Abstract:
A font display method using a font display co-processor to accelerate font display includes receiving font information from a baseband CPU and loading a mapping table, a font bitmap table, and a font code table to the font display co-processor. The font information is corresponded to a font code according to the font code table. The font code corresponds to a font index according to the mapping table. The font index is corresponded to a font bitmap according to the font bitmap table. Some special effects may be added to the font bitmap displayed on a display module.
Abstract:
A system for localizing an acoustic source is provided. This system includes a microphone apparatus, an audio processing apparatus, a photographing apparatus, and a decision apparatus. The microphone apparatus receives an acoustic signal and generates at least one received audio signal. The audio processing apparatus generates first location information based on the at least one received audio signal. The decision apparatus generates depth information based on at least one image captured by the photographing apparatus. According to the first location information, the at least one captured image, and the depth information, the decision apparatus determines a location corresponding to the source of the acoustic signal.
Abstract:
The invention discloses a stereoscopic image generating method including the steps of capturing a first image and a second image from two different view angles, wherein the two images have a common primary target and a common secondary target; recognizing the common secondary target; analyzing respective capture information of the secondary target in the first image and the second image; according to the respective capture information in the first image and the second image, generating an image object placed in the first image and the image object placed in the second image; and according to an arrangement criterion, arranging the pixels of the first image, the pixels of the second image, the pixels of the image object placed in the first image and the pixels of the image object placed in the second image to generate a single mixed image.
Abstract:
A method for motion pixel detection with adaptive thresholds, according to the global motion information among the reference video fields, so as to correctly evaluate whether a missing pixel is in a static region or a non-static region, thereby reconstructing the missing pixel by an inter-field interpolation process or an intra-field interpolation process. If the amount of motion among the reference fields is large, there is high motion information among the reference fields, so the threshold is set to be small; if the amount is small, there is less motion information between the reference fields, and so the threshold should be set to be large.
Abstract:
The invention relates to a method for detecting video frame types with median filtering, which proceeds a denoising step after calculating the comb factor of each pixel, to avoid incorrect judgment of the frame type resulting from excessive field difference and improve detection accuracy.
Abstract:
A method for motion pixel detection with a static counter map so as to correctly evaluate whether a missing pixel is in a static region or a non-static region, thereby reconstructing the missing pixel by an inter-field interpolation process or an intra-field interpolation process, respectively.
Abstract:
A scaling device and method for scaling a digital picture in only one pass requires only a small amount of buffer memory which can be used in real time. The method includes inputting the digital picture, generating a block of the digital picture from the digital picture, creating two weighting matrices, and multiplying the block of the digital picture by the weighting matrices.
Abstract:
The present invention relates to a color interpolation method for Bayer filter array images. The method first inputs a 3×3 Bayer pattern block with a center pixel. Next, a color filter interpolation case is determined according to the type of the center pixel. Next, Bayer pixel averages and Bayer pixel differences in horizontal and vertical directions of the color filter interpolation case are obtained. Next, missing color components of the center pixel are interpolated in both horizontal and vertical directions. Next, color differences in the horizontal and vertical directions are obtained based on the Bayer pixel differences and averages. Next, a pixel activity of the 3×3 Bayer pixel block is determined. Finally, interpolated color components in the direction of lower color differences are selected, when the pixel activity is high.
Abstract:
A method for a 3:2 pull-down film source detection. First, a source is received. Then, field differences of two fields of the same type in the source and an average field difference according to the field difference corresponding to at least one prior field in the source are calculated. The source is established as a 3:2 pull-down film source by checking whether a 3:2 pull-down signature is in the source according to the field difference and the average field difference, and a bad editing point is detected according to an interlaced frame information of the source.
Abstract:
A method for a 3:2 pull-down film source detection. First, a source is received. Then, field differences of two fields of the same type in the source and an average field difference according to the field difference corresponding to at least one prior field in the source are calculated. The source is established as a 3:2 pull-down film source by checking whether a 3:2 pull-down signature is in the source according to the field difference and the average field difference, and a bad editing point is detected according to an interlaced frame information of the source.