Abstract:
An image processing system includes an information processing apparatus and an image forming apparatus that are connected via a network. The information processing apparatus receives inputs designating scan setting and a layout method, and transmits the scan setting and the layout method to the image forming apparatus. The image forming apparatus reads an original document according to the scan setting, outputs image data, extracts a content from the image data according to the layout method, and transmits the content to the information processing apparatus. The information processing apparatus determines, according to the layout method, a layout of the content on a page, arranges the content on the page according to the layout, and generates the drawing data. The image forming apparatus forms an image on a sheet of paper corresponding to the page according to drawing data.
Abstract:
An image processing apparatus having an image data storing unit configured to store image data, an image data receiving unit configured to receive image data scanned the image forming apparatus, and to store the image data to the image data storing unit. There is a layout generation unit configured to generate layout information for arranging the plural image data in the image data storing unit according to a rule, a layout image generation unit configured to generate a layout image data arranged the image data according to the layout information if a certain output condition is satisfied, and a print control unit configured to cause the image forming apparatus to print the layout image data.
Abstract:
An attribute determining unit determines an attribute of image data of an image. A still-image extracting unit extracts, when the attribute is a moving image, a still image from the image data. A feature-amount obtaining unit obtains a feature amount from image data of the still image and image data of a still image when the attribute is the still image. An arrangement-position determining unit determines an arrangement position of a display area based on the feature amount. A display-image generating unit generates a thumbnail image from the still image and displays a list of thumbnail images in the display area, based on the arrangement position and the display area.
Abstract:
A disclosed image display apparatus for displaying multiple images on a single screen includes a magnification unit configured to, in response to a zooming operation on the screen, magnify distances between centroids of first group images included in the multiple images and magnify the first group images; and a display control unit configured to display in a space of the magnified distances one or more images different from the multiple images. A magnification rate of the distances between the centroids has a nonlinear relationship to a magnification rate of the first group images, and within an extent of the nonlinear relationship, the magnification rate of the distances between the centroids has a predetermined range in which the magnification rate of the first group images is larger than the magnification rate of the distances between the centroids.
Abstract:
An image processing system includes an information processing apparatus and an image forming apparatus that are connected via a network. The information processing apparatus receives inputs designating scan setting and a layout method, and transmits the scan setting and the layout method to the image forming apparatus. The image forming apparatus reads an original document according to the scan setting, outputs image data, extracts a content from the image data according to the layout method, and transmits the content to the information processing apparatus. The information processing apparatus determines, according to the layout method, a layout of the content on a page, arranges the content on the page according to the layout, and generates the drawing data. The image forming apparatus forms an image on a sheet of paper corresponding to the page according to drawing data.
Abstract:
An imaging apparatus includes a plurality of imaging bodies and an imaging control unit. Each of the imaging bodies includes a first optical element capable of imaging a range including a hemisphere that is centered at an optical axis and oriented in a first direction of the optical axis, and a second optical element capable of imaging a range including a hemisphere that is centered at the optical axis and oriented in a second direction opposite to the first direction. The imaging bodies are arrayed in a direction perpendicular to the optical axis. The imaging control unit causes the plurality of imaging bodies to perform imaging in a synchronous manner, and acquires a captured image from each of the imaging bodies.
Abstract:
A recognition apparatus includes one or more processors, a memory to store a plurality of instructions which, when executed by the processors, cause the processors to extract an optically-readable symbol from an optically captured image including an image of the optically-readable symbol, the optically-readable symbol including a first cell line having a plurality of first cells, and one or more second cell lines each having one or more second cells, each of the one or more second cell lines connected to respective ones of the plurality of first cells of the first cell line, recognize first information expressed by the first cell line included in the extracted optically-readable symbol, recognize second information expressed by the one or more second cell lines included in the extracted optically-readable symbol, and acquire identification information included in the optically-readable symbol based at least in part on the first information and the second information.
Abstract:
An information processing apparatus includes a self-position/self-orientation calculation unit calculating self-position and/or self-orientation in the predetermined coordinate system based on a marker in acquired imaged image data when it is determined that the marker exists within a predetermined area and the marker is imaged in the imaged image data and based on received position information and physical amounts measured by sensors for measuring the physical amounts to be used for autonomous navigation when the marker does not exist within the predetermined area or the marker is not imaged in the imaged image data.
Abstract:
An information processing apparatus includes a processor that executes an instruction stored in a fixed address area in a storage part; the storage part that stores a first startup program and a second startup program, contents of the second startup program being different at least partially from those of the first startup program; and an address conversion part that, when the processor carries out a predetermined startup different from an ordinary startup that is carried out at a time of starting power supply to the information processing apparatus, converts an address included in a read instruction issued by the processor indicating a storage area that stores the first startup program into an address indicating an other storage area that stores the second startup program, and sends the converted address to the storage part.
Abstract:
A reception apparatus for receiving data from a transmission apparatus includes a data receiver configured to receive a synchronization packet including clock information generated by the transmission apparatus and data from the transmission apparatus, a storage memory, storing the received data, a clock adjuster configured to correct a clock of the reception apparatus based on a deviation between a clock of the transmission apparatus and the clock of the reception apparatus by using the clock information generated by the transmission apparatus, a controller configured to control a clock correction amount of the clock adjuster based on a storage amount of data in the storage memory, and a data output circuit configured to retrieve the data from the storage memory to output the retrieved data in synchronization with the corrected clock.