WO2006028109A1 - 撮影システム及びその撮影条件の設定方法と、それに用いられる端末及びサーバ - Google Patents
撮影システム及びその撮影条件の設定方法と、それに用いられる端末及びサーバ Download PDFInfo
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- WO2006028109A1 WO2006028109A1 PCT/JP2005/016386 JP2005016386W WO2006028109A1 WO 2006028109 A1 WO2006028109 A1 WO 2006028109A1 JP 2005016386 W JP2005016386 W JP 2005016386W WO 2006028109 A1 WO2006028109 A1 WO 2006028109A1
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- shooting
- information
- imaging
- photographing
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- G—PHYSICS
- G03—PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
- G03B—APPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
- G03B42/00—Obtaining records using waves other than optical waves; Visualisation of such records by using optical means
- G03B42/02—Obtaining records using waves other than optical waves; Visualisation of such records by using optical means using X-rays
- G03B42/04—Holders for X-ray films
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/40—Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
- H04N21/41—Structure of client; Structure of client peripherals
- H04N21/422—Input-only peripherals, i.e. input devices connected to specially adapted client devices, e.g. global positioning system [GPS]
- H04N21/4223—Cameras
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/60—Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client
- H04N21/65—Transmission of management data between client and server
- H04N21/654—Transmission by server directed to the client
- H04N21/6547—Transmission by server directed to the client comprising parameters, e.g. for client setup
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- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/60—Network structure or processes for video distribution between server and client or between remote clients; Control signalling between clients, server and network components; Transmission of management data between server and client, e.g. sending from server to client commands for recording incoming content stream; Communication details between server and client
- H04N21/65—Transmission of management data between client and server
- H04N21/658—Transmission by the client directed to the server
- H04N21/6582—Data stored in the client, e.g. viewing habits, hardware capabilities, credit card number
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N21/00—Selective content distribution, e.g. interactive television or video on demand [VOD]
- H04N21/80—Generation or processing of content or additional data by content creator independently of the distribution process; Content per se
- H04N21/81—Monomedia components thereof
- H04N21/8146—Monomedia components thereof involving graphical data, e.g. 3D object, 2D graphics
- H04N21/8153—Monomedia components thereof involving graphical data, e.g. 3D object, 2D graphics comprising still images, e.g. texture, background image
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/60—Control of cameras or camera modules
- H04N23/64—Computer-aided capture of images, e.g. transfer from script file into camera, check of taken image quality, advice or proposal for image composition or decision on when to take image
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- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/60—Control of cameras or camera modules
- H04N23/66—Remote control of cameras or camera parts, e.g. by remote control devices
- H04N23/661—Transmitting camera control signals through networks, e.g. control via the Internet
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- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
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- H04N5/765—Interface circuits between an apparatus for recording and another apparatus
- H04N5/77—Interface circuits between an apparatus for recording and another apparatus between a recording apparatus and a television camera
- H04N5/772—Interface circuits between an apparatus for recording and another apparatus between a recording apparatus and a television camera the recording apparatus and the television camera being placed in the same enclosure
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- H04N1/32—Circuits or arrangements for control or supervision between transmitter and receiver or between image input and image output device, e.g. between a still-image camera and its memory or between a still-image camera and a printer device
- H04N1/32101—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title
- H04N1/32106—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title separate from the image data, e.g. in a different computer file
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- H04N2201/00—Indexing scheme relating to scanning, transmission or reproduction of documents or the like, and to details thereof
- H04N2201/32—Circuits or arrangements for control or supervision between transmitter and receiver or between image input and image output device, e.g. between a still-image camera and its memory or between a still-image camera and a printer device
- H04N2201/3201—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title
- H04N2201/3212—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title of data relating to a job, e.g. communication, capture or filing of an image
- H04N2201/3214—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title of data relating to a job, e.g. communication, capture or filing of an image of a date
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- H04N2201/32—Circuits or arrangements for control or supervision between transmitter and receiver or between image input and image output device, e.g. between a still-image camera and its memory or between a still-image camera and a printer device
- H04N2201/3201—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title
- H04N2201/3225—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title of data relating to an image, a page or a document
- H04N2201/3252—Image capture parameters, e.g. resolution, illumination conditions, orientation of the image capture device
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- H04N2201/00—Indexing scheme relating to scanning, transmission or reproduction of documents or the like, and to details thereof
- H04N2201/32—Circuits or arrangements for control or supervision between transmitter and receiver or between image input and image output device, e.g. between a still-image camera and its memory or between a still-image camera and a printer device
- H04N2201/3201—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title
- H04N2201/3225—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title of data relating to an image, a page or a document
- H04N2201/3253—Position information, e.g. geographical position at time of capture, GPS data
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- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N2201/00—Indexing scheme relating to scanning, transmission or reproduction of documents or the like, and to details thereof
- H04N2201/32—Circuits or arrangements for control or supervision between transmitter and receiver or between image input and image output device, e.g. between a still-image camera and its memory or between a still-image camera and a printer device
- H04N2201/3201—Display, printing, storage or transmission of additional information, e.g. ID code, date and time or title
- H04N2201/3274—Storage or retrieval of prestored additional information
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- H04N5/00—Details of television systems
- H04N5/76—Television signal recording
- H04N5/765—Interface circuits between an apparatus for recording and another apparatus
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- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
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- H04N5/76—Television signal recording
- H04N5/765—Interface circuits between an apparatus for recording and another apparatus
- H04N5/77—Interface circuits between an apparatus for recording and another apparatus between a recording apparatus and a television camera
Definitions
- the present invention relates to a photographing technique, and in particular, acquires information on a photographing target and a photographing situation.
- the present invention also relates to a photographing system that sets an optimum photographing condition in a photographing object or photographing condition in an photographing means such as a camera based on the information, a method for setting the photographing condition, and a terminal and a server used in the photographing system.
- Patent Document 1 there is a technique for providing a user with a composition recommended for a subject to be photographed as a response to the demand for taking pictures as beautifully as possible.
- Patent Document 1 The technique disclosed in Patent Document 1 is associated with a plurality of recommended composition data R representing an image of a recommended composition at the photographing position in association with position information representing the photographing position as shown in FIG. Store in the storage means 400.
- the GPS means 403 receives the positioning radio waves from the GPS satellite force and inputs the GPS information G to the reading means 405.
- the reading unit 405 searches the recommended composition storage unit 404 based on the position information of the GPS information. If there is the recommended composition data RO, it reads this and inputs it to the superimposing unit 407.
- Image data SO imaged by the imaging means 401 is also input to the superimposing means 407, where the image data SO and the recommended composition data R0 A superimposed image CO is generated and displayed on the display means 408. Since the image data SO is displayed on the display means 408 in real time, the photographer can obtain an image with the recommended composition by matching the recommended composition image R0 and the image SO. it can.
- Patent Document 1 Japanese Patent Laid-Open No. 2002-10114
- the above-described conventional technology focuses on the composition as one of the shooting conditions for taking beautiful pictures. Even if the shooting is performed with the recommended composition, other shooting conditions are not. If it doesn't match the shooting, you can't take beautiful pictures.
- the above-mentioned conventional technology also states that the recommended shooting conditions are presented, but the date and time that the camera is going to shoot now, the date and time that is preferable for shooting the subject that is not due to the weather, and the weather are described. There is only. However, many photographers cannot go many times to shoot, and it is necessary to provide the photographers with optimal shooting conditions according to the date, time, and weather. It has not been.
- the present invention has been invented in view of the above problems, and its object is to analyze shooting information to determine a shooting target or shooting situation, and to capture an appropriate shooting condition corresponding to this. It is an object of the present invention to provide a photographing technique capable of performing optimum photographing under the photographing conditions such as the photographing object, its position, date and time, etc. by setting in the means.
- a first invention for solving the above problem is a photographing system
- Storage means for storing shooting condition information for setting shooting conditions
- An imaging unit that acquires image data of the imaging target by imaging the imaging target; and the imaging information acquired by the imaging information acquisition unit is analyzed, and the imaging condition of the image data is analyzed Photographing information analysis means for acquiring the case information from the storage means;
- imaging condition setting means for setting the imaging condition of the imaging means based on the imaging condition information acquired by the imaging information analysis means.
- a second invention for solving the above problem is a photographing system
- Storage means for storing shooting condition information for setting shooting conditions
- An imaging unit that acquires image data of a shooting target by imaging the shooting target, and analyzes the shooting information acquired by the shooting information acquisition unit to obtain a shooting target or shooting situation, and corresponds to this shooting target or shooting situation Photographing information analysis means for obtaining photographing condition information to be obtained from the storage means;
- imaging condition setting means for setting the imaging condition of the imaging means based on the imaging condition information acquired by the imaging information analysis means.
- a third invention for solving the above problem is a photographing system
- Storage means for storing shooting condition information for setting shooting conditions and a shooting target or shooting situation to which the shooting condition information is applied in association with each other;
- An imaging unit that acquires image data of a shooting target by imaging the shooting target, and analyzes the shooting information acquired by the shooting information acquisition unit to obtain a shooting target or shooting situation, and corresponds to this shooting target or shooting situation Photographing information analysis means for obtaining photographing condition information to be obtained from the storage means;
- imaging condition setting means for setting the imaging condition of the imaging means based on the imaging condition information acquired by the imaging information analysis means.
- a fourth invention for solving the above problem is a photographing system
- a shooting condition information database for storing shooting condition information for setting shooting conditions and a shooting target or shooting situation to which the shooting condition information is applied and stored, and shooting information acquisition means for acquiring shooting information
- a shooting information database in which shooting information and shooting targets or shooting situations are associated and stored;
- An imaging unit that acquires image data of a shooting target by imaging the shooting target, and a shooting target or shooting situation corresponding to the shooting information acquired by the shooting information acquisition unit are searched from the shooting information database, and this shooting is performed.
- the photographing condition information acquired by the photographing information analyzing means and the photographing information analyzing means acquired from the photographing condition information database, the photographing condition information corresponding to the target or the photographing situation!
- a photographing condition setting means for setting conditions.
- a fifth invention for solving the above-mentioned problems is characterized in that, in the first to fourth inventions, the photographing information acquisition means is means for acquiring information on a photographing position.
- a sixth invention for solving the above-mentioned problems is characterized in that, in the first to fifth inventions, the photographing information acquisition means is means for acquiring photographing date / time information.
- a seventh invention for solving the above-mentioned problems is characterized in that, in the first to sixth inventions, the shooting information acquisition means is means for acquiring weather information at the time of shooting.
- An eighth invention for solving the above-mentioned problems is characterized in that, in the first to seventh inventions, the imaging information acquisition means is means for acquiring imaging angle information.
- a ninth invention that solves the above-described problem is the storage device that stores image correction information for correcting image data in the first to eighth inventions,
- Shooting information analysis means for analyzing shooting information acquired by the shooting information acquisition means, and acquiring image correction information of the image data from the storage means;
- image processing means for correcting the image data obtained by the imaging means based on the image correction information obtained by the photographing information analysis means.
- a tenth invention for solving the above problem is a photographing system
- Storage means for storing shooting condition information for setting shooting conditions
- Shooting information analysis means for analyzing shooting information acquired by the shooting information acquisition means, and acquiring shooting condition information of the image data from the storage means;
- An eleventh invention for solving the above-mentioned problem is a shooting condition setting method, wherein shooting information is acquired at the time of shooting, the shooting information is analyzed to determine a shooting target or shooting situation, and the shooting target and shooting status are obtained. The imaging condition information corresponding to the situation is searched from the stored imaging condition information, and the imaging condition is set based on the imaging condition information.
- a twelfth invention for solving the above problem is a photographing condition setting method
- Shooting information is acquired at the time of shooting, this shooting information is analyzed to determine the shooting target or shooting situation, and shooting condition information corresponding to this shooting target and shooting situation is stored according to the shooting target or shooting situation. Searching from the condition information, and setting the shooting conditions based on the shooting condition information.
- a thirteenth invention for solving the above-mentioned problem is a photographing condition setting method
- a fourteenth invention for solving the above problem is an image processing method
- Information on the position, date / time, and shooting conditions is stored in advance, the stored information is retrieved from the position / date / time of shooting, and the corresponding shooting condition information is extracted. Is set.
- a fifteenth invention for solving the above-mentioned problem is a photographing condition setting method
- Information on the position, date / time, weather, and shooting conditions is stored in advance, and the stored information is retrieved from the position, date / time, and weather of the shooting, and the corresponding shooting condition information is extracted. It is characterized in that the shooting conditions are set.
- a sixteenth invention for solving the above-mentioned problem is a photographing condition setting method
- Information on the position, date / time, weather, angle, and shooting conditions is stored in advance, and the stored information is retrieved from the shot position, date / time, weather, and angle, and the corresponding shooting condition information is extracted, and the shooting conditions are extracted.
- the imaging condition is set using the information.
- the photographing information is analyzed to obtain a photographing object or photographing situation, and the photographing object and photographing situation are dealt with.
- Corresponding image correction information is searched from the stored image correction information, and based on this image correction information, a photographed image is corrected.
- An eighteenth invention for solving the above problem is a photographing system
- An imaging unit that acquires image data of an imaging target by imaging an imaging target, an imaging information acquisition unit that acquires imaging information, and an imaging condition of the imaging unit based on the transmitted imaging condition information
- a portable terminal having shooting condition setting means for setting the shooting information, and means for transmitting the shooting information acquired by the shooting information acquisition means;
- the storage means storing the shooting condition information for setting the shooting conditions of the image pickup means, the shooting information is received from the mobile terminal, the received shooting information is analyzed, and the shooting target or shooting situation is obtained.
- a server having imaging information analysis means for acquiring imaging condition information corresponding to an imaging object and imaging conditions from the storage means, and transmission means for transmitting imaging condition information acquired by the imaging information analysis means to a portable terminal;
- a nineteenth invention for solving the above-mentioned problem is a mobile terminal
- a twentieth invention for solving the above-mentioned problem is a server for transmitting photographing condition information for photographing to a terminal, which is transmitted from the terminal and storage means for storing photographing condition information for photographing.
- a shooting information analyzing unit that receives the shooting information received, analyzes the received shooting information, obtains a shooting target and a shooting situation, and acquires shooting condition information corresponding to the shooting target or shooting situation from the storage unit; And transmitting means for transmitting the photographing condition information acquired by the photographing information analyzing means to the terminal.
- a twenty-first invention for solving the above-described problem is a program for a mobile terminal, wherein the program includes the mobile terminal, a shooting information acquisition means for acquiring shooting information, and the shooting information as an external device. Means for transmitting to the server, and shooting condition information corresponding to the shooting information; And receiving means from the server, and based on the acquired photographing condition information, the photographing means setting means is configured to function as photographing condition setting means for setting photographing conditions.
- a twenty-second invention for solving the above-described problem is a program for an information processing apparatus that transmits photographing condition information for photographing to a terminal, the program being transmitted from the terminal to the information processing apparatus.
- the storage means for receiving the shooting information, analyzing the received shooting information to determine the shooting target and shooting status, and shooting condition information corresponding to the shooting target or shooting situation in which shooting condition information for shooting is stored
- the imaging information analyzing means acquired from the camera and the imaging condition information acquired by the imaging information analyzing means are functioned as transmitting means for transmitting to the terminal.
- the shooting information acquisition unit 2 acquires shooting information that is information at the time of shooting.
- the shooting information acquired by the shooting information acquisition unit 2 includes, for example, a shooting position, shooting date and time, weather at the time of shooting, shooting angle and direction, and angle of view of the shooting lens.
- the storage unit 3 stores optimum shooting condition information derived from the shooting information.
- the shooting condition information includes not only conditions relating to colors such as white balance, brightness, and saturation during shooting, but also conditions such as edge enhancement.
- the imaging information analysis unit 4 analyzes the imaging information given from the imaging information acquisition unit 2 and reads out imaging condition information appropriate for imaging from the storage unit 3. Then, the imaging condition setting unit 5 sets the imaging conditions of the imaging unit 1 based on the imaging condition information obtained by the imaging condition information acquisition unit 4.
- shooting information such as position information and date / time information that the photographer does not perform a special operation is acquired, and appropriate shooting condition information based on the analysis result of the shooting information is acquired. Because it is taken under these shooting conditions, even those without knowledge of photos and cameras can easily get great shot images.
- shooting information such as position information and date / time information is analyzed to obtain a shooting target and a shooting situation, and shooting condition information is acquired from the shooting target and shooting situation.
- shooting condition information is acquired from the shooting target and shooting situation.
- FIG. 1 is a diagram for explaining the outline of the present invention.
- FIG. 2 is a diagram for explaining an outline of an embodiment of the present invention.
- FIG. 3 is a diagram for explaining the outline of the first embodiment.
- FIG. 4 is a diagram for explaining the outline of the second embodiment.
- FIG. 5 is a diagram for explaining the outline of the third embodiment.
- FIG. 6 is a diagram for explaining the outline of the fourth embodiment.
- FIG. 7 is a diagram for explaining the outline of the fifth embodiment.
- FIG. 8 is a diagram for explaining the outline of Example 1.
- FIG. 9 is a diagram for explaining the outline of Example 2.
- FIG. 10 is a diagram for explaining a conventional technique.
- the shooting information acquisition unit 2 acquires shooting information that is information at the time of shooting.
- the shooting information acquired by the shooting information acquisition unit 2 includes, for example, a shooting position, a shooting date and time, a weather at the time of shooting, a shooting angle and a direction, and the like.
- the imaging information analysis unit 4 analyzes the imaging information given from the imaging information acquisition unit 2, It has a shooting information database 41 that stores shooting targets and shooting conditions corresponding to shooting information.
- the photographing information database 41 stores information such as latitude'longitude and direction, and information on the photographing target in association with each other.
- information such as latitude / longitude, direction, and date / time is stored in association with information on shooting conditions such as morning, night view, forward light, and backlight.
- the shooting information analysis unit 4 obtains information corresponding to shooting information (for example, information on latitude'longitude, direction, date and time) given from the shooting information acquisition unit 2, A search is made from the shooting information database 41, and the shooting target and shooting status associated with this information are obtained. For example, if the shooting target is the sea based on information such as latitude'longitude, direction, etc. Can do.
- shooting information for example, information on latitude'longitude, direction, date and time
- the shooting information database 41 is not limited to a single piece of shooting information and shooting conditions that need to be associated with a plurality of shooting information, shooting conditions and shooting targets on a one-to-one basis. Or auxiliary information for obtaining a photographing target may be stored in association with each other. Then, based on a plurality of auxiliary information obtained from the photographing information module, the photographing information analysis unit 4 may be configured to obtain a photographing target and a photographing situation. For example, if the shooting information analysis unit 4 searches the shooting information database 41 and obtains auxiliary information such as Takayama from the position information and obtains auxiliary information such as date and time information power as well as winter, the combined power of Takayama and winter is also subject to shooting. It may be configured to determine that the mountain is a snowy mountain.
- the storage unit 3 stores shooting condition information for setting optimum shooting conditions and a shooting condition information database in which shooting targets or shooting situations to which the shooting condition information is applied are stored correspondingly.
- the shooting condition information includes not only the color-related conditions such as the white balance, brightness, and saturation of the image, but also the conditions such as edge enhancement, and further, the angle of view of the lens of the imaging unit 1, the aperture, and the shutter. Speed etc. are also included.
- the imaging information analysis unit 4 analyzes the imaging information given from the imaging information acquisition unit 2, obtains an imaging target and an imaging situation, and responds to the imaging object and the imaging situation.
- the shooting condition information is read from the storage unit 3.
- the imaging condition setting unit 5 sets imaging conditions for the imaging unit 1 based on the imaging condition information obtained by the imaging information analysis unit 4.
- Shooting part 1 The imaging object is imaged under the set imaging conditions, and an image is acquired.
- the shooting information database 41 and the shooting condition information database 31 of the shooting information analysis unit 4 may be combined into one database and stored in the storage unit 3.
- the imaging information analysis unit 4 reads the imaging condition information with reference to the database in the storage unit 3.
- the present invention includes an imaging unit 1 such as a camera as shown in FIG. 3, a shooting information acquisition unit 2 that acquires shooting information that is information at the time of shooting, shooting condition information for correcting a shot image, and
- the storage unit 3 stores the corresponding shooting target and the shooting information given from the shooting information acquisition unit 2 to obtain the shooting target, and stores the shooting condition information corresponding to the shooting target.
- the imaging information analysis unit 4 obtained from 3 and the imaging condition setting unit 5 for setting the imaging conditions of the imaging unit 1 based on the imaging condition information obtained by the imaging information analysis unit 4 are provided.
- the imaging unit 1 is an imaging device having a number of functions necessary for shooting, such as a single-lens reflex camera, a digital camera, a digital video camera, a mobile phone with a camera, and a USB camera.
- the imaging information acquisition unit 2 includes a location information acquisition unit 21.
- the location information acquisition unit 21 acquires an imaging location of an image, and uses, for example, a positioning satellite radio wave. Then, information on the shooting position and shooting direction is acquired as GPS information.
- the photographing position is a position where the imaging device is present, and is represented by latitude and longitude.
- the shooting direction is the direction in which the imaging device is directed to the shooting target. Incidentally, regarding the acquisition of the shooting direction, an electronic direction magnet or the like may be provided so that the direction of the imaging unit 1 in the lens direction can be recognized.
- the storage unit 3 is a medium having a shooting condition information database 31 in which shooting condition information for setting optimum shooting conditions and a shooting target to which the shooting condition information is applied are stored correspondingly. It is.
- the shooting condition information represents, for example, optimal shooting parameters when shooting at a certain tourist attraction, and is stored in the storage unit 3 in association with the shooting target (in this case, the building name). For example, if the subject to be photographed (in this case, the name of the building) is Kinkakuji, the photographing condition information stores the photographing condition information so that the building of Kinkakuji can be clearly seen. Is.
- the imaging information analysis unit 4 analyzes the imaging target based on the position information, and reads out the imaging condition information corresponding to the imaging target from the storage unit 3.
- the building name (photographing target) existing for each certain location information as shown in FIG. 3 is stored in the photography information database 41 and acquired by the location information acquisition means 21.
- the building name (photographing object) corresponding to the position information obtained is obtained from the photographing information database 41.
- the photographing condition information corresponding to the building name (photographing target) is read from the photographing condition information database 31 in the storage unit 3.
- the shooting information analysis unit 4 analyzes that the shooting target is Kinkakuji, and sets shooting condition information corresponding to Kinkakuji to the shooting condition information of the storage unit 3. Read from database 31.
- the imaging condition setting unit 5 sets imaging conditions for the imaging unit 1 based on the imaging condition information obtained from the imaging information analysis unit 4.
- the effect of the present embodiment is to automatically analyze what kind of image pickup object (photographing target) exists at that position by obtaining position information that the photographer does not perform a special operation. This means that you can shoot by setting the optimal shooting conditions for shooting the imaged object (shooting target).
- the building name (photographing target) and the photographing condition information are stored in the photographing condition information database 31 of the storage unit 3 in association with each other, and the photographing information analysis unit 4 analyzes the photographing information.
- the photographing condition information corresponding to the obtained building name (photographing target) is read out.
- the shooting condition information database 31 is not limited to this, and shooting conditions such as white balance and sharpness and a plurality of correction values and levels used for setting these parameters are stored in association with each other.
- the shooting information analysis unit 4 After the shooting information analysis unit 4 analyzes the shooting target, the shooting information analysis unit 4 reads the shooting condition information such as the white balance and sharpness level suitable for the shooting target from the shooting condition information database 31. May be. For example, if the position information is latitude 'longitude 1, the shooting information analysis unit 4 analyzes that the shooting target is Kinkakuji, and it is sharpness or gold that is the exterior of Kinkakuji as the best shooting condition information for shooting Kinkakuji. Parameter information that optimizes color It is configured to read from the photographing condition information database 31 of part 3.
- the shooting condition setting unit 5 sets the sharpness level obtained from the shooting information analysis unit 4 and sets the color parameters so that the exterior color of the Kinkakuji is a preferable gold color. .
- FIG. 4 is a schematic block diagram showing the configuration of the system according to the second embodiment of the present invention. Note that the same reference numerals in the second embodiment denote the same parts as in the first embodiment, and a detailed description thereof will be omitted.
- date information acquisition unit 22 is provided in the imaging information acquisition unit 2.
- the date and time information acquisition unit 22 acquires the date and time when the video was shot, and for example, acquires the shooting date and time information from a timer built in the imaging apparatus.
- an imaging device that does not have a built-in timer function such as a USB camera, acquires information about the date and time when the imaging device is connected.
- the GPS information of the position information acquisition unit 21 may be used instead to acquire the shooting date / time information.
- a shooting situation is added in addition to the shooting target, and shooting condition information suitable for correcting an image shot at the position and date is supported based on the position information and date and time. Attached and memorized.
- the shooting condition information database 31 of FIG. 4 specific shooting target names and building names are stored as shooting targets, and night views, evenings, daytime, and the like are stored as shooting conditions.
- the shooting condition information stores the shooting condition information so that the building of the Kinkakuji can be clearly seen.
- the shooting condition information such as white balance for the night view is stored. Is stored.
- the shooting information analysis unit 4 analyzes the shooting target or shooting situation based on the position information and the date and time information, and reads shooting condition information corresponding to the shooting target or shooting situation from the storage unit 3. Is. Specifically, the name of the building existing there is stored for every certain position information as shown in FIG. 4, and the photographing object corresponding to the position information acquired by the position information acquisition means 21 is obtained. In addition, a situation suitable for each certain date / time information is stored, and a shooting situation corresponding to the date / time information acquired by the date / time information acquisition means 22 is obtained. Then, the shooting condition information corresponding to the shooting target or shooting situation is read from the storage unit 3.
- the imaging information analysis unit 4 indicates that the imaging object is Kinkakuji, and if the date and time information is "September 25 19:00", the imaging situation is a night view.
- the shooting condition information is read from the storage unit 3 when the shooting target is Kinkakuji and the shooting status is night view.
- the shooting condition setting unit 5 sets the edge-enhanced shooting conditions so that the Kinkaku-ji is clearly visible, the white balance suitable for the night view, etc., based on the shooting condition information of the Kinkaku-ji temple and the shooting condition information of the night scene. Set to Imager 1.
- the photographing information analysis unit 4 merges several shooting conditions and their amounts, calculates the optimum shooting conditions, and shoots the calculated results. It may be a condition.
- the amount defined in each of the gamma correction amount and sharpness is applied as it is. Some parts of the image may be corrected beyond what is expected, resulting in a noise-conspicuous image. Therefore, the final shooting condition considering the effect of the final acquired image is calculated from the amount defined for each.
- the effect of the present embodiment is that, by acquiring position information and date / time information that the photographer does not perform a special operation, what kind of captured object is automatically analyzed from the position information and the date / time is analyzed. It is possible to analyze the shooting situation of the imaged object from the information and obtain the optimum shooting conditions for shooting on the imaged object.
- FIG. 5 is a schematic block diagram showing a configuration of a system according to the third embodiment of the system according to the present invention. Note that the same reference numerals in the third embodiment denote the same parts as in the first and second embodiments, and a detailed description thereof will be omitted.
- the weather information acquisition means 23 provided in the imaging information acquisition unit 2 acquires the weather when the image was captured. Access the weather information server that provides weather information at the shooting location, and acquire weather information at the shooting location based on GPS information.
- the storage unit 3 for example, at the time of shooting Shooting condition information suitable for correcting images according to shooting conditions such as clear and cloudy is stored.
- the shooting information analysis unit 4 analyzes shooting information or shooting conditions based on position information, date and time information, and weather information, and stores shooting condition information corresponding to the shooting information or shooting conditions. It is to read. Specifically, the name of a building existing there is stored for every certain position information as shown in FIG. 5, and a photographing object corresponding to the position information acquired by the position information acquisition means 21 is obtained. In addition, a situation suitable for each certain date / time information is stored, and a shooting situation corresponding to the date / time information acquired by the date / time information acquisition means 22 is obtained. Then, shooting condition information corresponding to these shooting targets and shooting conditions is read from the storage unit 3. Also, the imaging information analysis unit 4 reads from the storage unit 3 imaging condition information corresponding to imaging conditions such as clear and cloudy from the weather information acquired from the weather information server or the like based on the position information and the like.
- the shooting information analysis unit 4 “Kinkakuji”, the shooting situation power “night view” and “cloudy”, and the shooting condition information corresponding to each shooting object and shooting situation is read from the storage unit 3.
- the shooting condition setting unit 5 reads the shooting information. Based on the shooting condition information obtained from the analysis unit 4, set the edge enhancement parameters so that Kinkaku-ji is clearly visible, set the white balance for night shooting, etc. Set the parameters.
- the shooting condition setting unit 5 sets shooting condition information appropriate for shooting the autumn leaves and Kinkakuji illuminated at night based on the shooting condition information. be able to.
- the shooting conditions based on the acquired shooting condition information, only the colored leaves that were lit up at night are set so that the saturation of red is high so that it becomes a reddish and preferred color. Set the sharpness level higher for edge enhancement that takes into account the effects of light-up.
- mountain and sea correction when shooting a mountain or sea in mid-August on a sunny day, the mountain and sea are based on location information, the date and time information power is summer, and the weather is clear. The information is analyzed, and the shooting conditions can be obtained so that shooting can be performed with a preferable color optimal for the summer mountain green and summer sea sky associated with the situation.
- the effect of the present embodiment is that what kind of imaging object is present from the position information automatically by acquiring the position information, date / time information, and weather information without the photographer performing a special operation. It is possible to analyze the situation of the imaged object based on the date and time information, analyze the imaged condition of the imaged object based on the weather information, and obtain the optimum photographing condition for the imaged object.
- FIG. 6 is a schematic block diagram showing the configuration of the system according to the fourth embodiment of the system of the present invention. Note that in the fourth embodiment, identical symbols are assigned to configurations identical to those in the first, second, and third embodiments, and detailed descriptions thereof are omitted.
- the angle information acquisition unit 24 provided in the imaging information acquisition unit 2 acquires the angle of the imaging device when the image is captured.
- the angle of the imaging device is obtained using a gyroscope, gravity sensor or the like.
- shooting condition information that includes a shooting angle is stored.
- shooting condition information that includes a shooting angle is stored.
- shooting condition information such as forward light, oblique light, and backlight are also prepared as shooting conditions.
- the imaging information analysis unit 4 includes the position information included in the GPS information, the date and time information obtained based on the built-in timer, the weather information obtained by accessing the weather information server, and the gravity sensor. An appropriate shooting target and shooting conditions are analyzed from the angle information obtained from the camera, and shooting condition information corresponding to the shooting target and shooting conditions is read from the storage unit 3. Therefore, the shooting information database 41 is a database that also includes angle information. From the positional information and date / time information, the positional relationship between the shooting location and the sun, and the positional information and angular information between the lens of the imaging device and the sun. Establish a database that helps position relationships.
- the imaging condition setting unit 5 sets the imaging conditions of the imaging unit 1 based on the imaging condition information obtained from the imaging information analysis unit 4.
- the effect of the present embodiment is that the position information, the date / time information, the weather information, and the angle information that the photographer does not perform special operations are automatically acquired from the position information at the time of shooting. Analyzes whether there is an imaged object, analyzes the state of the imaged object from the date and time information, analyzes the reflected state of the imaged object from the weather information, analyzes the orientation of the lens of the imaging device from the angle information, and shoots the imaged object It is possible to obtain the optimum shooting conditions for doing this.
- angle information may be used together with the position information as information for specifying the object to be imaged.
- the shooting position can be specified from the position information
- the shooting direction and the shooting angle can be specified from the angle information
- the position information, the angle information, and the shooting target are associated with each other and stored in the shooting information database 41 in advance.
- the photographing object and the photographing condition of the photographing object are associated with each other and stored in the photographing condition information database 31, the optimum photographing condition for the photographing object can be obtained.
- Kinkaku-ji I understand that Kinkaku-ji is also the subject of location information, but it is unclear how the Kinkaku-ji is going to be photographed.
- FIG. 7 is a schematic block diagram showing the configuration of the system according to the fifth embodiment of the system of the present invention. Note that in the fourth embodiment, identical symbols are assigned to configurations identical to those in the first, second, third, and fourth embodiments, and detailed descriptions thereof are omitted.
- the fifth embodiment is characterized in that it further includes an image processing unit 6 that performs correction processing on image data to be imaged taken by the imaging unit 1.
- the image processing unit 6 corrects the image data based on the image correction information.
- the image correction information uses the above-described analysis result of the photographing information.
- the image correction information is stored in the storage unit 3, and the storage unit 3 corresponds to the image correction information for correcting the captured image and the shooting target or shooting situation to which the image correction information is applied. And an image correction information database 32 stored therein.
- the image correction information includes not only color correction such as white balance, brightness, and saturation of the image, but also processing of the image data itself such as edge enhancement.
- the shooting information analysis unit 4 analyzes the shooting information given from the shooting information acquisition unit 2 to obtain the shooting target and shooting situation, and responds to the shooting target and shooting situation.
- the image processing unit 6 Based on the correction information obtained by the image correction information acquisition unit 4, the image processing unit 6 performs correction processing on the image data to be captured obtained by the imaging unit 1.
- the shooting information database 41 and the image correction information database 31 of the shooting information analysis unit 4 may be combined into one database, and this database may be stored in the storage unit 3.
- the imaging information analysis unit 4 reads the image correction information with reference to the database in the storage unit 3.
- the effect of the present embodiment is appropriate for an image after shooting, for example, when only a part of a shot image is corrected and cannot be complemented only by shooting conditions such as the case.
- a corrective process By performing a corrective process, a beautiful photographed image can be obtained.
- Example 1 of the present invention will be described.
- FIG. 8 is a diagram showing a configuration of the first embodiment of the present invention.
- the present system as shown in FIG. 7 includes a mobile phone 100, a server 200, and a network 300 that connects the mobile phone 100 and the server 200.
- the cellular phone 10 includes the above-described imaging unit 1, imaging information acquisition unit 2, and imaging condition setting unit 5, and further includes imaging information acquired by the imaging information acquisition unit 2 and the server 200.
- Server 200 includes storage unit 3 and imaging information analysis unit 4 described above, and further transmits / receives imaging information transmitted from mobile phone 100 and imaging condition information transmitted to mobile phone 100. 201.
- the user of the mobile phone 100 takes a picture with the imaging unit 1 of the mobile phone 100.
- the shooting information acquisition unit 2 of the mobile phone 100 acquires shooting information.
- the acquired photographing information is transmitted to the server 200 via the transmission / reception unit 101.
- the server 200 receives shooting information from the mobile phone 100 via the transmission / reception unit 201, and the shooting information analysis unit 4 analyzes the shooting information to obtain the shooting target and shooting status. Then, shooting condition information corresponding to these shooting targets and shooting conditions is read from the storage unit 3, and this shooting condition information is transmitted to the mobile phone 100 via the transmission / reception unit 201.
- the imaging condition information is received from the server 200 via the transmission / reception unit 101, and the imaging condition setting unit 5 sets the imaging condition of the imaging unit 1 based on the imaging condition information.
- the present invention can be applied to a mobile terminal such as a mobile phone having a limited storage capacity.
- Example 2 of the present invention will be described.
- the mobile phone 100 and the server 200 in the first embodiment can be realized by a force computer program that can be configured by hardware.
- FIG. 9 shows a general block configuration of an information processing apparatus that implements a part of the server 200.
- the information processing apparatus shown in FIG. 9 includes a processor 500, a program memory 501, and a storage medium 502.
- the storage medium 502 corresponds to the shooting information database 41 of the storage unit 3 and the shooting information analysis unit 4 in the first and second embodiments.
- the storage medium 502 may be a plurality of storage media, or may be storage areas having the same storage medium power.
- a magnetic storage medium such as a hard disk can be used as the storage medium.
- the program memory 501 stores a program that causes the processor 500 to perform the processing as the imaging information analysis unit 4 in the first and second embodiments.
- the processor 500 operates according to this program. Instruct the transceiver 201.
- the processor 500 may be configured to process part of the processing of the transmission / reception unit 201.
- all or part of the hardware of the mobile phone 100 can also be realized by a computer program.
- all or part of the imaging information acquisition unit 2 and the imaging condition setting unit 5 are realized by the processor 500.
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Abstract
Description
Claims
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
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| US11/662,025 US8094963B2 (en) | 2004-09-07 | 2005-09-07 | Imaging system, imaging condition setting method, terminal and server used for the same |
| JP2006535770A JP4984044B2 (ja) | 2004-09-07 | 2005-09-07 | 撮影システム及びその撮影条件の設定方法と、それに用いられる端末及びサーバ |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2004-259583 | 2004-09-07 | ||
| JP2004259583 | 2004-09-07 |
Publications (1)
| Publication Number | Publication Date |
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| WO2006028109A1 true WO2006028109A1 (ja) | 2006-03-16 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2005/016386 Ceased WO2006028109A1 (ja) | 2004-09-07 | 2005-09-07 | 撮影システム及びその撮影条件の設定方法と、それに用いられる端末及びサーバ |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US8094963B2 (ja) |
| JP (1) | JP4984044B2 (ja) |
| WO (1) | WO2006028109A1 (ja) |
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| JP2010098697A (ja) * | 2008-10-20 | 2010-04-30 | Samsung Digital Imaging Co Ltd | 撮像装置及び撮像方法 |
| JP2010268093A (ja) * | 2009-05-13 | 2010-11-25 | Nikon Corp | カメラ |
| JP2012058473A (ja) * | 2010-09-08 | 2012-03-22 | Canon Inc | 位置情報取得装置、撮像装置及びそれらの制御方法 |
| JP2012095090A (ja) * | 2010-10-27 | 2012-05-17 | Nikon Corp | 撮像装置 |
| JP2012100173A (ja) * | 2010-11-04 | 2012-05-24 | Canon Inc | 撮像装置撮像装置、撮像システム、及び撮像装置の制御方法 |
| JP2012199821A (ja) * | 2011-03-22 | 2012-10-18 | Casio Comput Co Ltd | 撮像装置及びプログラム |
| JP2012205024A (ja) * | 2011-03-25 | 2012-10-22 | Casio Comput Co Ltd | 撮像装置、撮像補助方法及びプログラム |
| JP2018028678A (ja) * | 2017-10-05 | 2018-02-22 | 株式会社ニコン | 撮像装置 |
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| US8457419B2 (en) * | 2007-04-13 | 2013-06-04 | Research In Motion Limited | Method of decoding entropy-encoded data |
| JP6323548B2 (ja) * | 2014-03-28 | 2018-05-16 | 富士通株式会社 | 撮影補助システム、撮像装置、情報処理装置、撮影補助プログラム及び撮影補助方法 |
| US9723200B2 (en) | 2014-10-15 | 2017-08-01 | Microsoft Technology Licensing, Llc | Camera capture recommendation for applications |
| US11687316B2 (en) * | 2019-02-28 | 2023-06-27 | Qualcomm Incorporated | Audio based image capture settings |
| US11122199B2 (en) * | 2020-01-22 | 2021-09-14 | International Business Machines Corporation | Methods for adjusting characteristics of photographs captured by electronic devices and related program products |
| US11575828B1 (en) * | 2021-10-14 | 2023-02-07 | Meta Platforms, Inc. | Dynamically identifying visual media capture formats based upon conditions |
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Also Published As
| Publication number | Publication date |
|---|---|
| US8094963B2 (en) | 2012-01-10 |
| JP4984044B2 (ja) | 2012-07-25 |
| JPWO2006028109A1 (ja) | 2008-07-31 |
| US20080095434A1 (en) | 2008-04-24 |
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