1. Field of the Invention
The present invention relates to a backlight control method for a liquid crystal panel, and more particularly to a backlight control method for improving light mixing of adjacent backlight area caused by area backlight control.
2. Description of the Prior Art
Transitionally, Cold Cathode Fluorescent Lamps (CCFLs) are used to be light sources of a backlight module in a liquid crystal panel. With the improvement in luminous efficiency and the increasingly lower cost of Light Emitting Diodes (LEDs), there is a tendency to replace the CCFLs with the LEDs as the light sources of the backlight modules.
In addition, due to fast response characteristics of the LEDs, the backlight module of nowadays can further utilize an area backlight control technique to divide the liquid crystal panel into a plurality of backlight area for individually adjusting backlight intensity of each backlight area with image variation of each backlight area, so as to meet the target of reducing power consumption and increasing image contrast.
Generally, the backlight intensity of each backlight area is determined by an average grayscale value of all pixels inside each backlight area. Please refer to
However, light beams of the LEDs are not exactly collimated with normal directions, i.e. there exists a Lambertian angle. Thus, when backlight intensities of two adjacent backlight areas differ too much, the backlight area supposed to show black images may have some light leakage existing on its edge caused by backlights of the adjacent backlight area, as shown in
In short, when grayscale values of the adjacent backlight areas differ too much, the way to determine the backlight intensity of the area backlight control may cause the light leaking on the edges of the displayed area, so as to degrade image qualities.
It is therefore an objective of the present invention to provide a backlight control method for a liquid crystal panel and related liquid crystal displays.
According to the present invention, a backlight control method for a liquid crystal panel is disclosed. The backlight control method includes steps of dividing the liquid crystal panel into a plurality of backlight areas to individually control backlight intensity of each backlight area of the plurality of backlight areas, each backlight area of the plurality of backlight areas further comprising a plurality of pixels, configuring an expanding area and a weighted area for each backlight area of the plurality of backlight areas, the expanding area being formed by expanding outwardly from each backlight area, the weighted area being focused on the center of each backlight area and having a range not greater than the expanding area, and determining the backlight intensity of each backlight area according to a weighted average grayscale value calculated with all pixels inside the expanding area and the weighted area.
According to the present invention, a liquid crystal display (LCD) capable of enhancing image quality is disclosed. The LCD includes a liquid crystal panel, a backlight module, a buffering memory and a backlight control module. The backlight module is set on the liquid crystal panel, and is utilized for dividing the liquid crystal panel into a plurality of backlight areas to individually provide backlights for each backlight area of the plurality of backlight areas. Each backlight area of the plurality of backlight areas further comprises a plurality of pixels. The buffering memory is coupled to the liquid crystal panel, and is utilized for temporarily storing grayscale values of all pixels in each backlight area of the plurality of backlight areas. The backlight control module is coupled to the backlight module and the buffering memory, and is utilized for configuring an expanding area and a weighted area for each backlight area of the plurality of backlight areas to determine the backlight intensity of each backlight area according to a weighted average grayscale value calculated with all pixels inside the expanding area and the weighted area. The expanding area is formed by expanding outwardly from each backlight area, and the weighted area is focused on the center of each backlight area and has a range not greater than the expanding area.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
a to
Please refer to
Step 300: Start.
Step 302: Divide the liquid crystal panel into a plurality of backlight areas to individually control backlight intensity of each backlight area of the plurality of backlight areas, wherein each backlight area of the plurality of backlight areas further includes a plurality of pixels.
Step 304: Configure an expanding area and a weighted area for each backlight area of the plurality of backlight areas, wherein the expanding area is formed by expanding outwardly from each backlight area, and the weighted area is focused on the center of each backlight area and has a range not greater than the expanding area.
Step 306: Determine the backlight intensity of each backlight area according to a weighted average grayscale value calculated with all pixels inside the expanding area and the weighted area.
Step 308: End.
According to the backlight control process 30, the liquid crystal panel is firstly divided into a plurality of backlight areas for individually controlling the backlight intensity of each backlight area. Then, the expanding area and the weighted area are configured for each backlight area, so that the backlight intensity of each backlight area can be determined according to a weighted average grayscale value calculated with all pixels inside the expanding area and the weighted area. It is note that the expanding area is formed by expanding outwardly from each backlight area, and that the weighted area is focused on the center of each backlight area and has a range not greater than the expanding area.
That is to say, when determining the backlight intensity of the backlight area, the pixel range required to be calculated is enlarged to adjacent backlight areas, and the backlight intensity supposed to be displayed originally is intensified by weighting the center of each backlight area, so as to reduce the light mixing of the adjacent backlight areas.
Preferably, backlights of each backlight area are generated by a light emitting device, and the light emitting device is composed of light emitting diodes (LEDs). In such a situation, the backlight control process 30 further includes steps of determining a range of the expanding area according to a Lambertian angle of the light emitting device and spacing between the light emitting device and the liquid crystal panel. Please refer to
In Step 306, the backlight intensity of each backlight area is determined according to the average grayscale values of all pixels inside the expanding area and those inside the weighted area. Thus, if the weighting of the weighted area is set to be 1, the sum of a pixel number of the expanding area and that of the weighted area is preferred to be the power of 2, such that implementation of the division operation can be simplified. In this case, the embodiment of the present invention can take advantage of simple right shift operation to implement the division operation, and thus the backlight intensity of each backlight area can be calculated easily.
Please refer to
For example, if the original backlight area includes 50×50 pixels (A=50, B=50), and the expanding area are formed by expanding 5 pixels along the horizontal direction and the vertical direction, respectively (n=5, m=5), the expanding area therefore includes 60×60 pixels (N=60, M=60), i.e. N×M=3600. In this case, the value of K can be set to a minimum value (K=12) such that 2K is large than the pixel number of the expanding area. Thus, the weighted pixel number of the weighted area is equal to 496 pixels (W=212−3600), which can form a square area including 31×16 pixels as shown in
As a result, by the backlight control process 30 of the present invention, light leakage on the edges of the displayed area can be improved even when the grayscale values of the adjacent backlight areas differ too much, so as to enhance image qualities.
On the other hand, if the backlight area is located at borders or corners of the liquid crystal panel, the expanding area then merely expands toward the center of the liquid crystal panel to make the pixel number being included equal to that of other backlight area as shown in
Please further refer to
As mentioned above, when determining the backlight intensity of the backlight area, the pixel range required to be calculated is enlarged to adjacent backlight areas, and the backlight intensity supposed to be displayed originally is further intensified by weighting the center of each backlight area, so that the backlight intensity may not be over modified due to the grayscale differences between the adjacent backlight areas. As a result, the present invention can improve the light leakage on the edges of the displayed area when the backlight intensities of the adjacent backlight areas differ too much, so as to enhance the image qualities.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
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097151189 | Dec 2008 | TW | national |