, but frequent color adjustment is the most common...
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ISBN:
(纸本)0819427403
The colorcontrol of reproduced images has been a critical problem in TV system. The viewer can adjust the colorcontrol at the receiver for optimal color reproduction, but frequent color adjustment is the most common problem experienced by the viewer. In this paper, we propose an automatic favorite colorcontrol system which represents the favorite color to the viewer on demand. The system consists of phase detector to detect the favorite colors at real time from the color burst signal and color signal, comparators to discriminate the types of favorite color. The proposed system reproduces flesh tone, blue color, and green color. In the proposed algorithm, the variation range of phase detector output voltage was minimized for the favorite color saturation changes and also the color signal phase is readjusted from the color burst signal. Thus, the favorite color was easily detected from the other colors without overlapping of correction range and it provides reference color to viewer.
A method is proposed for solving the mapping problem from the 3D color space to the 4D CMYK space of printer ink signals by means of neural network. The CIE-L*a*b* color system is used as the color space. The color re...
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ISBN:
(纸本)0819420328
A method is proposed for solving the mapping problem from the 3D color space to the 4D CMYK space of printer ink signals by means of neural network. The CIE-L*a*b* color system is used as the color space. The color reproduction problem is considered as the problem of controlling an unknown static system with four inputs and three outputs. A controller finds the CMYK signals necessary to produce the desired L*a*b* values from a printer. Our solution method for this control is based on a two-phase procedure. Validity of our method is shown in an experiment using a dye sublimation printer.
A new method for video signal processing is described in this paper. The purpose is real-time image transformations at low cost, low power, and small size hardware. This is impossible without special hardware. Here ge...
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ISBN:
(纸本)0819407437
A new method for video signal processing is described in this paper. The purpose is real-time image transformations at low cost, low power, and small size hardware. This is impossible without special hardware. Here generalized digital differential analyzer (DDA) and control memory (CM) play a very important role. Then indentation, which is called jaggy, is caused on the boundary of a background and a foreground accompanied with the processing. Jaggy does not occur inside the transformed image because of adopting linear interpretation. But it does occur inherently on the boundary of the background and the transformed images. It causes deterioration of image quality, and must be avoided. There are two well-know ways to improve image quality, blurring and supersampling. The former does not have much effect, and the latter has the much higher cost of computing. As a means of settling such a trouble, a method is proposed, which searches for positions that may arise jaggy and smooths such points. Computer simulations based on the real data from VTR, one scene of a movie, are presented to demonstrate our proposed scheme using DDA and CMs and to confirm the effectiveness on various transformations.
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