Abstract:
A display reduction of 1/n is performed with a display device, with which three light-emitting elements, which respectively emit light of the three primary colors of R, G, and B, are aligned in a fixed order to comprise one pixel. A plurality of pixels are aligned in a first direction to form one line. A plurality of lines are aligned in a second direction, orthogonal to the first direction, to comprise the display screen. Original image data is converted to working image data by magnifying or reducing the original data by 3/n in the first direction. The working image data are then allocated to the three light-emitting elements that comprise one pixel and the displayed. The display reduction reduces the loss of information compared to the prior art.
Abstract:
A three-times magnified pattern of a central target pixel and horizontally contiguously adjacent sub-pixel patterns next thereto are determined on the basis of a reference pattern that has a rectangular profile and further that consist of eight-neighboring pixel about the target pixel. The determined three-times magnified pattern is allocated to three sub-pixels that form the target pixel. The determined sub-pixel patterns are allocated to horizontally adjacent sub-pixels next to the target pixel. As a result, a black area defined by the target pixel is displaced rightward by an amount of a sub-pixel without any change in black area size that corresponds to three sub-pixels. This feature inhibits a variation in output image density, which otherwise would conspicuously occurs as a result of a varied object line width.
Abstract:
The frame interpolation unit 61 generates an interpolation image for interpolating in a non-photographic section that is between one exposure section in which exposure occurs and a next exposure section, with use of photographed images in both exposure sections temporally adjacent to the non-photographing section. The frame compositing circuit 62 generates a composite image corresponding to a predetermined time section with use of a photographed image photographed in the predetermined time section and the interpolation image generated by the frame interpolation circuit 61.
Abstract:
PROBLEM TO BE SOLVED: To provide a communication device capable of simplifying various settings in a display device such as a television which provides information concerning an article (a communication device).SOLUTION: The communication device comprises a first processing unit 35, a first power supply unit 101, a use state detection unit 7020, a first memory 174, a second antenna 21, an RF-ID47, a second memory 52, and a second power supply unit 91. The RF-ID47 switches between a first communication mode which the first processing unit 35 reads use state information from the first memory 174 and transmits to another communication device by a short-range wireless communication in a state that the first power supply 101 supplies electric power to the first processing unit 35 and the first memory 174 based on an instruction received from the other communication device, and a second communication mode which the RF-ID47 reads identification information from the second memory 52 in a state that the second power supply unit 91 supplies electric power to the second memory 52.
Abstract:
PROBLEM TO BE SOLVED: To provide a photographing apparatus capable of photographing while changing photographing frame rate, and even when the mode is changed between an ordinary speed mode and a slow motion mode, the brightness is maintained and pictures are reproduced with a satisfactory quality.SOLUTION: When changing from an ordinary frame rate to a high speed frame rate during photographing, the stop is previously transited to ensure the exposure level and the exposure time same as the high speed photographing before changing so that the mode is smoothly changed and seamless pictures are obtained.
Abstract:
PROBLEM TO BE SOLVED: To provide a communication device capable of simplifying various settings in a display device such as a TV that provides information on an article (communication device).SOLUTION: The communication device comprises a RF-ID reader writer 46 for performing proximity wireless communication with an external RF-ID card 2100, a communication unit 2007 for performing communication with a server 42 at a speed faster than the proximity wireless, and a system control unit 2004 for controlling the RF-ID reader writer 46 and the communication unit 2007. The RF-ID reader writer 46 reads communication information for identifying the server 42 so as to connect from the RF-ID card 2100. The system control unit 2004 controls the identified server 42 and the communication unit 2007 so as to perform communication according to the communication information read from the RF-ID card 2100 by the RF-ID reader writer 46.
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing method capable of generating an output image of increased image quality when the number of data stored in a learning database is small.SOLUTION: The image processing method includes: a first generation step (S1003) in which plural pieces of third learning data, which are obtained by processing second learning data stored in a learning database, are generated on each round of processing; a selection step (S1004) in which selection data which is the third learning data having a highest similarity to feature data of an input image is selected from the plural third learning data; a second generation step (S1005) in which the second learning data used for generating selection data and first processing performed thereon to generate selection data are identified, and the first processing is performed on the first learning data that pairs with the identified second learning data to thereby generate high-frequency data; and a third generation step (S1006) in which an output image in which an image represented by the high-frequency data is added to the input image is generated.
Abstract:
PROBLEM TO BE SOLVED: To provide a communication device which can simplify various setting operations in a display device such as a TV which provides information associated with an article (communication device).SOLUTION: An imaging device 1 has an RF-ID 47 which performs a proximity radio communication with an RF-ID reader/writer 46 connected to a TV 45 by an infrared communication path. The imaging device 1 includes: a proximity radio communication antenna 21; a data reception unit 105 which receives an input signal supplied from the reader/writer 46; a nonvolatile second memory 52 which stores a UID unit 75 as identification information for identifying at least the communication device and an operation program 116 executed by the TV 45 by referencing the UID unit 75; and a data transfer unit 108 which transmits the UID unit 75 and the operation program 116 to the reader/writer 46 via the antenna 21 in accordance with the input signal. The transmitted UID unit 75 and the operation program 116 are transferred to the TV 45 via the reader/writer 46.