1. Field of the Invention
The present invention is related to a method of signal processing, and especially to a method of signal processing to deal with gray-scale response speed by measuring voltage measured values for over driving (called shortly as OD measured values), making tables of OD measured values, then obtaining four corresponding tables of OD shrunk values from the above tables of the OD measured values by a mode of shrinking, and obtaining OD enlarged values by using a functional operation equation. The method suits a color display device, such as an LCD panel, a plasma television set (PDP), a display of a thin film transistor (TFT) or an organic light emitting diode (OLED or PLED).
2. Description of the Prior Art
Superiority or inferiority of the performance of an LCD has an index-response time that generally is divided into two kinds: a normally white (NW) mode and a normally black (NB) mode. Wherein the normally white (NW) mode means that a frame is transparent when the LCD panel 10 is not applied with a voltage, in which the frame is a bright frame; while the normally black (NB) mode means that a frame is obscured when the LCD panel 10 is not applied with a voltage, in which the frame is an all-black frame. Taking the normally white (NW) mode as an example, the response time can be divided into two kinds:
Generally, when the speed of displaying frames is over 25 frames per second, human eyes will take the fast changing frames as continuous sequential pictures; but in modern family amusements, for example, in playing DVD pictures of high quality or in playing games with fast moving frames, the speed of displaying frames normally is above 60 frames persecond; in other words, the frame time interval is 1/60=16.67 ms, if the response time of an LCD is larger than the frame time interval, there will be traces of residual images or skipping to seriously affect the quality of viewing images; as to how to increase the speed of response, it shall be counted on the factor that affects the response time; the followings are respectively the calculation equations for the ascending response time Tr and the descending response time Tf:
in which r1 is a coefficient of viscosity of the crystal material; d is a gap of the liquid crystal box; V is a driving voltage of the liquid crystal box; and Δ ε is a dielectric coefficient of the liquid crystal material.
We can see from the above equations that there are four ways to reduce the response time of the LCD: namely, lowering the coefficient of viscosity, reducing the gap of the liquid crystal cell, increasing the driving voltage and increasing the dielectric coefficient. Wherein the technique of increasing the driving voltage is called as the technique of “over drive” with which an integrated circuit driven by the liquid crystal (driver IC) transmits an increased voltage to a liquid crystal panel to increase the twisting voltage of the liquid crystal, thereby the liquid crystal can be faster twisted and recovered to quickly get the brightness desired to be presented of the image data.
In order to practice the above stated technique of “over drive” on R, G and B color-brightness gray scales of 8 bits and 0-255 levels, manufacturers must provide suitable over driving voltage values. However, the R, G and B color-brightness gray scales of 0-255 levels respectively have their desired over driving voltage-values in variation among different time points. Just speaking of the variation of 0-255 levels between two different time points of one color signal, 65,536 different over driving voltage-values can be generated.
If a display screen of an LCD is required to provide over driving voltage-values suitable for the R, G and B color brightness gray scales of 8 bits, the amount of the over driving voltage-values suitable to be stored at least is 65,536; it is clearly that how many memories are required, and the cost of the entire equipment is even more raised. Therefore, manufacturers all present the color-brightness gray scales of 0-255 levels in a mode of simulation with fewer sections; and the brightness of the color signals and the required simulation values of over driving voltages are far less than 65,536.
Although the amount of simulation values of over driving voltages reduces the requirement for memories, however, for the purpose of making the values rapidly and accurately get close to the actual values of over driving voltages, all manufacturers make operations in the mode of simulation with their specific and different functions. They use polynomial functions, bilinear functions or orthogonal functions. But such the mode is limited to the above-mentioned simulation values of over driving voltages, they obtain the values; accordingly, in simulating the actual values of over driving voltages, accuracy often is unable acquired, this not only affects the response time of the liquid crystal screen, but also more affects the effects of their color brightness.
The inventor of the present invention provided a method of signal processing to obtain OD values by functional operation to rapidly and accurately response gray scales of color brightness, in order to get a better effect of increasing the gray-scale response speed.
The primary object of the present invention is to provide a method of signal processing to deal with gray-scale response speed of brightness by measuring over driving (OD) measured values, making tables of the OD measured values, then obtaining four corresponding tables of OD shrunk values from the above tables of the OD measured values by a mode of shrinking, and obtaining OD enlarged values by using a functional operation equation. This can save a large amount of hardware resources, and effectively increase the gray-scale response speed of brightness and accurately present the actual gray scales of color brightness.
To achieve the above objects, the method of signal processing of the present invention comprises:
according to the characteristic of liquid crystals, to find the best OD voltage values desired to be presented of the gray scales of brightness by the mode of practical measuring. Each of the best OD values is related to a corresponding one of the gray scale values presented by a pre-frame and a corresponding one of the gray scale values presented by a proper now-frame, and is related in the mode of one on one. Thereby the measuring can build a table of n×n OD measured values, wherein n is the amount of the gray scales.
simulating the relationship between an OD value and a gray scale value of a pre-frame and a gray scale value of a proper now-frame; if y represents the gray scale value of a pre-frame, x represents the gray scale value of a proper now-frame, the OD value z represents a function of x and y, i.e., z=ƒ(x,y)=C×g(x)×h(y), in which the mathematical function can be a polynomial, a bilinear relationship, a linear combination of orthogonal functions or any type of mathematical function.
picking the table of n×n OD measured values and to shrink it to form an m×m look-up table, wherein m<n, thereby this can effectively save the space for memories.
using the mathematical function having been built and adopting a four-point positioning method, to acquire the best OD enlarged values in a way of curve fitting, and to drive a display with the OD enlarged values.
With the mode of shrinking the OD measured values and acquiring the OD enlarged values by the functional operation in the above steps, dealing with the gray-scale response speed of brightness of a panel of a screen can thus be done.
The present invention will be apparent after reading the detailed description of the preferred embodiment thereof in reference to the accompanying drawings.
FIGS. 4A-D are tables of OD shrunk values of the embodiment of the present invention.
Referring firstly to
Pkl=M2k−1,2l−1
Qkl=M2k,2l−1
Rkl=M2k−1,2l
Skl=M2k,2l,
Wererin K,l=1,2, . . . m/2, this indicates the corresponding positions of the elements in the matrix. In other words, in the OD look-up table 20, the four neighboring elements can be expressed by using the corresponding elements of P31, Q32, R33 and S34. Namely:
in which i,j are odd integers, and k=(i+1)/2, l=(j+1)/2. Thereby, Pkl and Qkl as well as Rkl and Skl have therebetween respectively the functional relationships of gj(y) and gj+1(y) while the Pkl and Rkl as well as Qkl and Skl have therebetween respectively the functional relationships of hi(x) and hi+1(y).
When the gray scale of brightness of a former frame on the liquid crystal screen is y, and the gray scale of brightness desired to be presented of a present frame is x, then Pkl, Qkl, Rkl and Skl neighboring with (x,y) are found out through the four tables 31-34 of shrunk values, and the best OD enlarged values are obtained by the way of curve fitting or the way of weighted curve fitting according to the corresponding functional relationships of gj(y), gj+1(y), hi(x) and hi+l(y); and the best OD enlarged values activate the liquid crystal screen to make the latter accurately present the desired brightness.
The above stated is only an embodiment for illustrating the present invention, and not for giving any limitation to the scope of the present invention. It will be apparent to those skilled in this art that various modifications or changes without departing from the spirit of this invention shall also fall within the scope of the appended claims.
Therefore, the present invention has the following advantages:
In conclusion, according to the description disclosed above, the present invention surely can get the expected objects thereof to provide a method of signal processing to obtain OD enlarged values by using functional operating OD measured values to deal with gray-scale response speed of brightness rapidly and accurately, the method suits various colored display units.
| Number | Date | Country | Kind |
|---|---|---|---|
| 093110745 | Apr 2004 | TW | national |