WO2015076015A1 - 撮像システム、撮像装置、情報処理装置および方法とプログラム - Google Patents
撮像システム、撮像装置、情報処理装置および方法とプログラム Download PDFInfo
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- WO2015076015A1 WO2015076015A1 PCT/JP2014/075415 JP2014075415W WO2015076015A1 WO 2015076015 A1 WO2015076015 A1 WO 2015076015A1 JP 2014075415 W JP2014075415 W JP 2014075415W WO 2015076015 A1 WO2015076015 A1 WO 2015076015A1
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- Prior art keywords
- imaging
- information processing
- fixed
- imaging device
- mode
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N5/00—Details of television systems
- 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
- 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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- 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
- G03B17/00—Details of cameras or camera bodies; Accessories therefor
- G03B17/02—Bodies
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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
- H04N23/50—Constructional details
- H04N23/53—Constructional details of electronic viewfinders, e.g. rotatable or detachable
- H04N23/531—Constructional details of electronic viewfinders, e.g. rotatable or detachable being rotatable or detachable
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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
- H04N23/57—Mechanical or electrical details of cameras or camera modules specially adapted for being embedded in other devices
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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
- H04N23/63—Control of cameras or camera modules by using electronic viewfinders
- H04N23/633—Control of cameras or camera modules by using electronic viewfinders for displaying additional information relating to control or operation of the camera
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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
- H04N23/667—Camera operation mode switching, e.g. between still and video, sport and normal or high- and low-resolution modes
Definitions
- This technology makes it possible to easily set a mode relating to imaging with respect to an imaging system, an imaging device, an information processing device, a method, and a program.
- imaging devices such as digital still cameras and digital video cameras that capture an image of a subject, generate image data, and record the image data as content have become widespread.
- information processing devices for example, smartphones
- Patent Document 1 For example, refer to Patent Document 1.
- the user when setting the mode related to imaging of the imaging apparatus, the user needs to perform a complicated operation for setting the desired mode, for example, on the imaging apparatus or the information processing apparatus connected by communication. For this reason, it is desired that the imaging apparatus can be easily set to a desired mode.
- an object of the present technology is to provide an imaging system, an imaging apparatus, an information processing apparatus, a method, and a program that can easily set a mode related to imaging.
- the imaging system of this technology for example, communication between an imaging apparatus that does not have a function of displaying a captured image and an information processing apparatus that has an image display function is performed, and a captured image generated by the imaging apparatus is Displayed on the display.
- the imaging apparatus and the information processing apparatus can be switched between a fixed state fixed to each other and a separated state separated from each other, and the fixed separation determination unit determines whether the state is a fixed state or a separated state. Further, the fixed relationship in the fixed state is determined by the fixed relationship determination unit, and the mode related to the imaging of the imaging apparatus is controlled according to the fixed relationship information indicating the determination result of the fixed relationship.
- the information processing apparatus is provided with a display unit on one surface of the housing, and when the fixed relationship information indicates that the image capturing apparatus is fixed on the display unit side of the information processing apparatus, the image capturing apparatus is self-photographed. Control to set the mode is performed. In the self-portrait mode, a captured image that has been horizontally reversed is displayed on the display unit of the information processing apparatus.
- the fixed relationship information indicates that the imaging device is fixed in the first fixed state with respect to the information processing device, and a predetermined value based on the optical axis direction of the imaging optical system of the imaging device from the first fixed state.
- the control is performed so that the imaging devices are in different modes depending on whether the angle is fixed in the second fixed state in which rotation of approximately 90 degrees or approximately 180 degrees is performed.
- different modes include a still image capturing mode and a moving image capturing mode.
- the different modes may include a still image capturing mode for generating a still image according to a captured scene and a still image capturing mode for generating a still image from a continuous shot image.
- the landscape mode and the portrait mode are included. It may be included.
- control is performed so that a plurality of imaging devices generate captured images at different viewpoints. Is done.
- specific imaging of the imaging device is performed according to fixed relationship information indicating a fixed relationship between the imaging device and the information processing device in a fixed state in which the imaging device and the information processing device are fixed to each other.
- the imaging system includes a control unit that performs control that suggests to the user that the transition to the mode is preferable.
- a mode related to imaging of the imaging device is determined according to fixed relationship information indicating a fixed relationship between the imaging device and the information processing device in a fixed state in which the imaging device and the information processing device are fixed to each other.
- the imaging control method including the step of controlling.
- a program that causes a computer to execute control of a mode related to imaging of the imaging device, and the imaging device and the information processing device in a fixed state in which the imaging device and the information processing device are fixed to each other.
- the program causes the computer to execute a procedure for controlling a mode related to imaging of the imaging apparatus in accordance with the fixed relationship information indicating the fixed relationship.
- the program of the present technology is, for example, a storage medium or a communication medium provided in a computer-readable format to a general-purpose computer that can execute various program codes, such as an optical disk, a magnetic disk, or a semiconductor memory. It is a program that can be provided by a medium or a communication medium such as a network. By providing such a program in a computer-readable format, processing corresponding to the program is realized on the computer.
- a fifth aspect of the present technology is an imaging apparatus including a control unit that controls a mode related to imaging according to fixed relationship information indicating a fixed relationship with the information processing apparatus in a fixed state fixed to the information processing apparatus.
- the communication unit that communicates with the imaging device and the fixed relationship information indicating the fixed relationship between the imaging device in a fixed state fixed to the imaging device via the communication unit.
- the information processing apparatus includes a control unit that controls a mode related to imaging of the imaging apparatus.
- the mode related to the imaging of the imaging device is controlled according to the fixed relationship information indicating the fixed relationship between the imaging device and the information processing device in a fixed state where the imaging device and the information processing device are fixed to each other. Therefore, since the mode is set according to the fixed relationship information without performing a complicated operation for setting the mode on the imaging device or the information processing device, the mode relating to imaging can be easily set. It becomes like this. Note that the effects described in the present specification are merely examples and are not limited, and may have additional effects.
- FIG. 1 is a perspective view illustrating an external configuration of an imaging system. It is the figure which illustrated the external appearance structure of the imaging device. It is the block diagram which illustrated the functional composition of the imaging device. It is the block diagram which illustrated the functional composition of information processor (for example, smart phone). It is a sequence diagram which shows the operation
- FIG. 1 illustrates a functional configuration of the imaging system 10 of the present technology.
- the imaging system 10 includes a control unit 15 as shown in FIG.
- the control unit 15 has a function of controlling a mode related to imaging of the imaging device according to fixed relationship information indicating a fixed relationship between the imaging device and the information processing device in a fixed state where the imaging device and the information processing device are fixed to each other.
- the control unit 15 may be provided in the imaging device or in the information processing device.
- the imaging system 10 illustrated in FIG. 1B illustrates a case where the control unit 45 that performs operation control of the imaging device 20 has a function of controlling a mode related to imaging.
- the imaging system 10 illustrated in FIG. 1C illustrates a case where the control unit 85 that performs operation control of the information processing apparatus 60 has a function of controlling a mode related to imaging.
- the imaging system 10 illustrated in FIG. 1A corresponds to an imaging control device having a function of controlling a mode related to imaging
- the imaging system 10 illustrated in FIG. corresponds to the case where the image pickup apparatus 20 is provided.
- the imaging system 10 illustrated in FIG. 1C corresponds to a case where the imaging control device is provided in the information processing device 60.
- the imaging system may be provided with a fixed separation determination unit that determines whether the imaging device and the information processing device are in a fixed state or a separated state and outputs fixed separation information.
- a fixed separation determination unit 91 may be provided in the imaging apparatus 20 as illustrated in FIG. 1B, and a fixed separation determination unit 91 is provided in the information processing apparatus 60 as illustrated in FIG. May be.
- the imaging system may be provided with a fixed relationship determination unit that determines a fixed relationship between the imaging device and the information processing device and outputs fixed relationship information.
- the imaging device 20 may be provided with a fixed relationship determining unit 92
- the information processing device 60 is provided with a fixed relationship determining unit 92.
- a fixed separation determining unit 91 and a fixed relationship determining unit 92 may be provided in an adapter used to fix the imaging device and the information processing device to each other. Further, the fixed separation determination unit 91 and the fixed relationship determination unit 92 may be provided in a device different from a device having a control unit having a function of controlling the mode. For example, as in the imaging system 10 illustrated in FIG. 1B, when the control unit 45 of the imaging device 20 has a function of controlling the mode, the information processing device 60 includes the fixed separation determination unit 91. May be. Further, although not shown, a configuration in which a control unit, a fixed separation determination unit, and a fixed relationship determination unit are provided separately from the imaging device 20 and the information processing device 60 may be employed.
- the imaging device 20 can select a plurality of modes so that a desired captured image (a still image or a moving image) can be easily generated, for example.
- the imaging device 20 has a communication function.
- the imaging device 20 communicates various information with the information processing device 60 by wireless communication, for example.
- the imaging device 20 is not provided with a function for displaying a captured image generated by imaging, and the captured image is displayed on the information processing device by transmitting image information of the captured image to the information processing device. Is called.
- the imaging device 20 can perform control of a mode related to imaging based on a control signal supplied from the information processing device 60 by communication.
- the information processing device 60 is a device having a display function and a communication function.
- a mobile phone, a smartphone, a tablet terminal, a notebook personal computer, or the like can be used as the information processing device.
- the information processing device 60 processes information supplied from the imaging device 20 by wireless communication, for example.
- the information processing apparatus 60 displays a captured image based on the image information supplied from the imaging apparatus 20.
- the information processing device 60 when performing control of a mode related to imaging in the imaging device 20, the information processing device 60 generates a control signal for controlling the imaging device 20 and transmits the control signal to the imaging device 20 through communication.
- the imaging system 10 is not limited to the configuration shown in FIG.
- the imaging system 10 may be a control unit 15 alone, an imaging device 20 alone, an information processing device 60 alone, or a combination thereof.
- FIG. 2 is a diagram illustrating an external configuration of the imaging system
- FIG. 3 is a perspective view illustrating an external configuration of the imaging system
- FIG. 4 is a diagram illustrating an external configuration of the imaging apparatus. 2 and 3, for example, a smartphone is used as the information processing apparatus.
- the imaging device 20 includes an imaging optical system, an imaging unit, a signal processing unit, a communication unit, a control unit, and the like (not shown) inside an outer cylinder portion 21 formed in a cylindrical shape.
- An annular control ring 22 is provided at the front end portion of the outer cylinder portion 21.
- the imaging optical system may be an interchangeable lens.
- the imaging device 20 changes the focus position and the zoom position according to the rotation of the control ring 22. Therefore, if the control ring 22 is used, manual operations such as focus adjustment can be performed.
- a zoom button 441 and a shutter button 442 are provided on the side surface of the outer cylinder portion 21. The imaging device 20 changes the zoom position to the wide-angle side or the telephoto side according to the operation of the zoom button 441.
- the imaging device 20 performs processing for recording a still image when the shutter button 442 is operated by the user on a recording medium. Further, when in the moving image capturing mode, the imaging device 20 starts or ends the recording of the moving image according to the operation of the shutter button 442.
- the information processing apparatus 60 is formed in a substantially rectangular case shape, and has a signal processing unit, a communication unit, a control unit, etc., not shown, inside the outer casing 61.
- a display panel 62 is provided on one surface (front surface) of the outer casing 61.
- the display panel 62 is configured using a touch panel, and various functions are executed by operating predetermined positions on the display panel 62.
- the imaging device 20 is provided with an attachment mechanism unit 50 for integrally attaching the imaging device 20 and the information processing device 60.
- the attachment mechanism portion 50 is provided with attachment members 51 and 52, and is configured to be movable in the direction of the arrow FA as shown in FIG.
- the user moves the mounting members 51 and 52 in the direction of the arrow FA in accordance with the shape, size, and the like of the information processing device 60 and locks the imaging device 20 on the outer casing 61 of the information processing device 60, thereby It fixes to 60 integrally.
- 2A shows a state in which the imaging device 20 is integrally fixed to the back side of the information processing device 60
- FIG. 2B shows the front side (display) of the information processing device 60.
- the state where the imaging device 20 is integrally fixed to the panel 62 side) is shown.
- the user moves the attachment members 51 and 52 locked to the outer casing 61 of the information processing device 60 in the opposite direction to the locking direction to separate the imaging device 20 and the information processing device 60. .
- the attachment members 51 and 52 are configured to be rotatable in the direction of the arrow FB with the optical axis direction of the imaging device 20 as the center. Therefore, in the imaging system, the holding state of the imaging device 20 with respect to the information processing device 60 can be changed.
- the attachment mechanism unit 50 is not limited to being configured integrally with the imaging device 20, but is configured separately from the imaging device 20 as an adapter for integrally mounting the imaging device 20 and the information processing device 60. It may be.
- FIG. 5 is a block diagram illustrating a functional configuration of the imaging apparatus.
- the imaging device 20 includes an imaging optical system 31, an imaging unit 32, an image processing unit 33, a recording / reproducing unit 34, a power supply unit 35, a sensor unit 36, a storage unit 37, a display unit 38, a wireless communication unit 41, an operation input unit 44, A control unit 45 is provided.
- the imaging device 20 is provided with a recording medium 46.
- the recording medium 46 may be fixed to the imaging device 20 or may be provided so as to be incorporated.
- the imaging optical system 31 includes a lens group including a focus lens, a zoom lens, and the like, a diaphragm adjustment mechanism, and a drive unit that drives the lens group and the diaphragm adjustment mechanism. Further, the imaging optical system 31 may include an optical shutter mechanism, a camera shake correction mechanism, and the like.
- the imaging unit 32 is configured using an imaging device such as a CCD (Charge-Coupled Device) or a CMOS (Complementary Metal-Oxide Semiconductor).
- the imaging unit 32 converts the subject optical image formed by the imaging optical system 31 into an image signal.
- the imaging unit 32 outputs an image signal generated by photoelectric conversion to the image processing unit 33.
- the image processing unit 33 performs various signal processing on the image signal output from the imaging unit 32. For example, the image processing unit 33 performs noise removal, color tone correction, edge detection, and the like as necessary. The image processing unit 33 outputs the processed image signal to the recording / reproducing unit 34.
- the recording / reproducing unit 34 uses the recording medium 46 to record a captured image and reproduce the recorded captured image.
- the recording / reproducing unit 34 records the image signal of the still image or the moving image generated by the imaging unit 32 and processed by the image processing unit 33 on the recording medium 46.
- the recording / reproducing unit 34 reproduces still images and moving images recorded on the recording medium 46 and reads out image signals.
- the recording / reproducing unit 34 may record the image signal before being processed by the image processing unit 33 on the recording medium 46.
- the recording / reproducing unit 34 may perform an encoding process for compressing the signal amount of the image signal to be recorded on the recording medium 46 and a decoding process for the encoded data recorded on the recording medium 46.
- the power supply unit 35 includes a battery and a power supply circuit.
- the power supply unit 35 supplies power to each unit of the imaging device 20 according to a control signal output from the control unit 45.
- the sensor unit 36 detects the current position, posture, posture change, direction, and the like of the imaging device 20.
- the sensor unit 36 includes a sensor for detecting a current position, a sensor for detecting a posture and a posture change, and a sensor for detecting an orientation such as an imaging direction, and sensor information indicating a detection result. Is output to the control unit 45.
- the sensor unit 36 determines what inclination the imaging device 20 has with respect to the vertical direction and the horizontal direction, and what rotation direction the imaging device 20 uses with the optical axis of the imaging optical system 31 as a rotation axis.
- the posture is detected such as whether it is a position. Further, the sensor unit 36 detects a change in posture of the imaging device 20 and the like.
- the sensor unit 36 uses, for example, a GPS (Global Positioning System) positioning module or the like as a sensor for detecting the current position.
- the sensor unit 36 uses, for example, a three-axis acceleration sensor, an inclination sensor, a gyro sensor, or the like as a sensor for detecting a posture or a posture change, and a geomagnetic sensor or the like as a sensor for detecting the orientation in the imaging direction. Further, the sensor unit 36 may be configured to detect at least one of the current position, posture, posture change, orientation, and the like of the imaging device 20.
- the storage unit 37 is a recording medium such as a RAM (Random Access Memory) and a ROM (Read Only Memory).
- the RAM is used as a work area of the control unit 45, for example.
- the ROM stores, for example, programs for executing various controls by the control unit 45.
- the ROM and RAM store control information and the like used for performing various controls by the control unit 45.
- the display unit 38 is configured using, for example, a liquid crystal display element or the like, and displays a setting state and an operation state of the imaging device 20.
- the wireless communication unit 41 includes an NFC (Near Field Communication) communication unit 411, an NFC antenna 412, a Wi-Fi communication unit 413, and a Wi-Fi antenna 414.
- NFC Near Field Communication
- the NFC communication unit 411 is an interface that performs non-contact communication with an external device (for example, the information processing device 60) in close proximity in cooperation with the NFC antenna 412 under the control of the control unit 45.
- the NFC communication unit 411 transmits radio waves that reach a short distance of about 3 cm to 10 cm from the NFC antenna 412 or about 7 mm depending on the design, and performs NFC communication with an external device included in the radio wave reachable range.
- the NFC communication unit 411 transmits, for example, connection information (Wi-Fi Configuration) for automatic Wi-Fi connection and AAR (Android Application Record) in accordance with a Check command from an external device.
- the connection information includes an SSID (Service Set Identifier), PassKey (encryption key), etc. for Wi-Fi connection.
- the Wi-Fi communication unit 413 is an interface that performs wireless communication with surrounding external devices (for example, the information processing device 60) in cooperation with the Wi-Fi antenna 414 in accordance with control by the control unit 45. For example, in response to a Wi-Fi connection request from an external device, the Wi-Fi communication unit 413 performs Wi-Fi authentication and performs Wi-Fi communication connection establishment processing with the external device.
- the operation input unit 44 detects an operation input by the user and outputs an operation signal corresponding to the user operation to the control unit 45.
- the operation input unit 44 includes the zoom button 441 and the shutter button 442 described above, and has a configuration in which functions are assigned in advance to physical switches.
- the control unit 45 executes the program recorded in the storage unit 37, the operation signal supplied from the operation input unit 44, the control information stored in the storage unit 37, the communication result with the information processing device 60, A control signal is generated based on fixed separation information, fixed relationship information, sensor information, and the like.
- the control unit 45 outputs the generated control signal to each unit, and performs imaging control, image processing control, recording / reproduction control, and the like so that the operation according to the user operation is performed by the imaging device 20. Further, the control unit 45 performs processing for transmitting image information of the captured image from the wireless communication unit 41 to the information processing device 60 and processing for controlling the operation of the imaging device 20 based on a control signal from the information processing device 60. .
- the recording medium 46 is a memory card or the like in which captured images are written, and is detachably provided.
- the fixed separation information output from the fixed separation determination unit 91 is transmitted to the control unit 85 of the information processing device 60 via the control unit 45 or the wireless communication unit 41. Is output.
- the fixed relationship determining unit 92 is provided in the imaging device 20
- the fixed relationship information output from the fixed relationship determining unit 92 is transmitted to the control unit 85 of the information processing device 60 via the control unit 45 or the wireless communication unit 41. Is output.
- the processing of the fixed separation determination unit 91 and the fixed relationship determination unit 92 may be performed by the control unit 45.
- the control unit 45 transmits the fixed relationship information from the wireless communication unit 41 to the information processing device 60, and changes the mode related to imaging by the control signal supplied from the information processing device 60 in response to the transmission of the fixed relationship information. Control.
- a switch or the like for detecting whether the fixed state or the separated state is provided in the imaging device 20 as the fixed separation determining unit 91, and generated by this switch.
- the signal is used as fixed separation information.
- the imaging device 20 and the attachment mechanism portion 50 are separable, they are turned on when the attachment mechanism portion 50 is attached to the imaging device 20 and the attachment mechanism portion 50 is further attached to the information processing device 60.
- the imaging device 20 is provided with a switch that is in an off state when any one of them is separated as a fixed separation determination unit 91. A signal generated by this switch is used as fixed separation information.
- FIG. 6 is a block diagram illustrating a functional configuration of an information processing apparatus (for example, a smartphone).
- the information processing apparatus 60 includes a wireless communication unit 71, a voice input / output unit 72, a storage unit 73, a recording / playback unit 74, a power supply unit 75, a sensor unit 76, a display unit 77, an operation input unit 78, and a control unit 85. Yes.
- the information processing apparatus 60 is provided with a recording medium 86 in a detachable manner.
- the wireless communication unit 71 includes an NFC communication unit 711, an NFC antenna 712, a Wi-Fi communication unit 713, and a Wi-Fi antenna 714. Note that the wireless communication unit 71 may be provided with a communication unit corresponding to the cellular phone communication standard, not shown.
- the NFC communication unit 711 is an interface that performs non-contact communication with an external device (for example, the imaging device 20) in close proximity in cooperation with the NFC antenna 712 according to control by the control unit 85.
- the NFC communication unit 711 performs NFC communication with the imaging device 20 as described above.
- the Wi-Fi communication unit 712 is an interface that performs wireless communication with a surrounding external device (for example, the imaging device 20) in cooperation with the Wi-Fi antenna 714 in accordance with control by the control unit 85.
- the Wi-Fi communication unit 713 performs Wi-Fi communication connection establishment processing with the imaging device 20 as described above.
- the voice input / output unit 72 is configured using a speaker and a microphone.
- the voice input / output unit 72 performs voice input / output of a voice call performed via the wireless communication unit 71.
- the audio input / output unit 72 outputs a reproduction sound of music content or image content recorded in the storage unit 73 or the recording medium 86.
- the storage unit 73 is a recording medium such as a RAM (Random Access Memory) and a ROM (Read Only Memory).
- the RAM is used as a work area of the control unit 85, for example.
- the ROM stores, for example, programs for executing various controls by the control unit 85.
- the ROM and RAM store control information and the like used for performing various controls by the control unit 85. Further, music content, image content, various application programs, captured images supplied from the imaging device 20, mail information, and the like can be recorded in the RAM.
- the recording / reproducing unit 74 uses the recording medium 86 to record various information and to read the recorded information.
- the recording / playback unit 74 records, for example, music content, image content, captured images, mail information, address information of others used in wireless communication, and the like on the recording medium 86.
- the recording / reproducing unit 74 reads various information recorded on the recording medium 86.
- the power supply unit 75 includes a battery and a power supply circuit.
- the power supply unit 75 supplies power to each unit of the information processing apparatus 60 based on a control signal from the control unit 85.
- the sensor unit 76 detects the current position, posture, posture change, direction, and the like of the information processing device 60.
- the sensor unit 76 includes a sensor for detecting a current position, a sensor for detecting a posture and a posture change, and a sensor for detecting an orientation such as an imaging direction, and sensor information indicating a detection result. Is output to the control unit 85.
- the sensor unit 76 uses, for example, a GPS (Global Positioning System) positioning module as a sensor for detecting the current position.
- GPS Global Positioning System
- the sensor unit 76 uses, for example, a three-axis acceleration sensor, an inclination sensor, a gyro sensor, or the like as a sensor for detecting a posture or a posture change, and a geomagnetic sensor or the like as a sensor for detecting the orientation in the imaging direction. Further, the sensor unit 76 may be configured to detect at least one of the current position, posture, posture change, direction, and the like of the information processing device 60.
- the display unit 77 is configured using a display element such as a liquid crystal display or an organic EL display. Under the control of the control unit 85, the display unit 77 displays a GUI (Graphical User Interface) screen, characters and images corresponding to the operation of the application, and the like.
- GUI Graphic User Interface
- the operation input unit 78 is configured using operation switches and a touch panel.
- the touch panel is provided on the display screen of the display unit 77, and a function is assigned according to the display on the display screen.
- the operation input unit 78 generates an operation signal corresponding to the user operation and outputs it to the control unit 85.
- the above-described display panel 62 is configured by a display unit 77 and an operation input unit 78, for example.
- the control unit 85 executes the program recorded in the storage unit 73 and generates a control signal based on the operation signal supplied from the operation input unit 78, the control information stored in the storage unit 73, and the like.
- the control unit 85 outputs the generated control signal to each unit, and performs communication control, display control, recording / reproduction control, and the like so that the information processing apparatus 60 performs an operation according to the user operation.
- the control unit 85 controls the NFC communication unit 711 and the Wi-Fi communication unit 713 to perform wireless communication with the imaging device 20.
- the control unit 85 generates a control signal based on an operation signal, fixed separation information, fixed relationship information, and the like after starting a predetermined application program based on communication with the imaging device 20 and starting the program.
- the process to transmit to 20 is performed. For example, in accordance with the fixed relationship information acquired from the imaging device 20 by the wireless communication unit 71, a process of generating a control signal for controlling a mode related to imaging of the imaging device 20 and transmitting the control signal to the imaging device 20 is performed. Further, the control unit 85 performs a process of displaying the captured image supplied from the imaging device 20 on the display unit 77.
- the fixed separation information output from the fixed separation determination unit 91 is transmitted to the control unit 45 of the imaging device 20 via the control unit 85 or the wireless communication unit 71. Is output.
- the fixed relationship determining unit 92 is provided in the information processing device 60, the fixed relationship information output from the fixed relationship determining unit 92 is transmitted to the control unit 45 of the imaging device 20 via the control unit 85 or the wireless communication unit 71. Is output.
- the processing of the fixed separation determination unit 91 and the fixed relationship determination unit 92 may be performed by the control unit 85.
- the fixed separation determining unit 91 and the fixed relationship determining unit 92 display the determination result.
- the data is output to the control unit 45 of the imaging device 20 or the control unit 85 of the information processing device 60.
- the attachment members 51 and 52 of the attachment mechanism unit 50 attached to the imaging device 20 to fix the imaging device 20 to the information processing device 60 are associated with the information processing device 60.
- the information processing apparatus 60 is provided with a detection mechanism and a detection function for detecting whether or not it is stopped as the fixed separation determination unit 91.
- the fixed separation determination unit 91 uses the detection result of the detection mechanism or the like as fixed separation information.
- a detection mechanism a switch may be provided in the information processing apparatus 60, or a detection function may be realized using the display panel 62.
- the fixed separation determination unit 91 When the fixed separation determination unit 91 is provided in the attachment mechanism unit 50 that is an adapter, an attachment member for fixing the attachment mechanism unit 50 to which the imaging device 20 is attached to the information processing device 60 is locked to the information processing device 60.
- a detection mechanism for detecting whether or not there is a fixed separation determination unit 91 is provided in the attachment mechanism unit 50.
- the fixed separation determination unit 91 uses the detection result of this detection mechanism as fixed separation information. In the fixed state, since the posture change and movement of the imaging device 20 and the information processing device 60 match, it is determined whether the state is the fixed state or the separation state based on the detection result of the posture change or movement. Thus, the fixed separation information may be generated.
- FIG. 7 is a sequence diagram illustrating an operation process until the cooperation function between the imaging apparatus and the information processing apparatus is started in the imaging system.
- step ST1 the information processing apparatus 60 transmits a Polling Command by NFC communication.
- the NFC antenna of the imaging device 20 is included within a predetermined radio wave reachable range from the NFC antenna of the information processing device 60, the NFC communication unit 411 of the imaging device 20 detects the transmission of the Polling Command in step ST2.
- step ST3 the NFC communication unit 411 of the imaging device 20 sends a detection notification to the control unit 45 in response to detecting the NFC communication from the information processing device 60.
- step ST4 the control unit 45 generates a control signal according to the detection notification from the NFC communication unit 411, outputs the control signal to the power supply unit 35, and controls the power ON.
- step ST5 the NFC communication unit 411 transmits a Command Response by NFC communication in response to detection of NFC communication.
- step ST6 the information processing device 60 detects a Command Response from the imaging device 20 to find an NFC communication partner and transmits a Check Command to acquire predetermined information.
- step ST7 the NFC communication unit 411 of the imaging device 20 outputs the Check command received by NFC communication to the control unit 45.
- step ST8 the control unit 45 outputs response data to the NFC communication unit 411 in accordance with Check Command.
- the response data includes, for example, the above-described Wi-Fi Config and AAR.
- the control unit 45 performs an imaging preparation operation.
- the control unit 45 performs a preparation operation so that the imaging device 20 can perform imaging.
- a preparatory operation may be performed that makes it possible to identify that the imaging device 20 is ready to capture an image.
- the control unit 45 performs an operation of projecting the lens, an operation of outputting a startup sound, and the like.
- the imaging preparation operation may be performed after the Wi-Fi connection is completed.
- step ST11 the information processing apparatus 60 starts a predetermined application according to the received AAR. For example, in a predetermined application, an image signal of a captured image transmitted from the imaging device 20 by Wi-Fi communication is received, and a process of displaying the captured image is performed.
- step ST12 the information processing apparatus 60 requests the imaging apparatus 20 for Wi-Fi connection using the received Wi-Fi Config.
- step ST13 the Wi-Fi communication unit 413 of the imaging device 20 outputs the connection request received from the information processing device 60 to the control unit 45.
- step ST14 the control unit 45 performs Wi-Fi authentication.
- the Wi-Fi authentication may be performed by the Wi-Fi communication unit 413.
- step ST15 the control unit 45 outputs the authentication result to the Wi-Fi communication unit 413.
- step ST16 the Wi-Fi communication unit 413 transmits the authentication result to the information processing apparatus 60.
- step ST17 the information processing apparatus 60 completes the Wi-Fi connection upon successful authentication. Thereafter, the imaging device 20 and the information processing device 60 implement a cooperation function using Wi-Fi communication.
- the imaging device 20 and the information processing device 60 only need to be linked by Wi-Fi communication or the like, and the processing until the cooperation function between the imaging device and the information processing device is performed is in the order shown in FIG. Not limited.
- the imaging device 20 or the information processing device 60 performs the cooperation function
- the imaging device 20 or the information processing device 60 responds to the fixed relationship information indicating the fixed relationship between the imaging device 20 and the information processing device 60 in a fixed state in which the imaging device 20 and the information processing device 60 are fixed to each other.
- the mode related to imaging of the imaging device 20 is controlled.
- the mode related to imaging of the imaging device 20 is not controlled according to the fixed relationship information.
- the mode may be selected from the modes preset by the user according to the fixed relationship information.
- the mode preset by the user may be a mode selected by the user from modes registered in advance at the time of factory shipment, or may be a mode uniquely set by the user.
- the information processing device 60 When the fixed surface side of the imaging device 20 is brought into close contact with the front surface side of the information processing device 60, the brightness of the fixed surface side changes according to the luminance of the image displayed on the display panel 62. Therefore, when the information processing device 60 is provided with the display unit 77 and the imaging device 20 and the information processing device 60 cooperate, the information processing device 60 displays a display area corresponding to the position of the brightness detection sensor with a predetermined brightness. Say it. In this way, based on the detection result of the brightness detection sensor, it is possible to generate fixed relationship information indicating whether the imaging device 20 is fixed on the front surface side or the back surface side of the information processing device 60.
- the attachment members 51 and 52 When generating the fixed relationship information in the information processing device 60, for example, when the imaging device 20 is fixed to the back side of the information processing device 60, the attachment members 51 and 52 come into contact with the display panel 62 of the information processing device 60. Constitute.
- the display panel 62 is configured by a display unit and a touch panel as described later, it can be detected by the touch panel that the attachment members 51 and 52 are in contact. Therefore, when the information processing device 60 is provided with the display unit 77 and the imaging device 20 and the information processing device 60 cooperate, the information processing device 60 uses the touch panel as the fixed relationship determination unit 92.
- the control unit 85 of the information processing device 60 includes the display unit 77, it indicates whether the imaging device 20 is fixed to the front surface side or the back surface side of the information processing device 60 by the fixed relationship information. In this way, for example, control of the screen brightness, processing of the detection result of the touch panel, and the like are performed.
- the fixed relationship information indicating the fixed relationship between the imaging device 20 and the information processing device 60 is obtained by the imaging device 20 fixed to the information processing device 60 based on the optical axis direction of the imaging optical system of the imaging device 20 as a reference. It may be information indicating what kind of rotational position the device 60 is.
- the imaging device 20 or the mounting mechanism unit 50 is provided with a detection mechanism that detects the rotation direction of the mounting members 51 and 52 with reference to the optical axis direction of the imaging optical system of the imaging device 20. . If such a detection mechanism is provided, when the imaging device 20 is fixed to the information processing device 60 via the attachment mechanism unit 50, the detection result of the detection mechanism indicates a fixed relationship between the imaging device 20 and the information processing device 60.
- the detection result can be used as the fixed relationship information.
- the side surfaces of the information processing device 60 are attached to the mounting members 51 and 52. It is detected by the detection mechanism whether it is locked to. In this way, since the detection result of the detection mechanism indicates the fixed relationship between the imaging device 20 and the information processing device 60, the detection result can be used as the fixed relationship information.
- the fixed relationship between the imaging device 20 and the information processing device 60 is based on the detection result of the posture change and movement. May be determined to generate fixed relationship information.
- the first control operation in the mode related to imaging will be described.
- the fixed relationship between the imaging device and the information processing device for example, the imaging device is fixed to either the front side or the back side of the information processing device.
- the mode control relating to imaging is performed according to whether or not it is performed will be described.
- the imaging device 20 When the user images a desired subject located in front, the imaging device 20 is integrally fixed to the back side of the information processing device 60 as shown in FIG. In this way, it can be easily confirmed from the image displayed on the display unit 77 (display panel 62) of the information processing apparatus 60 how the desired subject located in front is captured.
- the imaging device 20 When the user takes an image of himself / herself as a subject (in the case of self-shooting), as shown in FIG. 2B, the imaging device 20 is fixed integrally to the front surface side of the information processing device 60. The user holds the imaging device 20 so that the image displayed on the display unit 77 (display panel 62) can be confirmed.
- the user can easily confirm how the user himself / herself is imaged with an image displayed on the display unit 77 (display panel 62) of the information processing device 60.
- the imaging direction of the imaging device 20 and the display direction of the captured image in the information processing device 60 are the same direction. . Therefore, in order to move the imaging range of the captured image displayed on the information processing device 60 to the right, for example, the user must move the imaging device 20 or the imaging direction of the imaging device 20 to the left.
- the imaging-related mode is set to a self-shooting mode in which the captured image is displayed with the left and right reversed.
- the self-portrait mode the captured image is displayed horizontally reversed, so that the information processing apparatus with respect to movement in the imaging direction of the imaging apparatus 20 or the imaging apparatus 20 (hereinafter referred to as “movement of the imaging apparatus 20”).
- the movement of the imaging range of the captured image displayed at 60 is in the same direction.
- FIG. 8 is a flowchart showing processing when the first control operation is performed by the control unit of the imaging apparatus.
- step ST21 the control unit 45 determines whether the imaging device 20 and the information processing device 60 are fixed.
- the control unit 45 proceeds to step ST22 when determining that the imaging device 20 and the information processing device 60 are fixed based on the fixed separation information output from the fixed separation determination unit 91, and when determining that the imaging device 20 and the information processing device 60 are separated. Proceed to step ST25.
- step ST22 the control unit 45 determines whether the imaging device 20 is fixed to the front side of the information processing device 60.
- the control unit 45 proceeds to step ST23 when determining that the imaging device 20 is fixed to the front surface side of the information processing device 60 based on the fixed relationship information output from the fixed relationship determination unit 92.
- step ST25 the process proceeds to step ST25.
- step ST23 the control unit 45 sets the mode related to imaging to the self-shooting mode.
- the self-portrait mode is a mode in which the user himself / herself is imaged, and the subject is in close proximity. Therefore, for example, when the zoom position is on the telephoto side, only a part of the face is imaged, and the whole cannot be confirmed. Therefore, the control unit 45 moves the zoom position to the wide angle side, for example, the wide angle side end when setting the self-portrait mode. Further, since the self-portrait mode is a mode for capturing an image of the user, the control unit 45 performs control suitable for capturing a person. Further, the control unit 45 controls the image processing unit 33 to perform image processing so that the skin is expressed beautifully. The control unit 45 sets the mode related to imaging to the self-shooting mode, and proceeds to step ST24.
- step ST24 the control unit 45 transmits the live view image while being reversed left and right.
- the imaging direction of the imaging device 20 and the display direction of the captured image in the information processing device 60 are the same direction. Therefore, the control unit 45 reverses the live view image left and right so that the movement of the imaging range of the captured image displayed on the information processing device 60 with respect to the movement of the imaging device 20 and the like is in the same direction.
- the wireless communication unit 41 performs information processing. You may transmit to the apparatus 60.
- the recording / reproducing unit 34, 74 records an image that has not been horizontally reversed.
- the control unit 45 sets the mode relating to imaging to a mode selected in advance by a user operation or the like.
- the control unit 45 sets the mode relating to imaging to a mode selected in advance, for example, the mode selected at the end of the previous operation or the mode selected by the user operation of the operation input units 44 and 78, and proceeds to step ST26. .
- step ST26 the control unit 45 transmits a live view image.
- the control unit 45 transmits the live view image from the wireless communication unit 41 to the information processing device 60 without horizontally flipping the live view image.
- FIG. 9 is a flowchart showing a process when the first control operation is performed by the control unit of the information processing apparatus.
- step ST31 the control unit 85 determines whether the imaging device 20 and the information processing device 60 are fixed.
- the control unit 85 proceeds to step ST32 when determining that the imaging device 20 and the information processing device 60 are fixed based on the fixed separation information output from the fixed separation determination unit 91, and when determining that the imaging device 20 and the information processing device 60 are separated. Proceed to step ST35.
- step ST32 the control unit 85 determines whether the imaging device 20 is fixed to the front side of the information processing device 60.
- the control unit 85 determines that the imaging device 20 is fixed on the front side of the information processing device 60 based on the fixed relationship information output from the fixed relationship determination unit 92, the control unit 85 proceeds to step ST33.
- the process proceeds to step ST35.
- step ST33 the control unit 85 issues a setting instruction for the self-portrait mode.
- the control unit 85 instructs the imaging apparatus 20 to set the self-shooting mode via the wireless communication unit 71, and proceeds to step ST34.
- the control unit 45 of the imaging device 20 sets the mode relating to imaging to the self-portrait mode as described above based on the instruction to set the self-portrait mode.
- step ST34 the control unit 85 displays the live view image with the left and right reversed.
- the imaging direction of the imaging device 20 and the display direction of the captured image in the information processing device 60 are the same direction. Therefore, the control unit 85 causes the display unit 77 to invert the live view image horizontally so that the movement of the imaging range of the captured image displayed on the information processing apparatus 60 with respect to the movement of the imaging apparatus 20 is the same direction. Display. Note that when the control unit 85 instructs the imaging apparatus 20 to set the self-portrait mode as described above and transmits a live view image that is horizontally reversed from the imaging apparatus 20, the live view from the imaging apparatus 20 is transmitted. The image is displayed on the display unit 77 without being reversed horizontally.
- step ST35 the control unit 85 issues a setting instruction for the mode selected in advance.
- the control unit 85 instructs the imaging apparatus 20 to set the mode selected in advance via the wireless communication unit 71, and proceeds to step ST36.
- the control unit 45 of the imaging device 20 sets a mode related to imaging based on, for example, the mode at the end of the previous operation or the user operation of the operation input units 44 and 78 based on a setting instruction for a mode selected in advance. Set to.
- FIG. 10 illustrates the operation state of the imaging system.
- 10A shows a case where the imaging device 20 is fixed on the front surface side of the information processing device 60.
- FIG. 10B shows a case where the imaging device 20 is fixed on the back surface side of the information processing device 60. Is the case.
- a live view image is displayed in the same manner as a conventional imaging device having a display function of a captured image.
- the self-portrait mode is set, and the live view image is displayed horizontally reversed. Therefore, the live view image displayed on the information processing apparatus 60 is similar to the self-view image displayed in the mirror, and the imaging range can be easily set.
- the self-portrait mode is automatically set. Therefore, the user does not need to perform a setting operation for setting the mode relating to imaging to the self-portrait mode after fixing the imaging device 20 to the front side of the information processing device 60, and can easily set the mode to a desired mode. .
- the imaging device 20 is fixed to the front surface side of the information processing device 60 and is automatically set to the self-portrait mode is exemplified.
- the mode control relating to imaging is not limited to being performed automatically, and the mode may be changed after receiving a user's transition instruction.
- FIG. 11 is a flowchart showing another process when the first control operation is performed by the control unit of the imaging apparatus.
- step ST41 the control unit 45 determines whether the imaging device 20 and the information processing device 60 are fixed.
- the control unit 45 proceeds to step ST42 when determining that the imaging device 20 and the information processing device 60 are fixed based on the fixed separation information output from the fixed separation determination unit 91, and when determining that the imaging device 20 and the information processing device 60 are separated. Proceed to step ST47.
- step ST42 the control unit 45 determines whether the imaging device 20 is fixed to the front side of the information processing device 60.
- the control unit 45 proceeds to step ST43 when determining that the imaging device 20 is fixed to the front surface side of the information processing device 60 based on the fixed relationship information output from the fixed relationship determination unit 92. If it is determined that the surface is fixed to a different surface, the process proceeds to step ST47.
- step ST43 the control unit 45 performs a self-portrait mode suggestion notification process.
- the control unit 45 transmits suggestion information indicating that it is preferable to change the mode relating to imaging to the self-portrait mode to the information processing device 60 via the wireless communication unit 41, and proceeds to step ST44.
- the information processing device 60 Based on the suggestion information from the imaging device 20, the information processing device 60 notifies the user that it is preferable to shift to the self-portrait mode using the display unit 77, for example.
- step ST44 the control unit 45 determines whether there is a transition instruction.
- the control unit 45 proceeds to step ST45 when there is a transition instruction, and proceeds to step ST47 when there is no transition instruction.
- the control unit 85 generates instruction result information based on the user operation and generates the instruction result information from the wireless communication unit 71. It transmits to the imaging device 20.
- the control unit 45 of the imaging device 20 proceeds to step ST45 when the instruction result information indicates a transition instruction, and proceeds to step ST47 when the instruction result information does not indicate a transition instruction.
- the information processing apparatus 60 for example, if a user operation for the notification is not performed even after a predetermined time has elapsed after notifying that it is preferable to transition to the self-portrait mode, for example, an instruction to transition to the self-portrait mode.
- the instruction result information may be generated as being performed.
- step ST45 the control unit 45 sets the mode relating to imaging to the self-shooting mode, and proceeds to step ST46.
- the control unit 45 moves the zoom position to the wide angle side, for example, the wide angle side end when setting the self-portrait mode.
- the control unit 45 causes the image processing to be performed so that the skin is beautifully expressed, for example, by the control suitable for the imaging of the person or the image processing unit 33.
- step ST46 the control unit 45 transmits the live view image with right and left reversed.
- the imaging direction of the imaging device 20 and the display direction of the captured image in the information processing device 60 are the same direction. Therefore, the control unit 45 reverses the live view image left and right so that the movement of the imaging range of the captured image displayed on the information processing device 60 with respect to the movement of the imaging device 20 and the like is in the same direction. To the information processing apparatus 60.
- the control unit 45 sets the mode relating to imaging to a mode selected in advance by a user operation or the like.
- the control unit 45 sets the mode relating to imaging to a mode selected in advance, for example, the mode selected at the end of the previous operation or the mode selected by the user operation of the operation input units 44 and 78, and proceeds to step ST48. .
- step ST48 the control unit 45 transmits a live view image.
- the control unit 45 transmits the live view image from the wireless communication unit 41 to the information processing device 60 without horizontally flipping the live view image.
- FIG. 12 is a flowchart showing another process when the first control operation is performed by the control unit of the information processing apparatus.
- step ST51 the control unit 85 determines whether the imaging device 20 and the information processing device 60 are fixed.
- the control unit 85 proceeds to step ST52 when determining that the imaging device 20 and the information processing device 60 are fixed based on the fixed separation information output from the fixed separation determination unit 91, and when determining that the imaging device 20 and the information processing device 60 are separated. Proceed to step ST57.
- step ST52 the control unit 85 determines whether the imaging device 20 is fixed to the front surface side of the information processing device 60.
- the control unit 85 proceeds to step ST53 when determining that the imaging device 20 is fixed to the front surface side of the information processing device 60 based on the fixed relationship information output from the fixed relationship determination unit 92.
- step ST57 the process proceeds to step ST57.
- step ST53 the control unit 85 suggests transition to the self-shooting mode.
- the control unit 85 notifies the user, for example, using the display unit 77 that it is preferable to change the mode relating to imaging to the self-portrait mode, and proceeds to step ST54.
- step ST55 the control unit 85 issues a setting instruction for the self-shooting mode.
- the control unit 85 instructs the imaging apparatus 20 to set the self-shooting mode via the wireless communication unit 71, and proceeds to step ST56.
- the control unit 45 of the imaging device 20 sets the mode relating to imaging to the self-portrait mode as described above based on the instruction to set the self-portrait mode.
- step ST56 the control unit 85 displays the live view image in a horizontally reversed manner.
- the imaging direction of the imaging device 20 and the display direction of the captured image in the information processing device 60 are the same direction. Therefore, the control unit 85 causes the display unit 77 to invert the live view image horizontally so that the movement of the imaging range of the captured image displayed on the information processing apparatus 60 with respect to the movement of the imaging apparatus 20 is the same direction. Display.
- the control unit 85 issues a setting instruction for a preselected mode.
- the control unit 85 instructs the imaging apparatus 20 to set the mode selected in advance via the wireless communication unit 71, and proceeds to step ST58.
- the control unit 45 of the imaging device 20 sets a mode related to imaging based on, for example, the mode at the end of the previous operation or the user operation of the operation input units 44 and 78 based on a setting instruction for a mode selected in advance. Set to mode.
- step ST58 the control unit 85 displays a live view image.
- the control unit 85 displays the live view image on the display unit 77 without reversing the left and right.
- the user is instructed that a transition to a specific imaging mode of the imaging device is preferable according to the fixed relationship information indicating the fixed relationship between the imaging device and the information processing device, the user is considered in consideration of this suggestion.
- the mode desired by the user is different from the preferred mode, it is possible to prevent the mode from being automatically set to a mode different from the desired mode.
- FIG. 13 is a flowchart showing processing when the second control operation is performed by the control unit of the imaging apparatus.
- step ST61 the control unit 45 determines whether the imaging device 20 and the information processing device 60 are fixed.
- the control unit 45 proceeds to step ST62 when determining that the imaging device 20 and the information processing device 60 are fixed based on the fixed separation information output from the fixed separation determination unit 91, and when determining that the imaging device 20 and the information processing device 60 are separated. Proceed to step ST66.
- step ST62 the control unit 45 determines in what posture the imaging device 20 is fixed with respect to the information processing device 60. Based on the fixed relationship information output from the fixed relationship determination unit 92, the control unit 45 proceeds to step ST63 when the imaging device 20 and the information processing device 60 are in the fixed state in which the reference directions match. Further, the control unit 45 proceeds to step ST64 when the reference direction of the imaging device 20 and the information processing device 60 is in a fixed state in which a difference of the predetermined angle AGa is generated based on the fixed relationship information. Furthermore, the control unit 45 proceeds to step ST65 when the reference direction of the imaging device 20 and the information processing device 60 is in a fixed state in which a difference of a predetermined angle AGb larger than the predetermined angle AGa is generated.
- step ST63 the control unit 45 sets the mode related to imaging to the first imaging mode.
- step ST64 the control unit 45 sets the mode related to imaging to a second imaging mode different from the first imaging mode.
- step ST65 the control unit 45 sets the mode related to imaging to a third imaging mode different from the first imaging mode and the second imaging mode.
- control unit 45 sets the mode related to imaging to a mode selected in advance by a user operation or the like.
- the control unit 45 sets the mode related to imaging to a mode selected in advance, for example, a mode selected at the end of the previous operation or a mode selected by a user operation of the operation input units 44 and 78.
- the mode control operation may be performed by the control unit 85 of the information processing apparatus 60.
- the processing of steps ST61 and 62 is performed by the control unit 85.
- the control unit 85 issues a setting instruction to set the mode related to imaging to the first imaging mode.
- the control unit 85 issues a setting instruction for setting the mode related to imaging to the second imaging mode.
- the control unit 85 issues a setting instruction to set the mode related to imaging to the third imaging mode. Do. Further, the control unit 45 of the imaging device 20 performs mode setting related to imaging based on the setting instruction.
- the setting instruction is transmitted from the information processing device 60 to the imaging device 20 by wireless communication.
- the determination of the fixed relationship and the mode control operation may be performed by another device.
- the fixed relationship determination unit 92 is provided in the information processing device 60, and the fixed relationship information output from the fixed relationship determination unit 92 is transmitted to the imaging device 20.
- the imaging device 20 performs mode control based on the received fixed relationship information.
- FIG. 14 illustrates the fixed relationship between the imaging device and the information processing device.
- the arrow FC illustrates the reference direction of the imaging device 20
- the arrow FS illustrates the reference direction of the information processing device.
- FIG. 14A illustrates a case where the reference directions of the imaging device 20 and the information processing device 60 match.
- FIG. 14B illustrates a case where the reference direction between the imaging device 20 and the information processing device 60 has a difference of a predetermined angle AGa (for example, approximately 90 degrees).
- FIG. 14C illustrates a case where the reference direction between the imaging device 20 and the information processing device 60 has a difference of a predetermined angle AGb (for example, approximately 180 degrees).
- the control unit 45 controls each unit of the imaging device 20 so as to perform imaging in the first imaging mode.
- the first imaging mode for example, a still image corresponding to the imaging scene is generated.
- the mode of the imaging apparatus 20 is controlled so as to automatically select a mode corresponding to the imaging scene from a plurality of modes preset by the user and to capture a still image in the automatically selected mode.
- the mode preset by the user may be a mode selected by the user from modes registered in advance at the time of factory shipment, or may be a mode uniquely set by the user.
- the control unit 45 performs the first imaging.
- Each part of the imaging device 20 is controlled to perform imaging in a second imaging mode different from the mode.
- the second imaging mode for example, still images are generated using continuous shot images.
- each part of the imaging device 20 is controlled so that a continuous image is synthesized and a still image on which noise and camera shake reduction processing, backlight correction, and the like are performed can be generated.
- the control unit 45 performs a third imaging mode different from the first and second imaging modes.
- a predetermined angle AGb for example, 180 degrees
- Each part of the imaging device 20 is controlled so as to perform imaging.
- the third imaging mode for example, a moving image is generated.
- the above-described fixed relationship between the imaging device and the information processing device and the relationship between the modes related to imaging are examples, and other modes may be set according to the fixed relationship.
- the longitudinal direction of the captured image generated by the imaging device 20 and the longitudinal direction of the display image of the information processing device 60 are equal.
- the information processing apparatus 60 displays the landscape or the like with the longitudinal direction of the display image being the horizontal direction.
- the control unit 45 sets, for example, a mode relating to imaging to the landscape mode, and performs an operation suitable for imaging a still image such as a landscape. Control each part. Further, as shown in FIG. 14B, if the difference between the reference directions of the imaging device 20 and the information processing device 60 is a predetermined angle AGa (for example, approximately 90 degrees), the captured image generated by the imaging device 20 is shortened. Assume that the hand direction and the longitudinal direction of the display image of the information processing apparatus 60 are equal. In this case, when a person or the like is imaged so that the longitudinal direction of the captured image is the horizontal direction, the information processing apparatus 60 displays the person or the like with the longitudinal direction of the display image being the vertical direction. That is, since this case corresponds to a vertically placed state, the control unit 45 sets, for example, a mode relating to imaging to the portrait mode, and performs an operation suitable for imaging a still image such as a person. 20 units are controlled.
- AGa for example, approximately 90 degrees
- control operation is performed in the first to third imaging modes may be set in advance or may be set freely by the user.
- FIG. 15 is a flowchart illustrating processing when the third control operation is performed by the control unit of the imaging apparatus.
- step ST71 the control unit 45 determines whether the imaging device 20 and the information processing device 60 are fixed.
- the control unit 45 proceeds to step ST72 when determining that the imaging device 20 and the information processing device 60 are fixed based on the fixed separation information output from the fixed separation determination unit 91, and when determining that the imaging device 20 and the information processing device 60 are separated. Proceed to step ST74.
- step ST72 the control unit 45 determines whether or not the fixed state is suitable for 3D imaging. For example, when information indicating that another imaging device is fixed on the same surface side is supplied from the information processing device 60, the control unit 45 determines that the 3D imaging is in a fixed state and proceeds to step ST73. move on. If the controller 45 does not determine that another imaging device is fixed on the same surface side, the controller 45 proceeds to step ST74.
- the control unit 45 sets the mode related to imaging to the 3D imaging mode.
- the 3D imaging mode captured images of different viewpoints are generated by a plurality of imaging devices. Therefore, the control unit 45 performs control so as to perform an imaging operation that is consistent with other imaging devices. For example, the control unit 45 matches the timing of starting and ending imaging, zoom position, aperture, focus control, image processing, and the like with other imaging devices, and generates captured images of different viewpoints.
- step ST74 the control unit 45 sets the mode related to imaging to the 2D imaging mode.
- the 2D imaging mode captured images are individually generated by other imaging devices. Therefore, even if other imaging devices are fixed to the information processing device 60, the control unit 45 independently generates a captured image or the like.
- some controls such as timing may be matched in each imaging apparatus.
- the mode control operation may be performed by the control unit 85 of the information processing apparatus 60.
- the processing of steps ST71 and 72 is performed by the control unit 85.
- the control unit 85 instructs each imaging device to shift the mode related to imaging to the 3D imaging mode.
- the control unit 85 instructs the imaging device to change the mode related to imaging to the 2D imaging mode. Do it.
- the 3D imaging mode may be set when the interval between the plurality of imaging devices is a predetermined interval.
- the interval between the imaging devices can be increased as compared with the case where a smartphone is used.
- interval of an imaging device differs by the case where a tablet terminal is used, and the case where a smart phone is used, and the produced
- step ST ⁇ b> 73 when two imaging devices 20 are fixed on the back side of the information processing device 60 at a desired interval, the process proceeds to step ST ⁇ b> 73, and when it is narrower or wider than the desired interval, step is performed. Go to ST74.
- a plurality of imaging devices are fixed on the same surface side of the information processing device 60 can be determined based on fixed separation information and fixed relationship information. Further, the interval between the imaging devices 20 may be determined by providing a ranging sensor in the imaging device 20 or the attachment mechanism unit 50, for example. Further, it may be determined that an adapter that can fix a plurality of imaging devices to the information processing device 60 at a desired interval is used.
- the information processing device 60 performs parallax estimation based on the captured images from the plurality of fixed imaging devices 20, and the estimation result indicates a desired parallax, it is determined that the fixed state is capable of 3D imaging. Good. If the desired interval is set based on the binocular interval and the 3D imaging mode is set when the desired interval is fixed, the interval is too narrow and the parallax between the images of the multiple viewpoints is too small. The parallax is not too large between images of a plurality of viewpoints because the interval is too wide. Therefore, comfortable stereoscopic viewing is possible.
- the 3D imaging mode and the 2D imaging mode are set according to the fixed relationship of the imaging device 20 fixed to the information processing device 60. Accordingly, 3D images can be captured simply by fixing a plurality of imaging devices 20 to the information processing device 60, and it is troublesome to generate a captured image of each viewpoint by individually setting a mode related to imaging of the plurality of imaging devices 20. Operation is unnecessary.
- the series of processes described in the specification can be executed by hardware, software, or a combined configuration of both.
- a program in which a processing sequence is recorded is installed and executed in a memory in a computer incorporated in dedicated hardware.
- the program can be installed and executed on a general-purpose computer capable of executing various processes.
- the program can be recorded in advance on a hard disk, SSD (Solid State Drive), or ROM (Read Only Memory) as a recording medium.
- the program is a flexible disk, a CD-ROM (Compact Disc Read Only Memory), an MO (Magneto optical disc), a DVD (Digital Versatile Disc), a BD (Blu-Ray Disc (registered trademark)), a magnetic disk, or a semiconductor memory card. It can be stored (recorded) in a removable recording medium such as temporarily or permanently. Such a removable recording medium can be provided as so-called package software.
- the program may be transferred from the download site to the computer wirelessly or by wire via a network such as a LAN (Local Area Network) or the Internet.
- the computer can receive the program transferred in this way and install it on a recording medium such as a built-in hard disk.
- the imaging system of this technique can also take the following structures.
- a control unit that controls a mode related to imaging of the imaging device according to fixed relationship information indicating a fixed relationship between the imaging device and the information processing device in a fixed state in which the imaging device and the information processing device are fixed to each other.
- An imaging system provided.
- the information processing apparatus includes a display unit on one surface of a housing, the control unit includes the fixed relation information, and the imaging apparatus is fixed to the display unit side of the information processing apparatus. If this is the case, the imaging system according to any one of (1) to (5), wherein the imaging apparatus is controlled to a self-portrait mode.
- the control unit causes the display unit to display a captured image that is horizontally reversed in the self-portrait mode.
- the control unit determines whether the imaging device is in the first fixed state. (1) to (1) to (1) to (1) to (3) controlling the imaging device to different modes in the case where the imaging optical system is fixed in the second fixed state in which the rotation is performed at a predetermined angle with respect to the optical axis direction of the imaging optical system.
- the imaging system according to any one of 7). (9) The imaging system according to (8), wherein the different modes include a still image capturing mode and a moving image capturing mode.
- the rotation at the predetermined angle is approximately 90 degrees or approximately 180 degrees.
- the control unit may have different viewpoints for the plurality of imaging devices.
- the imaging device does not have a function of displaying a captured image generated by the imaging, and the information processing device is obtained by the imaging device by communication between the imaging device and the information processing device.
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Abstract
Description
1.撮像システムの機能構成
2.撮像システムの外観
3.撮像装置の機能構成
4.情報処理装置の機能構成
5.撮像システムの動作
5-1.撮像装置と情報処理装置との連携について
5-2.撮像に関するモードの制御動作ついて
5-2-1.第1の制御動作ついて
5-2-2.第2の制御動作ついて
5-2-3.第3の制御動作ついて
図1は、本技術の撮像システム10の機能構成を例示している。撮像システム10は、図1の(A)に示すように制御部15を備えている。制御部15は、撮像装置と情報処理装置が互いに固定された固定状態における撮像装置と情報処理装置の固定関係を示す固定関係情報に応じて、撮像装置の撮像に関するモードを制御する機能を有している。撮像システム10では、制御部15を撮像装置に設けてもよく、情報処理装置に設けてもよい。また、撮像装置と情報処理装置を互いに固定するために用いられるアダプタに設けてもよい。例えば図1の(B)に示す撮像システム10は、撮像装置20の動作制御を行う制御部45に対して、撮像に関するモードを制御する機能を持たせた場合を例示している。また、例えば図1の(C)に示す撮像システム10は、情報処理装置60の動作制御を行う制御部85に対して、撮像に関するモードを制御する機能を持たせた場合を例示している。なお、図1の(A)に示す撮像システム10は、撮像に関するモードを制御する機能を有する撮像制御装置に相当しており、図1の(B)に示す撮像システム10は、撮像制御装置を撮像装置20に設けた場合に相当する。また、図1の(C)に示す撮像システム10は、撮像制御装置を情報処理装置60に設けた場合に相当する。
図2は、撮像システムの外観構成を例示した図であり、図3は、撮像システムの外観構成を例示した斜視図である。図4は、撮像装置の外観構成を例示した図である。なお、図2,図3では、情報処理装置として例えばスマートフォンを用いている。
次に、撮像装置の機能構成について説明する。図5は撮像装置の機能構成を例示したブロック図である。
次に、情報処理装置の機能構成について説明する。図6は情報処理装置(例えばスマートフォン)の機能構成を例示したブロック図である。
[5-1.撮像装置と情報処理装置との連携について]
次に、撮像システムの動作について説明する。図7は、撮像システムにおいて、撮像装置と情報処理装置との連携機能が開始されるまでの動作処理を示すシーケンス図である。
次に撮像に関するモードの制御動作について説明する。撮像装置20または情報処理装置60は連携機能の実施後、撮像装置20と情報処理装置60が互いに固定された固定状態における撮像装置20と情報処理装置60の固定関係を示す固定関係情報に応じて、撮像装置20の撮像に関するモードを制御する。また、撮像装置20と情報処理装置60が分離状態では、固定関係情報に応じて撮像装置20の撮像に関するモードの制御を行わないようにする。さらに、撮像に関するモードの制御では、ユーザがプリセットしたモードから固定関係情報に応じてモードを選択してもよい。なお、ユーザがプリセットしたモードは、工場出荷時に予め登録されているモードからユーザが選択したモードでもよく、ユーザが独自に設定したモードでもよい。
次に撮像に関するモードの第1の制御動作について説明する。第1の制御動作では、撮像装置と情報処理装置が固定状態である場合に、撮像装置と情報処理装置との固定関係、例えば撮像装置が情報処理装置の表面側または裏面側の何れに固定されているかに応じて、撮像に関するモードの制御を行う場合について説明する。
次に撮像に関するモードの第2の制御動作について説明する。第2の制御動作では、撮像装置と情報処理装置が固定状態である場合において、情報処理装置に対して撮像装置がどのような姿勢で固定されているか応じて撮像に関するモードの制御を行う場合について説明する。
次に撮像に関するモードの第3の制御動作について説明する。第3の制御動作では、撮像装置と情報処理装置が固定状態である場合において、情報処理装置の同一面に撮像装置を複数台、例えば2台固定されている状態であるか応じて撮像に関するモードの制御を行う場合について説明する。
(1) 撮像装置と情報処理装置が互いに固定された固定状態における前記撮像装置と前記情報処理装置の固定関係を示す固定関係情報に応じて、前記撮像装置の撮像に関するモードを制御する制御部を備える撮像システム。
(2) 前記撮像装置と前記情報処理装置が、前記固定状態と互いに分離した分離状態との間で切り替え可能である(1)に記載の撮像システム。
(3) 前記固定状態と前記分離状態の何れであるかを判別する固定分離判別部をさらに備える(1)または(2)の何れかに記載の撮像システム。
(4) 前記制御部は、前記分離状態である場合には、前記撮像に関するモードの制御を行わない(1)乃至(3)の何れかに記載の撮像システム。
(5) 前記固定関係を判別して前記固定関係情報を出力する固定関係判別部をさらに備える(1)乃至(4)の何れかに記載の撮像システム。
(6) 前記情報処理装置は、筐体の一方の面に表示部を備え、前記制御部は、前記固定関係情報が、前記情報処理装置の前記表示部側に前記撮像装置が固定されていることを示す場合、前記撮像装置を自分撮りモードに制御する(1)乃至(5)の何れかに記載の撮像システム。
(7) 前記制御部は、前記自分撮りモードにおいて、前記表示部に、左右反転が行われた撮像画像を表示させる(6)に記載の撮像システム。
(8) 前記制御部は、前記固定関係情報が、前記情報処理装置に対して前記撮像装置が第1固定状態で固定されていることを示す場合と、前記第1固定状態から前記撮像装置の撮像光学系の光軸方向を基準として所定角度の回転が行われている第2固定状態で固定されていることを示す場合とで、前記撮像装置を互いに異なるモードに制御する(1)乃至(7)の何れかに記載の撮像システム。
(9) 前記互いに異なるモードは、静止画撮像モードと動画撮像モードを含む(8)に記載の撮像システム。
(10) 前記互いに異なるモードは、撮像シーンに応じた静止画の生成を行う静止画撮像モードと、連写画像から静止画を生成する静止画撮像モードを含む(8)に記載の撮像システム。
(11) 前記互いに異なるモードは、ランドスケープモードとポートレートモードを含む(8)に記載の撮像システム。
(12) 前記所定角度の回転は、略90度または略180度である(8)に記載の撮像システム。
(13) 前記制御部は、前記固定関係情報が、前記情報処理装置の筐体の1つの面に複数の前記撮像装置が保持されていることを示す場合、前記複数の撮像装置で互いに異なる視点の撮像画像を生成するモードに制御する(1)乃至(12)の何れかに記載の撮像システム。
(14) 前記撮像装置は、前記撮像によって生成される撮像画像を表示する機能を持たず、前記情報処理装置は、前記撮像装置と前記情報処理装置との間の通信によって前記撮像装置で得られた撮像画像を表示する(1)乃至(13)の何れかに記載の撮像システム。
(15) 前記撮像に関するモードの制御では、予めユーザが設定したモードを前記固定関係情報に応じて選択する(1)乃至(14)の何れかに記載の撮像システム。
15・・・制御部
20・・・撮像装置
21・・・外筒部
22・・・コントロールリング
31・・・撮像光学系
32・・・撮像部
33・・・画像処理部
34,74・・・記録再生部
35、75・・・電源部
36,76・・・センサ部
37,73・・・記憶部
38,77・・・表示部
41,71・・・無線通信部
44,78・・・操作入力部
45,85・・・制御部
46,86・・・記録媒体
50・・・取付機構部
51,52・・・取付部材
60・・・情報処理装置
61・・・外筐
62・・・表示パネル
72・・・音声入出力部
91・・・固定分離判別部
92・・・固定関係判別部
441・・・ズームボタン
442・・・シャッターボタン
Claims (24)
- 撮像装置と情報処理装置が互いに固定された固定状態における前記撮像装置と前記情報処理装置の固定関係を示す固定関係情報に応じて、前記撮像装置の撮像に関するモードを制御する制御部を
備える撮像システム。 - 前記撮像装置と前記情報処理装置が、前記固定状態と互いに分離した分離状態との間で切り替え可能である
請求項1記載の撮像システム。 - 前記固定状態と前記分離状態の何れであるかを判別する固定分離判別部をさらに備える
請求項2記載の撮像システム。 - 前記制御部は、前記分離状態である場合には、前記撮像に関するモードの制御を行わない
請求項3記載の撮像システム。 - 前記固定関係を判別して前記固定関係情報を出力する固定関係判別部をさらに備える
請求項1記載の撮像システム。 - 前記情報処理装置は、筐体の一方の面に表示部を備え、
前記制御部は、前記固定関係情報が、前記情報処理装置の前記表示部側に前記撮像装置が固定されていることを示す場合、前記撮像装置を自分撮りモードに制御する
請求項1記載の撮像システム。 - 前記制御部は、前記自分撮りモードにおいて、前記表示部に、左右反転が行われた撮像画像を表示させる
請求項6記載の撮像システム。 - 前記制御部は、前記固定関係情報が、前記情報処理装置に対して前記撮像装置が第1固定状態で固定されていることを示す場合と、前記第1固定状態から前記撮像装置の撮像光学系の光軸方向を基準として所定角度の回転が行われている第2固定状態で固定されていることを示す場合とで、前記撮像装置を互いに異なるモードに制御する
請求項1記載の撮像システム。 - 前記互いに異なるモードは、静止画撮像モードと動画撮像モードを含む
請求項8記載の撮像システム。 - 前記互いに異なるモードは、撮像シーンに応じた静止画の生成を行う静止画撮像モードと、連写画像から静止画を生成する静止画撮像モードを含む
請求項8記載の撮像システム。 - 前記互いに異なるモードは、ランドスケープモードとポートレートモードを含む
請求項8記載の撮像システム。 - 前記所定角度の回転は、略90度または略180度である
請求項8記載の撮像システム。 - 前記制御部は、前記固定関係情報が、前記情報処理装置の筐体の1つの面に複数の前記撮像装置が保持されていることを示す場合、前記複数の撮像装置で互いに異なる視点の撮像画像を生成するモードに制御する
請求項1記載の撮像システム。 - 前記撮像装置は、前記撮像によって生成される撮像画像を表示する機能を持たず、
前記情報処理装置は、前記撮像装置と前記情報処理装置との間の通信によって前記撮像装置で得られた撮像画像を表示する
請求項1記載の撮像システム。 - 前記撮像に関するモードの制御では、ユーザがプリセットしたモードを前記固定関係情報に応じて選択する
請求項1記載の撮像システム。 - 撮像装置と情報処理装置が互いに固定された固定状態における前記撮像装置と前記情報処理装置の固定関係を示す固定関係情報に応じて、前記撮像装置の特定の撮像に関するモードへの遷移が好ましいことをユーザに示唆する制御を行う制御部を
備える撮像システム。 - 撮像装置と情報処理装置が互いに固定された固定状態における前記撮像装置と前記情報処理装置の固定関係を示す固定関係情報に応じて、前記撮像装置の撮像に関するモードを制御する工程を
含む撮像制御方法。 - 撮像装置の撮像に関するモードの制御をコンピュータで実行させるプログラムであって、
前記撮像装置と情報処理装置が互いに固定された固定状態における前記撮像装置と前記情報処理装置の固定関係を示す固定関係情報に応じて、前記撮像装置の撮像に関するモードを制御する手順を
前記コンピュータで実行させるプログラム。 - 情報処理装置に固定された固定状態における前記情報処理装置との固定関係を示す固定関係情報に応じて、撮像に関するモードを制御する制御部を
備える撮像装置。 - 前記撮像によって生成される撮像画像を表示する機能を持たない
請求項19記載の撮像装置。 - 前記情報処理装置と通信を行う通信部と、
前記固定関係を判別して前記固定関係情報を生成する固定関係判別部を備え、
前記制御部は、前記通信部から前記固定関係情報を前記情報処理装置へ送信し、前記固定関係情報を送信したことに応じて前記情報処理装置から供給された制御信号によって前記撮像に関するモードを制御する
請求項19記載の撮像装置。 - 撮像装置と通信を行う通信部と、
前記撮像装置に固定された固定状態における前記撮像装置との固定関係を示す固定関係情報に応じて、前記通信部を介して前記撮像装置の撮像に関するモードを制御する制御部を
備える情報処理装置。 - 前記制御部は、前記通信部によって前記撮像装置から取得した前記固定関係情報に応じて、前記撮像装置の撮像に関するモードを制御する
請求項22記載の情報処理装置。 - 筐体の一方の面に、前記通信部を介して前記撮像装置から取得した撮像画像を表示する表示部を備え、
前記制御部は、前記固定関係情報によって、前記撮像装置が前記表示部の表示面側と前記表示面とは逆側の何れの面に固定されているかを示すようにする
請求項22記載の情報処理装置。
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- 2014-09-25 CN CN201480062015.9A patent/CN105765961A/zh active Pending
- 2014-09-25 WO PCT/JP2014/075415 patent/WO2015076015A1/ja active Application Filing
- 2014-09-25 EP EP14864689.6A patent/EP3073725A4/en not_active Withdrawn
- 2014-09-25 KR KR1020167011871A patent/KR20160086329A/ko not_active Application Discontinuation
- 2014-09-25 JP JP2015549027A patent/JP6468194B2/ja active Active
- 2014-09-25 US US15/026,816 patent/US10321056B2/en active Active
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See also references of EP3073725A4 |
Also Published As
Publication number | Publication date |
---|---|
JPWO2015076015A1 (ja) | 2017-03-16 |
JP6468194B2 (ja) | 2019-02-13 |
EP3073725A4 (en) | 2017-05-10 |
US20160309088A1 (en) | 2016-10-20 |
US10321056B2 (en) | 2019-06-11 |
EP3073725A1 (en) | 2016-09-28 |
CN105765961A (zh) | 2016-07-13 |
KR20160086329A (ko) | 2016-07-19 |
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