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Hiroki Kishi

Hiroki Kishi, Funabashi-Shi JP

Patent application numberDescriptionPublished
20090074302IMAGE PROCESSING APPARATUS, IMAGE PROCESSING METHOD, AND RECORDING MEDIUM - An image processing apparatus of this invention includes a classification unit configured to classify anchor points that define the contour of an object into a plurality of groups based on features of the contour of the object, and a saving unit configured to identifiably save the anchor points classified by the classification unit for respective groups.03-19-2009
20090208130IMAGE PROCESSING APPARATUS, METHOD AND RECORDING MEDIUM - An image processing apparatus specifies an evaluation-target area that tends to produce distortion in an object contained in an image, and calculates amount of distortion produced in vectorization of the object by comparing the shape of the object and the shape of a vectorized object obtained by vectorizing the object in the specified evaluation-target area. The apparatus further revises the shape of the vectorized object in the evaluation-target area so as to approach the shape of the object when the amount of distortion is larger than a predetermined reference value.08-20-2009
20090252232IMAGE ENCODING APPARATUS AND CONTROL METHOD THEREOF - This invention enables to generate encoded data without noticeable image quality degradation when reproducing an image at a lower resolution not to mention the original resolution. An image a digital camera can capture takes three sizes L, M, and S. When the size L is designated, stream conversion information SC is set to “2”. When the size M is designated, the stream conversion information SC is set to “1”. When the size S is designated, the stream conversion information SC is set to “0”. When encoding image data in compression processing, block overlap processing of suppressing discontinuity of data at the boundary between adjacent blocks is executed as many times as the count set in the stream conversion information.10-08-2009
20090252427IMAGE ENCODING APPARATUS AND CONTROL METHOD THEREOF - This invention enables to generate encoded data without noticeable image quality degradation when reproducing an image at a lower resolution not to mention the original resolution. To accomplish this, when setting is done to transmit an image captured by a digital camera to a network, code stream forming information CF is set to “2” to arrange the encoded data of each tile in a resolution order. To suppress image quality degradation when reproducing at an intermediate resolution, stream conversion information SC is set to “2”. When encoding image data in compression processing, block overlap processing of suppressing discontinuity of data at the boundary between adjacent blocks is executed as many times as the count set in the stream conversion information. The obtained encoded data is arranged in accordance with the code stream forming information CF and output.10-08-2009
20100067810IMAGE ENCODING APPARATUS, IMAGE DECODING APPARATUS, AND METHODS OF CONTROLLING THE SAME - This invention enables the suppression of block noise even at an intermediate resolution equal to or lower than the original resolution and further increases the number of directly decodable resolutions for higher convenience. For this purpose, a memory stores original image data photographed by an image sensing unit. A resizing unit generates resized image data by reducing the numbers of horizontal and vertical pixels of the original image data stored in the memory to ½ and stores the image data in the memory again. An image compression unit encodes the original image data and the resized image data by HD Photo®. A CPU puts the two encoded data into one file and stores it in a nonvolatile memory card connected to an output unit.03-18-2010
20100316303IMAGE DECODING APPARATUS AND CONTROL METHOD FOR THE SAME - This invention provides a technique of speeding up decoding processing by omitting several processes while reducing the influence of omission of processes on image quality in accordance with the variable magnification ratios at which images are to be decoded and displayed. For this purpose, an apparatus according to the invention analyzes the header of decoding target encoded image data. The apparatus then obtains information indicating how many times distortion suppression processing has been executed at the time of the generation of the encoded image data. The apparatus decides which process can be omitted, based on the set variable magnification ratio and the information extracted from the header, and generates an image on which an output is based, by executing the processes which are not to be omitted. The apparatus then re-sizes the image in accordance with the set magnification ratio.12-16-2010
20100316304IMAGE DECODING APPARATUS AND CONTROL METHOD FOR THE SAME - This invention provides a technique to turn off a distortion suppression function within the range in which image quality degradation is allowed, in order to increase the processing speed at the time of decoding. For this purpose, an apparatus of the invention rewrites parameter information in a header with information indicating that no distortion suppression processing has been performed, and decodes encoded image data including the rewritten header, when the header contains parameter information indicating that the distortion suppression processing has been performed only before the first frequency conversion.12-16-2010

Hiroki Kishi, Aichi JP

Patent application numberDescriptionPublished
20080315804LOAD DRIVE CONTROL CIRCUIT - A load drive control circuit for controlling a load that includes connection terminals. The load drive control circuit includes bridge circuits respectively connected to the connection terminals of the load. Each bridge circuit includes two semiconductor elements, which are connected between a power supply and ground, and an output terminal. The semiconductor elements are each controlled to be switched between activated and deactivated states. The output terminal of each bridge circuit generates a bridge output that varies in accordance with a combination of the activated and deactivated states of the semiconductor elements in the bridge circuit. A detection circuit detects whether a short circuit is occurring in the connection terminals. A control circuit switches the bridge circuits to electrically disconnect the load from the power supply when a short circuit is occurring during a period in which the load is in a suspended state.12-25-2008
20100097737LOAD DRIVING DEVICE - A load driving device including a semiconductor switch arranged in a current path extending from a power supply to a load. A control circuit controls activation and deactivation of the semiconductor switch. The control circuit deactivates the semiconductor switch when it is determined that overcurrent is flowing through the current path. A current detector detects current that is flowing through the current path. The control circuit determines that overcurrent is flowing when the current detector continuously detects current that is greater than a threshold value over a predetermined detection time. The detection time is set to be shorter than the time from when the current in the current path exceeds the threshold value to when an increase in resistance value of the semiconductor switch resulting from heat generated by the current lowers the current to the threshold value.04-22-2010
20100102880LOAD DRIVE DEVICE - A load drive device has a load drive unit including an input system electrically connectable to a control power supply and an output system electrically connectable to a load drive power supply. The load drive unit supplies the electrical load with load drive voltage from the load drive power supply via the output system when the control power supply applies control voltage to the input system. A potential difference detection unit detects a potential difference between the control voltage and the load drive voltage. A potential fixing unit fixes a potential at a control system electrical route, connecting the control power supply and the input system of the load drive unit, to a prohibition level that prohibits the output system of the load drive unit from driving the electrical load when the potential difference detected by the potential difference detection unit exceeds a predetermined threshold value.04-29-2010