Abstract:
본 발명은 이미지 캡쳐 장치를 위한 바코드 스캐닝 기술들을 설명한다. 이미지 캡쳐 장치는 이미지 캡쳐 장치가 디폴트 이미지 캡쳐 모드와 같은 비-바코드 이미지 캡쳐 모드에서 동작하고 있는 동안에 이미지 내에서 바코드를 자동적으로 검출할 수 있다. 일양상에 있어서, 이미지 내에서 바코드의 검출은 이미지 내에서 식별된 에지들 및 저강도 영역들의 결합에 기초할 수 있다. 이미지 캡쳐 장치는, 바코드의 검출에 기초하여, 이미지 캡쳐되는 품질을 향상시키기 위해서 이미지 캡쳐 장치와 연관된 하나 이상의 이미지 캡쳐 특성들을 구성할 수 있다. 이미지 캡쳐 장치는 구성된 이미지 캡쳐 특성들에 따라 이미지를 캡쳐한다. 그 기술들은 복잡한 사용자 인터페이스를 통한 사용자와의 중요한 상호작용을 필요로 하지 않고도 바코드들의 향상된 품질 이미지들을 생성하기 위해 일반적인 통합된 프론트-엔드를 효과적으로 제공할 수 있다.
Abstract:
PROBLEM TO BE SOLVED: To provide processing of images in imaging systems. SOLUTION: An imaging system converts raw data for an image to formatted data concurrently with compressing the formatted data for the image. The exemplary imaging system includes an image processor for generating blocks of formatted data from raw image data. The exemplary imaging system also includes an image compressor for compressing the blocks of formatted data. The compressor compresses one or more of the blocks while the image processor generates one or more blocks of formatted data. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To solve the problem in which performing color interpolation using mixing reduces the sharpness of an edge.SOLUTION: A color interpolation method uses a first interpolation function (F1) to obtain a first missing color sub-pixel value for a pixel to be an object of color interpolation, and uses a second interpolation function (F2) to obtain a second missing color sub-pixel value for the pixel to be the object of the color interpolation. A first metric (V) indicative of an edge extending in a first direction (D1) is obtained. A second metric (H) indicative of an edge extending in a second direction (D2) is obtained. The two metrics are used to generate first and second weighting factors (k1, k2). A confidence factor value can be used to place more emphasis on one metric compared to the other metric in the determination of the plurality of weighting factors.
Abstract:
PROBLEM TO BE SOLVED: To provide an efficient architecture for an imaging device that supports image registration for still images and video coding of a video sequence.SOLUTION: For image registration, the described architecture uses block-based comparisons of image blocks of a captured image relative to blocks of another reference image to support image registration on a block-by-block basis. For video coding, the described architecture uses block-based comparisons, e.g., to support motion estimation and motion compensation. A common block comparison engine is used on a shared basis for both block-based image registration and block-based video coding. In this way, a hardware unit designed for block-based comparisons is implemented to work in both the image registration process for still images and the video coding process for coding a video sequence.
Abstract:
PROBLEM TO BE SOLVED: To rotate an encoded image such as an image encoded according to a JPEG standard.SOLUTION: A method for rotating an encoded image comprises reordering minimum coded units (MCUs) of the encoded image according to a specified rotation of the encoded image, rotating image data within the MCUs according to the specified rotation, and generating a rotated version of the encoded image comprising the reordered MCUs and the rotated image data within the MCUs.
Abstract:
PROBLEM TO BE SOLVED: To provide processing of images in an imaging system.SOLUTION: The imaging system converts raw data for an image to formatted data concurrently with compressing the formatted data for the image. The exemplary imaging system includes an image processor for generating blocks of formatted data from the raw image data. The exemplary imaging system also includes an image compressor for compressing the blocks of the formatted data. The compressor compresses one or more of the blocks while the image processor generates one or more the blocks of the formatted data.
Abstract:
A method of combining data from multiple sensors is disclosed. The method includes providing a common control signal to multiple image sensors. Each of the multiple image sensors is responsive to the common control signal to generate image data. The method also includes receiving synchronized data output from each of the multiple image sensors, combining the synchronized data output from each of the multiple image sensors to generate a synchronized data line, and providing the synchronized data line to an image processor via a single camera input of the image processor.
Abstract:
Método para combinar datos de múltiples sensores. El método incluye proporcionar una senal de control común a múltiples sensores de imágenes. Cada uno de los múltiples sensores de imágenes responde a la senal de control común para generar datos de imágenes. El método incluye también recibir una salida de datos sincronizada de cada uno de los múltiples sensores de imágenes.
Abstract:
Techniques and systems are provided for processing image data using one or more neural networks. For example, a patch of raw image data can be obtained. The patch can include a subset of pixels of a frame of raw image data, and the frame can be captured using one or more image sensors. The patch of raw image data includes a single color component for each pixel of the subset of pixels. At least one neural network can be applied to the patch of raw image data to determine a plurality of color component values for one or more pixels of the subset of pixels. A patch of output image data can then be generated based on application of the at least one neural network to the patch of raw image data. The patch of output image data includes a subset of pixels of a frame of output image data, and also includes the plurality of color component values for one or more pixels of the subset of pixels of the frame of output image data. Application of the at least one neural network causes the patch of output image data to include fewer pixels than the patch of raw image data. Multiple patches from the frame can be processed by the at least one neural network in order to generate a final output image. In some cases, the patches from the frame can be overlapping so that the final output image contains a complete picture.
Abstract:
combinação de dados de múltiplos sensores de imagem. trata-se de um método de combinação de dados de múltiplos sensores. o método inclui fornecer um sinal de controle comum para múltiplos sensores de imagem. cada um dos múltiplos sensores de imagem é responsivo ao sinal de controle comum para gerar dados de imagem. o método também inclui recfeber dados sincronizados emitidos para cada um dos múltiplos sensores de imagem, combinar os dados sincronizados emitidos para cada um dos múltiplos sensores de imagem para gerar a linha de dados sincronizados, e fornecer a linha de dados sincronizados para um processador de imagem através de uma única entrada de câmera do processador de imagem.