摘要:
The invention provides an image identification device uses a separating plane to classify block images into the categories. The image identification device includes a target image input unit inputting a target image, a block image generation unit generates block images, a feature quantity computing unit computes feature quantities of the block images, and a category determination unit determines whether the block images are classified into the categories or not. The feature quantity computing unit uses local feature quantities of the block images and a global feature quantity of the target image as a whole, and also in a feature quantity space using features of the block images as coordinate axes, uses coordinate positions of feature quantity vectors optional areas in the feature quantity space to count the block images and causes the global feature quantity to include the number of the block images thus counted.
摘要:
An image identification method for classifying block images of input image data into one of the multiple predetermined categories according to feature quantity in each block image; the method includes an image production step of dividing image data into multiple blocks to produce block images, an image feature quantity processing step of processing the feature quantity of each block image by their color space information and frequency component, a separating hyperplane processing step of learning separating hyperplanes that indicate boundaries of each category by reading in training data image that have labeled categories for each block and processing image feature quantity for each block of an training data image, and a category classification step of classifying respective block image to a category according to the distance from the separating hyperplane of each category by executing the block image production step and the image feature quantity processing step for a newly acquired image to obtain the image feature quantity of block images.
摘要:
An image identification method for classifying block images of input image data into one of predetermined categories; the method includes the steps of: dividing image data into multiple blocks to produce block images, processing the feature quantity of each block image by their color space information and frequency component, learning separating hyperplanes that indicate boundaries of each category by reading in training data image that have labeled categories for each block and processing image feature quantity for each block of an training data image, and classifying respective block image to a category according to the distance from the separating hyperplane of each category for a newly acquired image to obtain the image feature quantity of block images. An imaging apparatus implementing the image identification method noted above is also disclosed.
摘要:
A method for producing urethane compounds includes allowing a primary amine, a urea and/or an N-unsubstituted carbamate, and an alcohol to react in the presence of a compound containing a noncoordinating anion and a metal atom as a catalyst.
摘要:
Provided is an illuminating device wherein generation of luminance deterioration and luminance nonuniformity is suppressed. An illuminating device (10) is provided with an LED (6) stored inside a storing space (10a), a power supply substrate (8) arranged outside the storing space (10a), and an FPC (7). The FPC (7) extends along a side section (1c) of a case member (1) so that the connecting terminal (7c) is away from the LED (6), and in such state, the connecting terminal (7c) is extracted to the outside from the inside of the storing space (10a).
摘要:
Provided is an illuminating device wherein generation of luminance nonuniformity is suppressed, while suppressing deterioration of light use efficiency. An illuminating device (10) is provided with an FPC (8), which has at least a part (8a) perpendicularly arranged to a light incoming surface (3a) of a light guide plate (3) and has an LED (7) mounted on the part (8a). The FPC (8) is also provided with a part (8b) positioned below a region between the LED (7) and the light incoming surface (3a), and the part (8b) is tilted in a diagonally downward direction toward the light incoming surface (3a).
摘要:
Disclosed is a backlight unit (49) comprising a light-emitting unit (UT) and a light guide plate (42) for receiving light from the light-emitting unit (UT). In this backlight unit (49), a light-receiving surface (42S) of the light guide plate (42) receiving light from an LED (12) is provided with a recess (DH) for housing an FFC (14) which connects mounted boards (11) arranged side by side.
摘要:
Disclosed is a display device configured to prevent its size from becoming large. The display device includes a case member (4) and attachment pieces (8) for attachment to an external member, where the attachment pieces (8) are provided on the case member (4). The case member (4) is constituted of a combination of a frame (5) and a bezel (6). Corner portions (5c) of a side section (5b) of the frame (5) disposed at locations of prescribed corner sections (4d) of the plurality of corner sections (4d) of the case member (4) are formed into chamfered surfaces. Also, attachment pieces (8) are disposed at least at the prescribed corner sections (4d) of the case member (4).
摘要:
Electrode terminals (33a, 33b) of an LED (3) and a mounting wiring (42) of an FPC (4) are bonded by using a conductive adhesive, and a metal slug (31) of the LED (3) and a heat dissipation wiring (43) of the FPC (4) are bonded by using the conductive adhesive. The heat dissipation wiring (43) corresponds to each of the LEDs (3) and isolates the LEDs one from the other, not permitting electricity to be carried between them.
摘要:
Disclosed is a display device wherein a light emitting element can have a longer service life, while suppressing luminance unevenness without causing an increase in cost or size. The display device comprises a light guide plate (21), an LED (25) that is arranged on the side of at least one corner portion (21d) of the light guide plate (21), a frame (4) that has a lateral portion (4b), and a bezel (5) that has a lateral portion (5b). The LED (25) is attached to a part (4d) of the lateral portion (4b) of the frame (4), and the part (4d) is thermally connected to a part (5d) of the lateral portion (5b) of the bezel (5).