This application claims a priority of the Chinese patent application No. 202010857139.3 filed on Aug. 24, 2020, which is incorporated herein by reference in its entirety.
The present disclosure relates to the field of display technology, in particular to a ghost elimination method, a ghost elimination device and a display panel.
At present, in a process of displaying an image on a display panel, if a size of an image content is smaller than a size of the display panel, black borders appear at a region of the display panel where the image content is not displayed, and the black borders are generally arranged above and below the image content. Due to a scanning signal being scanned row by row from top to bottom, there are jitters in a boundary region between the image content and the black border below the image content, i.e., data compensation at the boundary region is irregular. After a certain period of time, ghosts appears at the boundary region, resulting in poor display.
An object of the present disclosure is to provide a ghost elimination method, a ghost elimination device and a display panel.
The present disclosure provides the following technical solutions.
In one aspect, the present disclosure provides in some embodiments a ghost elimination method, including driving and displaying a display panel by taking a plurality of continuous frames of pictures as a period. In one period, motion compensation is performed on the front m frames of pictures, and the motion compensation is not performed on the remaining n frames of pictures, where m and n are both positive integers.
Optionally, a ratio of n: m ranges from 0.12 to 0.25.
Optionally, a value of m ranges from 40 to 50, and a value of n ranges from 6 to 10.
Optionally, a value of m is 40, and a value of n is 8.
Optionally, the display panel is a liquid crystal display panel.
In another aspect, the present disclosure provides in some embodiments a ghost elimination device, including an elimination module, configured to drive and display a display panel by taking a plurality of continuous frames of pictures as a period. In one period, motion compensation is performed on the front m frames of pictures, and the motion compensation is not performed on the remaining n frames of pictures, where m and n are both positive integers.
Optionally, a ratio of n: m ranges from 0.12 to 0.25.
Optionally, a value of m ranges from 40 to 50, and a value of n ranges from 6 to 10.
Optionally, a value of m is 40, and a value of n is 8.
In yet another aspect, the present disclosure provides in some embodiments a display panel, including the above-mentioned ghost elimination device.
Optionally, the display panel is a liquid crystal display panel.
In still yet another aspect, the present disclosure provides in some embodiments a readable storage medium storing therein a program or instruction, the program or instruction is executed by a processor so as to implement the steps in the above-mentioned ghost elimination method.
In order to make the objects, the technical solutions and the advantages of the present disclosure more apparent, the present disclosure will be described hereinafter in a clear and complete manner in conjunction with the drawings and embodiments. Obviously, the following embodiments merely relate to a part of, rather than all of, the embodiments of the present disclosure, and based on these embodiments, a person skilled in the art may, without any creative effort, obtain the other embodiments, which also fall within the scope of the present disclosure.
Step 201: driving and displaying a display panel by taking a plurality of continuous frames of pictures as a period. In one period, motion compensation is performed on the front m frames of pictures, and the motion compensation is not performed on the remaining n frames of pictures, where m and n are both positive integers.
In the embodiments of the present disclosure, one period includes m + n frames of pictures, the motion compensation is performed on the front m frames of pictures, and subsequence to the motion compensation being enabled, a positive compensation voltage is not equal to a negative compensation voltage, and a certain bias voltage is accumulated. For the remaining n frames of pictures, the motion compensation is not performed, so as to, in the remaining n frames of pictures, enable the positive compensation voltage to be equal to the negative compensation voltage through a self-recovery function of a pixel capacitance electric field and realize the equivalent bias voltage being almost zero, thereby to weaken or even eliminate ghosts, where m and n are both positive integers, and m is generally greater than n.
In the embodiments of the present disclosure, a ratio of n: m ranges from 0.12 to 0.25, i.e., in one period, the ratio of the quantity of frames n for which the motion compensation is not performed on the quantity of frames m for which the motion compensation is performed ranges from 0.12 to 0.25. By setting the above proportion, in one period, a small amount of bias voltage is accumulated after the time of m frames is controlled, the motion compensation is not performed on the remaining n frames, and the bias voltage is forced to perform self-recovery in the time of n frames, so as to effectively reduce or even eliminate the accumulated bias voltage and weaken or even eliminate the ghosts, thereby to reduce the redundancy of a certain video sequence, and reduce the operation power consumption. Subsequently, a periodic period control is carried out in accordance with the frame quantity proportion of the above proportion, so as to make the ghosts almost or even completely disappear.
In the embodiments of the present disclosure, a value of m ranges from 40 to 50, and a value of n ranges from 6 to 10, i.e., in one period, the quantity of frames for which the motion compensation is performed is 40 to 50 frames, and the quantity of frames for which the motion compensation is not performed is 6 to 10 frames. In the above value range of m and n, the redundancy of a certain video sequence and the operation power consumption are both reduced, and the bias voltage accumulated in the motion compensation stage is less; and in the non-motion compensation stage, the reduction of the bias voltage have a good recovery effect, thereby to reduce or even eliminate the ghosts. Optionally, when the value of m is 40 and the value of n is 8, the ghost elimination effect is the best.
In the embodiments of the present disclosure, the display panel is a liquid crystal display panel, i.e., Liquid Crystal Display (LCD).
According to the ghost elimination method in the embodiments of the present disclosure, after the motion compensation is performed on a certain quantity of frames, the motion compensation is further closed in a plurality of subsequent frames, and the bias voltage of a pixel is self-recovered through the self-recovery characteristic of a capacitance electric field, so as to weaken or even eliminate the bias voltage accumulated by the pixel, thereby to achieve the effect of weakening or even eliminating the ghosts.
According to the ghost elimination device in the embodiments of the present disclosure, after the motion compensation is performed on a certain quantity of frames, the motion compensation is further closed in the plurality of subsequent frames, and the bias voltage of a pixel is self-recovered through the self-recovery characteristic of a capacitance electric field, so as to weaken or even eliminate the bias voltage accumulated by the pixel, thereby to achieve the effect of weakening or even eliminating the ghosts.
In the embodiments of the present disclosure, a ratio of n: m ranges from 0.12 to 0.25.
In the embodiments of the present disclosure, a value of m ranges from 40 to 50, and a value of n ranges from 6 to 10.
In the embodiments of the present disclosure, a value of m is 40, and a value of n is 8.
In the embodiments of the present disclosure, the display panel is a liquid crystal display panel, i.e., LCD.
The embodiment of the present disclosure is an embodiment of a device corresponding to the above ghost elimination method in the embodiments of the present disclosure. The ghost elimination device in the embodiments of the present disclosure may implement the steps in the above-mentioned ghost elimination method with a same technical effect, which will not be particularly defined herein.
The present disclosure further provides in some embodiments a display panel, including the above-mentioned ghost elimination device. Due to the ghost elimination device may further close the motion compensation in the plurality of subsequent frames after the motion compensation is performed on a certain quantity of frames, and the bias voltage of a pixel is self-recovered through the self-recovery characteristic of a capacitance electric field, so as to weaken or even eliminate the bias voltage accumulated by the pixel, thereby to achieve the effect of weakening or even eliminating the ghosts. In this regard, the display panel in the embodiments of the present disclosure also has the above technical effects, which will not be particularly defined herein.
In the embodiments of the present disclosure, the display panel is a liquid crystal display panel, i.e., LCD.
The present disclosure further provides in some embodiments a readable storage medium storing therein a program or instruction, the program or instruction is executed by a processor so as to implement the steps in the above-mentioned ghost elimination method with a same technical effect, which will not be particularly defined herein.
The above embodiments are for illustrative purposes only, but the present disclosure is not limited thereto. Obviously, a person skilled in the art may make further modifications and improvements without departing from the spirit of the present disclosure, and these modifications and improvements shall also fall within the scope of the present disclosure.
Number | Date | Country | Kind |
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202010857139.3 | Aug 2020 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2021/104721 | 7/6/2021 | WO |