WO2018214967A1 - 一种虚化照片的生成方法、存储设备及移动终端 - Google Patents

一种虚化照片的生成方法、存储设备及移动终端 Download PDF

Info

Publication number
WO2018214967A1
WO2018214967A1 PCT/CN2018/088468 CN2018088468W WO2018214967A1 WO 2018214967 A1 WO2018214967 A1 WO 2018214967A1 CN 2018088468 W CN2018088468 W CN 2018088468W WO 2018214967 A1 WO2018214967 A1 WO 2018214967A1
Authority
WO
WIPO (PCT)
Prior art keywords
virtual
target object
dynamic
blurred
photo
Prior art date
Application number
PCT/CN2018/088468
Other languages
English (en)
French (fr)
Inventor
黄树伟
Original Assignee
Tcl通讯(宁波)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tcl通讯(宁波)有限公司 filed Critical Tcl通讯(宁波)有限公司
Priority to US16/616,995 priority Critical patent/US11108950B2/en
Priority to EP18806685.6A priority patent/EP3633971A4/en
Publication of WO2018214967A1 publication Critical patent/WO2018214967A1/zh

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/222Studio circuitry; Studio devices; Studio equipment
    • H04N5/262Studio circuits, e.g. for mixing, switching-over, change of character of image, other special effects ; Cameras specially adapted for the electronic generation of special effects
    • H04N5/2621Cameras specially adapted for the electronic generation of special effects during image pickup, e.g. digital cameras, camcorders, video cameras having integrated special effects capability
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/80Camera processing pipelines; Components thereof
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T5/00Image enhancement or restoration
    • G06T5/50Image enhancement or restoration by the use of more than one image, e.g. averaging, subtraction
    • G06T5/70
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T7/00Image analysis
    • G06T7/20Analysis of motion
    • G06T7/246Analysis of motion using feature-based methods, e.g. the tracking of corners or segments
    • G06T7/248Analysis of motion using feature-based methods, e.g. the tracking of corners or segments involving reference images or patches
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/67Focus control based on electronic image sensor signals

Definitions

  • the present invention relates to the field of photo processing technologies, and in particular, to a method for generating a blurred photo, a storage device, and a mobile terminal.
  • the embodiment of the invention provides a method for generating a blurred photo, a storage device and a mobile terminal, so as to solve the defect that the virtualized processing of the captured image cannot be automatically processed in the prior art.
  • an embodiment of the present invention provides a method for generating a blurred photo, which is suitable for being executed in an intelligent terminal with an imaging device, and includes the following steps:
  • the first virtualized mapping signal corresponding to the dynamic moving of the target object in the photo to be blurred is obtained, the final virtual shooting state of the target object is obtained, and the target object is adjusted to the virtual shooting. status;
  • the method further includes:
  • the step of receiving the virtual adjustment instruction to treat the blurred photo, and determining whether the blur adjustment signal track corresponding to the blur adjustment instruction is a dynamic short change or a dynamic long change includes:
  • the virtual adjustment signal trajectory corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical signal are correspondingly generated according to the virtual moving state in which the target object dynamically moves forward or dynamically backwards.
  • the virtual adjustment state signal corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical power are correspondingly generated according to the virtual moving state in which the target object moves forward dynamically or dynamically backwards.
  • Signal steps including:
  • the first virtual mapping electrical signal or the dynamic long-changing second virtual mapping electrical signal is sequentially output according to the change of the blur adjustment signal.
  • a first virtual photographing request is issued to the central processor, and the central processor invokes the first virtual photographing control signal to control the target object to adjust to the virtual photographing state for photographing.
  • the central processing unit calls the second virtual photographing control signal, and controls the target object to adjust to the virtual shooting state to take a photograph.
  • the step of issuing the first virtual photographing request to the central processing unit, the central processing unit invoking the first virtual photographing control signal, and controlling the target object to adjust to the virtual shooting state for photographing includes the steps of:
  • the central processor calls the first virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the step of issuing the second virtual photographing request to the central processing unit, the central processing unit invoking the second virtual photographing control signal, and controlling the target object to adjust to the virtual shooting state for photographing includes the steps of:
  • the central processor calls the second virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • an embodiment of the present invention provides a storage device, where a plurality of instructions are stored, which are connected to a camera device of a smart terminal, wherein the instruction is adapted to be loaded by a processor and performs the following steps:
  • the first virtualized mapping signal corresponding to the dynamic moving of the target object in the photo to be blurred is obtained, the final virtual shooting state of the target object is obtained, and the target object is adjusted to the virtual shooting. status;
  • an embodiment of the present invention provides a mobile terminal, including:
  • a processor adapted to implement instructions; and a storage device communicatively coupled to the processor, the storage device being adapted to store a plurality of instructions adapted to be loaded by the processor and to perform the following steps:
  • the first virtualized mapping signal corresponding to the dynamic moving of the target object in the photo to be blurred is obtained, the final virtual shooting state of the target object is obtained, and the target object is adjusted to the virtual shooting. status;
  • the method further includes:
  • the step of receiving the virtual adjustment instruction to treat the blurred photo, and determining whether the blur adjustment signal track corresponding to the blur adjustment instruction is a dynamic short change or a dynamic long change includes:
  • the virtual adjustment signal trajectory corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical signal are correspondingly generated according to the virtual moving state in which the target object dynamically moves forward or dynamically backwards.
  • the virtual adjustment state signal corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical power are correspondingly generated according to the virtual moving state in which the target object moves forward dynamically or dynamically backwards.
  • Signal steps including:
  • the first virtual mapping electrical signal or the dynamic long-changing second virtual mapping electrical signal is sequentially output according to the change of the blur adjustment signal.
  • a first virtual photographing request is issued to the central processor, and the central processor invokes the first virtual photographing control signal to control the target object to adjust to the virtual photographing state for photographing.
  • the central processing unit calls the second virtual photographing control signal, and controls the target object to adjust to the virtual shooting state to take a photograph.
  • the step of issuing the first virtual photographing request to the central processing unit, the central processing unit invoking the first virtual photographing control signal, and controlling the target object to adjust to the virtual shooting state for photographing includes the steps of:
  • the central processor calls the first virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the step of issuing the second virtual photographing request to the central processing unit, the central processing unit invoking the second virtual photographing control signal, and controlling the target object to adjust to the virtual shooting state for photographing includes the steps of:
  • the central processor calls the second virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the first virtualized mapping signal corresponding to the dynamic moving forward of the target object in the photo to be blurred is obtained, and the final virtual shooting state of the target object is obtained, including:
  • the virtual adjustment signal trajectory is a dynamic short change, it is determined that the photographing target object is moving forward dynamically.
  • the virtual map electrical signal maps the current virtual state of the photographed target object in sequence, until the photographing target object dynamically moves forward N. After that, the final virtual state is reached.
  • the second virtualized mapping signal corresponding to the dynamic backward movement of the target object in the photo to be blurred is obtained, and the final virtual shooting state of the target object is obtained, including:
  • the virtual adjustment signal trajectory is dynamic long change, it is determined that the photographing target object moves dynamically backward.
  • the virtual map electrical signal maps the current virtual state of the photograph target object in sequence, until the photographing target object dynamically moves forward N. After that, the final virtual state is reached.
  • the present invention provides a method for generating a blurred photo, a storage device, and a mobile terminal, by receiving a virtual adjustment instruction for treating a blurred photo, and determining that the blur adjustment signal track corresponding to the blur adjustment instruction is
  • the dynamic short change is still a dynamic long change. If the dynamic short change is performed, the first virtualized map signal corresponding to the target object is dynamically moved forward to obtain the final virtual shooting state of the target object, and the target object is adjusted to the location. a virtual shooting state; if the dynamic long change is performed, the second virtualized mapping signal corresponding to the target object is dynamically moved backward to obtain a final virtual shooting state of the target object, and the target object is adjusted to the virtual shooting status.
  • the method for generating a blurred photo provided by the invention highlights and blurs the target object in the photo, so that the picture is more beautiful, and satisfies the requirements of the user to make the photograph more intelligent and more photographing functions.
  • FIG. 1 is a flow chart showing the steps of a method for generating a blurred photo according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram showing the principle of determining whether a photographing target is moving forward or backward dynamically in a specific embodiment of the method for generating a blurred photo according to the present invention.
  • FIG. 3 is a schematic diagram of a principle for acquiring a final virtual state when a photographing target moves forward dynamically in the method for generating a blurred photo according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram showing the principle of controlling the highlighting of a photographing target when the photographing target is dynamically forward in the method for generating a blurred photo according to the embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a principle for acquiring a final virtual state when a photographing target is dynamically backward in the method for generating a blurred photo according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram showing the principle of controlling the highlighting of a photographing target when the photographing target is dynamically backward in the method for generating a blurred photo according to the embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • the invention provides a method for generating a blurred photo, which is suitable for being executed in an intelligent terminal with an imaging device, as shown in FIG. 1 , comprising the following steps:
  • Step S1 receiving a virtual adjustment instruction for the virtualized photo, and determining whether the blur adjustment signal trajectory corresponding to the blur adjustment instruction is a dynamic short change or a dynamic long change, and if the dynamic short change is performed, step S2 is performed; In order to dynamically change, step S3 is performed.
  • the camera After the camera acquires a photo to be blurred (the photo to be blurred may be captured by the camera, or may be a local photo acquired in the smart terminal), receiving a virtual adjustment instruction issued by the user or being acquired by the system in advance A virtual adjustment command is automatically issued to the photo to be blurred.
  • step S3 After receiving the virtual adjustment command, determining whether the virtual adjustment signal trajectory corresponding to the virtual adjustment instruction is a dynamic short change or a dynamic long change, and if it is determined that the virtual adjustment signal trajectory is a dynamic short change, proceeding to the step S2, if it is a dynamic long change, it progresses to step S3.
  • Step S2 Acquire a first blur map signal corresponding to the dynamic moving forward of the target object in the photo to be blurred, obtain a final virtual shooting state of the target object, and adjust the target object to the virtual shooting state.
  • the photographing target virtual mapping unit synchronously outputs the virtual mapping electrical signal while the virtual adjustment signal is emitted.
  • the output of the mapping electrical signal is synchronized with the virtual adjustment signal, and the adjusted virtual state is acquired according to the mapping electrical signal, and the photo to be blurred is adjusted according to the virtual state, and the blurred photo is blurred.
  • the target object is highlighted.
  • the virtual adjustment signal trajectory is a dynamic short change, it is determined that the photographing target object is moving forward dynamically.
  • the virtual map electrical signal maps the current virtual state of the photographed target object in sequence, until the photographing target object dynamically moves forward N. After that, the final virtual state is reached.
  • Step S3 Acquire a second blur map signal corresponding to the dynamic backward movement of the target object in the photo to be blurred, obtain a final virtual photographing state of the target object, and adjust the target object to the virtual photographing state.
  • the virtual adjustment signal trajectory is dynamic long change, it is determined that the photographing target object moves dynamically backward.
  • the virtual map electrical signal maps the current virtual state of the photograph target object in sequence, until the photographing target object dynamically moves forward N. After that, the final virtual state is reached.
  • the adjusting the target object to the virtual shooting state is to virtual highlight the target object in the photo.
  • the method further includes:
  • Step S0 pre-setting the trajectory of the falsification adjustment signal to be a dynamic short change, and then highlighting the target object in the photo to be blurred forward, and setting the trajectory of the falsification adjustment signal to a dynamic long change, then the photo is to be blurred.
  • the target object is dynamically highlighted backwards.
  • the step S1 includes:
  • Step S11 The imaginary adjustment signal trajectory corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical signal are correspondingly generated according to the virtual moving state of the target object moving forward or dynamically backwards respectively. .
  • the sending of the virtual mapping electrical signal is to sequentially output the first virtual mapping electrical signal that is dynamically short-changing or the second dynamic-changing electrical signal according to the change of the virtualized adjustment signal by using a preset virtual mapping unit. Virtually mapped electrical signals.
  • the method further includes:
  • Step S21 Send a first virtual photographing request to the central processing unit, and the central processing unit invokes the first virtual photographing control signal to control the target object to adjust to the virtual shooting state.
  • the method further includes:
  • Step S31 Send a second virtual photographing request to the central processing unit, and the central processing unit invokes the second virtual photographing control signal to control the target object to adjust to the virtual shooting state.
  • step S21 further includes the following steps:
  • Step S211 The central processor invokes the first virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the step S31 further includes the steps of:
  • Step S311 The central processing unit calls the second virtual photographing control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the photographing virtual processing module is preset in advance in the terminal device or in the image capturing device, and the photographing virtual processing module virtually processes the photographing target to adjust to a virtual shooting state.
  • a photographing target virtual adjustment unit is disposed in the photographing virtual processing module, and the photographing target virtual adjustment unit virtually adjusts the photographing target to move forward or backward dynamically.
  • the photographing target virtual adjustment unit outputs a virtual adjustment signal trajectory, and the virtual adjustment signal trajectory controls the photographing target to move forward or backward dynamically.
  • the virtual adjustment signal track determines whether the photographing target is dynamic forward or dynamic backward through its output state.
  • the photographing target is dynamically forwarded to make the photographing target reach an ideal photographing state, and the virtual motion adjusts the photographing target to move forward.
  • the virtual adjustment signal trajectory output changes dynamically, the photographing target moves forward dynamically. Then, when the photographing target moves forward n times dynamically, the virtual adjustment signal trajectory becomes gradually shorter.
  • the photographing target is dynamically pointed backwards to make the photographing target reach an ideal photographing state, and the virtual motion adjusts the photographing target to move backward.
  • the virtual adjustment signal trajectory output changes dynamically, the photographing target moves dynamically backward.
  • the photographing target moves backward n times dynamically the virtual adjustment signal trajectory gradually becomes longer.
  • the photographing target virtual dynamic moves forward.
  • the photographing target virtual dynamic moves forward one time, the photographing target virtual mapping unit in the photographing virtual processing module, the photographing target virtual mapping unit virtually maps the photographing target to the current virtual state.
  • the photographing target virtual mapping unit outputs n virtual mapping electrical signals, that is, virtual mapping electrical signals 1, virtual mapping electrical signals 2, ..., and virtual mapping electrical signals (n).
  • the virtual map electrical signal 1, the virtual map electrical signal 2, ..., the virtual map electrical signal (n) maps the photographed object to the current virtual state 11.
  • the virtual mapping electrical signal (n) maps the photographing target to the current Virtual state 12.
  • the photographing target moves to the current virtual state (1n) to reach an ideal virtual shooting state
  • the photographing virtual processing module sends the virtual photographing request signal 1 to the central processing unit.
  • the central processor outputs a virtual photographing control signal 1 to the smart mobile terminal and the flat panel camera module according to the virtual photographing request signal 1, and the camera module highlights the photographing target.
  • the photographing target virtual dynamic moves backward.
  • the virtual motion of the camera object is moved backward one time, the virtual map electrical signal 1, the virtual map electrical signal 2, ..., the virtual map electrical signal (n) mapping output by the photographing target virtual mapping unit.
  • the photographing target is to the current virtual state 21.
  • the virtual target moving dynamic signal 1 , the virtual mapping electrical signal 2, ..., the virtual mapping electrical signal 2, ... the virtual mapping electrical signal (n) maps the photographing target to the current Virtual state 22.
  • the virtual target (1) times, the virtual map electrical signal 1, the virtual map electrical signal 2, ..., the virtual map electrical signal (n) output by the photographing target virtual mapping unit maps the photographing target Go to the current virtual state (2n).
  • the photographing target moves to the current virtual state (2n) to reach an ideal virtual shooting state
  • the photographing virtual processing module sends the virtual photographing request signal 2 to the central processing unit.
  • the central processor outputs a virtual photographing control signal 2 to the smart mobile terminal and the flat panel camera module according to the virtual photographing request signal 2, and the camera module highlights the photographing target.
  • the present invention provides a storage device in which a plurality of instructions are stored, which are connected to a camera device of a smart terminal, wherein the instructions are adapted to be loaded and executed by a processor. A method of generating the virtualized photo is implemented.
  • the program may be stored in a computer readable storage device, and the storage device may include: Read only memory (ROM), random access memory (RAM), magnetic or optical disk, and the like.
  • ROM Read only memory
  • RAM random access memory
  • magnetic or optical disk and the like.
  • the present invention also discloses a mobile terminal, and further includes:
  • the storage device is adapted to store a plurality of instructions adapted to be loaded and executed by the processor to implement the method of generating the blurred photo.
  • FIG. 7 is a block diagram showing a specific structure of a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal can be used to implement a method for generating a blurred photo provided in the foregoing embodiment.
  • the mobile terminal 1200 can be a smartphone or a tablet.
  • the mobile terminal 1200 may include an RF (Radio Frequency) circuit 110, a memory 120 including one or more (only one shown) computer-readable storage medium, an input unit 130, and a display unit. 140, sensor 150, audio circuit 160, transmission module 170, including processor 180 having one or more processing cores (only one shown) and power supply 190 and the like.
  • RF Radio Frequency
  • FIG. 7 the structure of the mobile terminal 1200 shown in FIG. 7 does not constitute a limitation of the mobile terminal 1200, and may include more or less components than those illustrated, or combine some components, or different components. Arrangement. among them:
  • the RF circuit 110 is configured to receive and transmit electromagnetic waves, and realize mutual conversion between electromagnetic waves and electrical signals, thereby communicating with a communication network or other devices.
  • the RF circuit 110 may include various existing circuit elements for performing these functions, such as an antenna, a radio frequency transceiver, a digital signal processor, an encryption/decryption chip, a Subscriber Identity Module (SIM) card, a memory, and the like.
  • SIM Subscriber Identity Module
  • the RF circuit 110 can communicate with various networks such as the Internet, an intranet, a wireless network, or communicate with other devices over a wireless network.
  • the wireless network described above may include a cellular telephone network, a wireless local area network, or a metropolitan area network.
  • the above wireless networks may use various communication standards, protocols and technologies, including but not limited to global mobile communication systems (Global System for Mobile Communication, GSM), Enhanced Mobile Communication Technology (Enhanced Data GSM Environment, EDGE), Wideband Code Division Multiple Access (Wideband Code) Division Multiple Access, WCDMA), Code Division Multiple Access (Code Division) Access, CDMA), Time Division Multiple Access (TDMA), Wireless Fidelity (Wireless Fidelity, Wi-Fi) (such as the Institute of Electrical and Electronics Engineers Standard IEEE 802.11a, IEEE 802.11b, IEEE 802.11g and / or IEEE 802.11n), VoIP (Voice) Over Internet Protocol, VoIP), Worldwide Interoperability for Microwave Access (Worldwide Interoperability for Microwave Access, Wi-Max, other protocols for mail, instant messaging, and short messages, as well as any other suitable communication protocol, may even include protocols that are not currently being developed.
  • GSM Global System for Mobile Communication
  • EDGE Enhanced Mobile Communication Technology
  • WCDMA Wideband Code Division Multiple Access
  • CDMA Code Division Multiple
  • the memory 120 can be used to store software programs and modules, such as program instructions/modules corresponding to the method for generating a blurred photo in the above embodiment, and the processor 180 executes various functional applications by running software programs and modules stored in the memory 120. And data processing, that is, the function of realizing the generation of blurred photos.
  • Memory 120 may include high speed random access memory, and may also include non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid state memory.
  • memory 120 can further include memory remotely located relative to processor 180, which can be connected to mobile terminal 1200 via a network. Examples of such networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof.
  • the input unit 130 can be configured to receive input numeric or character information and to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.
  • input unit 130 can include touch-sensitive surface 131 as well as other input devices 132.
  • Touch-sensitive surface 131 also referred to as a touch display or trackpad, can collect touch operations on or near the user (such as a user using a finger, stylus, etc., on any suitable object or accessory on touch-sensitive surface 131 or The operation near the touch-sensitive surface 131) and driving the corresponding connecting device according to a preset program.
  • the touch-sensitive surface 131 can include two portions of a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information.
  • the processor 180 is provided and can receive commands from the processor 180 and execute them.
  • the touch-sensitive surface 131 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the input unit 130 can also include other input devices 132.
  • other input devices 132 may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, joysticks, and the like.
  • the display unit 140 can be used to display information input by the user or information provided to the user and various graphical user interfaces of the mobile terminal 1200, which can be composed of graphics, text, icons, video, and any combination thereof.
  • the display unit 140 may include a display panel 141, and optionally, an LCD (Liquid Crystal) Display, LCD), OLED (Organic
  • the display panel 141 is configured in the form of a Light-Emitting Diode or the like.
  • the touch-sensitive surface 131 may cover the display panel 141, and when the touch-sensitive surface 131 detects a touch operation thereon or nearby, it is transmitted to the processor 180 to determine the type of the touch event, and then the processor 180 according to the touch event The type provides a corresponding visual output on display panel 141.
  • touch-sensitive surface 131 and display panel 141 are implemented as two separate components to implement input and input functions, in some embodiments, touch-sensitive surface 131 can be integrated with display panel 141 for input. And output function.
  • Mobile terminal 1200 may also include at least one type of sensor 150, such as a light sensor, motion sensor, and other sensors.
  • the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display panel 141 according to the brightness of the ambient light, and the proximity sensor may close the display panel 141 when the mobile terminal 1200 moves to the ear. And / or backlight.
  • the gravity acceleration sensor can detect the magnitude of acceleration in all directions (usually three axes). When it is stationary, it can detect the magnitude and direction of gravity.
  • the mobile terminal 1200 can also be configured with gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors, here No longer.
  • the audio circuit 160, the speaker 161, and the microphone 162 can provide an audio interface between the user and the mobile terminal 1200.
  • the audio circuit 160 can transmit the converted electrical data of the received audio data to the speaker 161 for conversion to the sound signal output by the speaker 161; on the other hand, the microphone 162 converts the collected sound signal into an electrical signal by the audio circuit 160. After receiving, it is converted into audio data, and then processed by the audio data output processor 180, transmitted to the terminal, for example, via the RF circuit 110, or outputted to the memory 120 for further processing.
  • the audio circuit 160 may also include an earbud jack to provide communication of the peripheral earphones with the mobile terminal 1200.
  • the mobile terminal 1200 can help the user to send and receive emails, browse web pages, access streaming media, etc. through the transmission module 170 (eg, Wi-Fi module), which provides wireless broadband Internet access to the user.
  • the transmission module 170 eg, Wi-Fi module
  • FIG. 7 shows the transmission module 170, it can be understood that it does not belong to the essential configuration of the mobile terminal 1200, and may be omitted as needed within the scope of not changing the essence of the invention.
  • the processor 180 is a control center of the mobile terminal 1200 that connects various portions of the entire handset with various interfaces and lines, by running or executing software programs and/or modules stored in the memory 120, and recalling data stored in the memory 120.
  • the various functions and processing data of the mobile terminal 1200 are executed to perform overall monitoring of the mobile phone.
  • the processor 180 may include one or more processing cores; in some embodiments, the processor 180 may integrate an application processor and a modem processor, wherein the application processor mainly processes an operating system, a user interface, and For applications, etc., the modem processor primarily handles wireless communications. It can be understood that the above modem processor may not be integrated into the processor 180.
  • the mobile terminal 1200 also includes a power source 190 (such as a battery) that powers the various components.
  • the power source can be logically coupled to the processor 180 through a power management system to manage charging, discharging, and power consumption through the power management system. Management and other functions.
  • Power supply 190 may also include any one or more of a DC or AC power source, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and the like.
  • the mobile terminal 1200 may further include a camera (such as a front camera, a rear camera), a Bluetooth module, and the like, and details are not described herein.
  • the display unit of the mobile terminal is a touch screen display
  • the mobile terminal further includes a memory, and one or more programs, wherein one or more programs are stored in the memory and configured to be one or one
  • the above processor executes one or more programs that include instructions for performing the following operations:
  • the first virtualized mapping signal corresponding to the dynamic moving of the target object in the photo to be blurred is obtained, the final virtual shooting state of the target object is obtained, and the target object is adjusted to the virtual shooting. status;
  • the method further includes:
  • the step of receiving the virtual adjustment instruction to treat the blurred photo, and determining whether the blur adjustment signal track corresponding to the blur adjustment instruction is a dynamic short change or a dynamic long change includes:
  • the virtual adjustment signal trajectory corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical signal are correspondingly generated according to the virtual moving state in which the target object dynamically moves forward or dynamically backwards.
  • the virtual adjustment state signal corresponding to the virtual adjustment instruction is generated, and the first virtual mapping electrical signal and the second virtual mapping electrical power are correspondingly generated according to the virtual moving state in which the target object moves forward dynamically or dynamically backwards.
  • Signal steps including:
  • the first virtual mapping electrical signal or the dynamic long-changing second virtual mapping electrical signal is sequentially output according to the change of the blur adjustment signal.
  • a first virtual photographing request is issued to the central processor, and the central processor invokes the first virtual photographing control signal to control the target object to adjust to the virtual photographing state for photographing.
  • the central processing unit calls the second virtual photographing control signal, and controls the target object to adjust to the virtual shooting state to take a photograph.
  • the step of issuing the first virtual photographing request to the central processing unit, the central processing unit invoking the first virtual photographing control signal, and controlling the target object to adjust to the virtual shooting state for photographing includes the steps of:
  • the central processor calls the first virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the step of issuing the second virtual photographing request to the central processing unit, the central processing unit invoking the second virtual photographing control signal, and controlling the target object to adjust to the virtual shooting state for photographing includes the steps of:
  • the central processor calls the second virtual camera control signal to the terminal camera module, and controls the camera module to perform virtual highlight shooting on the target object adjusted to the virtual shooting state.
  • the first virtualized mapping signal corresponding to the dynamic moving forward of the target object in the photo to be blurred is obtained, and the final virtual shooting state of the target object is obtained, including:
  • the virtual adjustment signal trajectory is a dynamic short change, it is determined that the photographing target object is moving forward dynamically.
  • the virtual map electrical signal maps the current virtual state of the photographed target object in sequence, until the photographing target object dynamically moves forward N. After that, the final virtual state is reached.
  • the second virtualized mapping signal corresponding to the dynamic backward movement of the target object in the photo to be blurred is obtained, and the final virtual shooting state of the target object is obtained, including:
  • the virtual adjustment signal trajectory is dynamic long change, it is determined that the photographing target object moves dynamically backward.
  • the virtual map electrical signal maps the current virtual state of the photograph target object in sequence, until the photographing target object dynamically moves forward N. After that, the final virtual state is reached.
  • the present invention provides a method for generating a virtualized photo, a storage device, and a mobile terminal, by receiving a virtual adjustment instruction to treat a blurred photo, and determining that the trajectory of the blurred adjustment signal corresponding to the blurred adjustment instruction is dynamically forward
  • the change is still dynamic backward. If the dynamic change is forward, the first virtual map signal corresponding to the target object is dynamically moved forward, and the final virtual shooting state of the target object is obtained, and the target object is adjusted to the location. a virtual shooting state; if the dynamic backward is changed, the second virtualized mapping signal corresponding to the target object is dynamically moved backward to obtain a final virtual shooting state of the target object, and the target object is adjusted to the virtual state Shooting status.
  • the photo generation method provided by the invention highlights and blurs the target object in the photo, so that the picture is more beautiful, and satisfies the requirements of the user to make the photograph more intelligent and more photographing functions.
  • the present invention provides a method for generating a virtualized photo, a storage device, and a mobile terminal, by receiving a virtual adjustment instruction to treat a blurred photo, and determining that the trajectory of the blurred adjustment signal corresponding to the blur adjustment instruction is a dynamic short change Or a dynamic long change. If the dynamic short change is performed, the first virtualized map signal corresponding to the target object is dynamically moved forward to obtain a final virtual shooting state of the target object, and the target object is adjusted to the virtual shooting. If the dynamic long change is performed, the second virtualized map signal corresponding to the target object is dynamically moved backward to obtain a final virtual shooting state of the target object, and the target object is adjusted to the virtual shooting state.
  • the photo generation method provided by the invention highlights and blurs the target object in the photo, so that the picture is more beautiful, and satisfies the requirements of the user to make the photograph more intelligent and more photographing functions.

Abstract

本发明提供了虚化照片的生成方法,接收虚拟调整指令,判断虚化调整指令的虚化调整信号轨迹,若为动态短变化,根据目标物体动态向前移动的第一虚化映射信号,得到虚拟拍摄状态,将目标物体调整到虚拟拍摄状态;若为动态长变化,根据目标物体动态向后移动的第二虚化映射信号,得到虚拟拍摄状态,将目标物体调整到虚拟拍摄状态。

Description

一种虚化照片的生成方法、存储设备及移动终端
本申请要求于2017年5月26日提交中国专利局、申请号为201710386488.X、发明名称为“一种虚化照片的生成方法、存储设备及移动终端”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及照片处理技术领域,尤其涉及的是一种虚化照片的生成方法、存储设备及移动终端。
背景技术
随着移动终端技术的不断发展,用户已经不满足拍照时仅仅只是照片清晰度的要求,还需要移动终端的拍摄功能越来越丰富。目前,用户可在拍照过程中选择生成背景虚化的照片。但是,这需要用户在预览图像中选择前景区域,并预先设置虚化程度,用户拍摄需要一定的学习成本,且拍摄过程繁琐,效率低。
因此,现有技术有待于进一步的改进。
技术问题
本发明实施例提供一种虚化照片的生成方法、存储设备及移动终端,以解决现有技术中不能自动对待拍摄图像进行虚化处理的缺陷。
技术解决方案
第一方面,本发明实施例提供一种虚化照片的生成方法,适于在带有摄像设备的智能终端中执行,其中,包括以下步骤:
接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
其中,在所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤之前,还包括:
预先设置虚化调整信号轨迹为动态短变化,则将待虚化照片中目标物体动态向前虚化突出显示,设置虚化调整信号轨迹为动态长变化,则将待虚化照片中目标物体动态向后虚化突出显示。
其中,所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤,包括:
虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号。
其中,所述虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号的步骤,包括:
根据虚化调整信号的变化,依次输出呈动态短变化的所述第一虚拟映射电信号或呈动态长变化的第二虚拟映射电信号。
其中,在所述获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
其中,在所述获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
其中,所述发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
中央处理器调用第一虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
其中,所述发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
中央处理器调用第二虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
第二方面,本发明实施例提供一种存储设备,其中存储有多条指令,与智能终端的摄像头设备相连,其中,所述指令适于由处理器加载并执行如下步骤:
接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
第三方面,本发明实施例提供一种移动终端,其中,包括:
处理器,适于实现各指令;以及与所述处理器通信连接的存储设备,所述存储设备适于存储多条指令,所述指令适于由处理器加载并执行如下步骤:
接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
其中,在所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤之前,还包括:
预先设置虚化调整信号轨迹为动态短变化,则将待虚化照片中目标物体动态向前虚化突出显示,设置虚化调整信号轨迹为动态长变化,则将待虚化照片中目标物体动态向后虚化突出显示。
其中,所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤,包括:
虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号。
其中,所述虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号的步骤,包括:
根据虚化调整信号的变化,依次输出呈动态短变化的所述第一虚拟映射电信号或呈动态长变化的第二虚拟映射电信号。
其中,在所述获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
其中,在所述获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
其中,所述发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
中央处理器调用第一虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
其中,所述发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
中央处理器调用第二虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
其中,所述若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤,包括:
当虚拟调整信号轨迹为动态短变化,则判定拍照目标物体为动态向前移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
其中,所述若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤,包括:
当虚拟调整信号轨迹为动态长变化,则判定拍照目标物体为动态向后移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
有益效果
有益效果,本发明提供了一种虚化照片的生成方法、存储设备及移动终端,通过接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化,若为动态短变化,则根据目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;若为动态长变化,则根据目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。本发明提供的虚化照片生成方法对照片中的目标物体进行突出虚化处理,使得图片更加唯美,满足用户对拍摄照片更加智能化,更多拍摄功能的要求。
附图说明
图1是本发明实施例提供的虚化照片的生成方法的步骤流程图。
图2是本发明所述虚化照片的生成方法具体实施例中判断拍照目标动态向前还是动态向后的原理示意图。
图3是本发明实施例提供的所述虚化照片的生成方法中当拍照目标动态向前时获取最终虚拟状态的原理示意图。
图4是本发明实施例提供的所述虚化照片的生成方法中当拍照目标动态向前时控制拍照目标突出显示的原理示意图。
图5是本发明实施例提供的所述虚化照片的生成方法中当拍照目标动态向后时获取最终虚拟状态的原理示意图。
图6是本发明实施例提供的所述虚化照片的生成方法中当拍照目标动态向后时控制拍照目标突出显示的原理示意图。
图7是本发明实施例提供的移动终端的结构示意图。
本发明的最佳实施方式
为使本发明的目的、技术方案及优点更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用于解释本发明,并不用于限定本发明。
本发明提供了一种虚化照片的生成方法,适于在带有摄像设备的智能终端中执行,如图1所示,包括以下步骤:
步骤S1、接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化,若为动态短变化,则执行步骤S2;若为动态长变化,执行步骤S3。
当摄像头获取到待虚化照片(所述待虚化照片可以为摄像头捕获的,也可以是智能终端中获取的本地照片)后,接收对用户发出的虚拟调整指令或者由系统预先设置的当获取到待虚化照片后对其自动发出虚拟调整指令。
当接收到虚拟调整指令后,对所述虚拟调整指令所对应的虚拟调整信号轨迹为动态短变化还是动态长变化进行判断,若判定出所述虚拟调整信号轨迹为动态短变化,则进入到步骤S2,若为动态长变化,则进入到步骤S3。
步骤S2、获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
在虚拟调整指令发出的同时输出虚拟调整信号,则在所述虚拟调整信号发出的同时,拍照目标虚拟映射单元同步输出虚拟映射电信号。所述映射电信号的输出与虚拟调整信号发出同步进行,基于所述映射电信号获取目标物体所需调整后虚拟状态,并根据所述虚拟状态调整待虚化照片,将虚化照片进行虚化处理后,将目标物体突出显示。
当虚拟调整信号轨迹为动态短变化,则判定拍照目标物体为动态向前移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
步骤S3、获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
当虚拟调整信号轨迹为动态长变化,则判定拍照目标物体为动态向后移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
所述将所述目标物体调整到所述虚拟拍摄状态为将照片中的目标物体进行虚拟突出显示。
为了实现对虚化照片的步骤进行控制,实现对照片中的目标物体向前虚化还是向后虚化,在所述步骤S1之前还包括:
步骤S0、预先设置虚化调整信号轨迹为动态短变化,则将待虚化照片中目标物体动态向前虚化突出显示,设置虚化调整信号轨迹为动态长变化,则将待虚化照片中目标物体动态向后虚化突出显示。
具体的,为了实现更加准确的根据接收到的虚拟调整指令对照片进行虚化处理,所述步骤S1包括:
步骤S11,虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号。具体的,其中虚拟映射电信号的发出,为通过预设的虚拟映射单元根据虚化调整信号的变化,依次输出呈动态短变化的所述第一虚拟映射电信号或呈动态长变化的第二虚拟映射电信号。
所述步骤S2中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
步骤S21、发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态。
所述步骤S3中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
步骤S31、发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态。
具体的,所述步骤S21中还包括步骤:
步骤S211、中央处理器调用第一虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
所述步骤S31还包括步骤:
步骤S311、中央处理器调用第二虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
下面以本发明的具体应用实施例对本发明所述的虚化照片的生成方法进行更为详细的说明。
S100:预先在终端设备中或者在摄像设备中预先设置拍照虚拟处理模块,所述拍照虚拟处理模块虚拟处理所述拍照目标调整到虚拟拍摄状态。结合图2所示,所述拍照虚拟处理模块内设置拍照目标虚拟调整单元,所述拍照目标虚拟调整单元虚拟调整所述拍照目标动态向前或向后。设所述拍照目标虚拟调整单元输出虚拟调整信号轨迹,所述虚拟调整信号轨迹控制所述拍照目标动态向前或向后。所述虚拟调整信号轨迹通过其输出状态,判断所述拍照目标是动态向前还是动态向后。
S200:所述拍照目标动态向前指为使所述拍照目标达到理想的拍摄状态,虚拟动态调整所述拍照目标向前移动。设所述虚拟调整信号轨迹输出呈动态短变化时,所述拍照目标动态向前移动。则所述拍照目标动态向前移动n次时,所述虚拟调整信号轨迹逐渐变短。
所述拍照目标动态向后指为使所述拍照目标达到理想的拍摄状态,虚拟动态调整所述拍照目标向后移动。设所述虚拟调整信号轨迹输出呈动态长变化时,所述拍照目标动态向后移动。则所述拍照目标动态向后移动n次时,所述虚拟调整信号轨迹逐渐变长。
S300:所述拍照目标虚拟调整单元输出的虚拟调整信号轨迹呈动态短变化时,所述拍照目标虚拟动态向前移动。结合图3所示,设所述拍照目标虚拟动态向前移动1次,所述拍照虚拟处理模块内的拍照目标虚拟映射单元,所述拍照目标虚拟映射单元虚拟映射所述拍照目标到当前虚拟状态11。设所述拍照目标虚拟映射单元输出n个虚拟映射电信号,即虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)。所述虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)映射所述拍照目标到当前虚拟状态11。设所述拍照目标虚拟动态向前移动2次,所述拍照目标虚拟映射单元输出的虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)映射所述拍照目标到当前虚拟状态12。设所述拍照目标虚拟动态向前移动(n)次,所述拍照目标虚拟映射单元输出的虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)映射所述拍照目标到当前虚拟状态(1n)。
结合图4所示,设所述拍照目标向前移动到当前虚拟状态(1n)时达到理想的虚拟拍摄状态,所述拍照虚拟处理模块发送虚拟拍照请求信号1到中央处理器。所述中央处理器根据所述虚拟拍照请求信号1,输出虚拟拍照控制信号1到所述智能移动终端及平板摄像头模块,所述摄像头模块突出拍摄所述拍照目标。
S400:所述拍照目标虚拟调整单元输出的虚拟调整信号轨迹呈动态长变化时,所述拍照目标虚拟动态向后移动。结合图5所示,设所述拍照目标虚拟动态向后移动1次,所述拍照目标虚拟映射单元输出的虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)映射所述拍照目标到当前虚拟状态21。设所述拍照目标虚拟动态向前移动2次,所述拍照目标虚拟映射单元输出的虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)映射所述拍照目标到当前虚拟状态22。设所述拍照目标虚拟动态向前移动(n)次,所述拍照目标虚拟映射单元输出的虚拟映射电信号1,虚拟映射电信号2,…,虚拟映射电信号(n)映射所述拍照目标到当前虚拟状态(2n)。
结合图6所示,设所述拍照目标向后移动到当前虚拟状态(2n)时达到理想的虚拟拍摄状态,所述拍照虚拟处理模块发送虚拟拍照请求信号2到中央处理器。所述中央处理器根据所述虚拟拍照请求信号2,输出虚拟拍照控制信号2到所述智能移动终端及平板摄像头模块,所述摄像头模块突出拍摄所述拍照目标。
本发明在公开上述虚化照片的生成方法的同时,提供了一种存储设备,其中存储有多条指令,与智能终端的摄像头设备相连,其中,所述指令适于由处理器加载并执行以实现所述的虚化照片的生成方法。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储设备中,存储设备可以包括:只读存储器(ROM)、随机存取存储器RAM)、磁盘或光盘等。
本发明在公开上述虚化照片的生成方法和存储设备的同时,还公开了一种移动终端,还包括:
处理器,适于实现各指令;以及
存储设备,适于存储多条指令,所述指令适于由处理器加载并执行以实现所述的虚化照片的生成方法。
图7示出了本发明实施例提供的移动终端的具体结构框图,该移动终端可以用于实施上述实施例中提供的虚化照片的生成方法。该移动终端1200可以为智能手机或平板电脑。
如图7所示,移动终端1200可以包括RF(Radio Frequency,射频)电路110、包括有一个或一个以上(图中仅示出一个)计算机可读存储介质的存储器120、输入单元130、显示单元140、传感器150、音频电路160、传输模块170、包括有一个或者一个以上(图中仅示出一个)处理核心的处理器180以及电源190等部件。本领域技术人员可以理解,图7中示出的移动终端1200结构并不构成对移动终端1200的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。其中:
RF电路110用于接收以及发送电磁波,实现电磁波与电信号的相互转换,从而与通讯网络或者其他设备进行通讯。RF电路110可包括各种现有的用于执行这些功能的电路元件,例如,天线、射频收发器、数字信号处理器、加密/解密芯片、用户身份模块(SIM)卡、存储器等等。RF电路110可与各种网络如互联网、企业内部网、无线网络进行通讯或者通过无线网络与其他设备进行通讯。上述的无线网络可包括蜂窝式电话网、无线局域网或者城域网。上述的无线网络可以使用各种通信标准、协议及技术,包括但并不限于全球移动通信系统(Global System for Mobile Communication, GSM)、增强型移动通信技术(Enhanced Data GSM Environment, EDGE),宽带码分多址技术(Wideband Code Division Multiple Access, WCDMA),码分多址技术(Code Division Access, CDMA)、时分多址技术(Time Division Multiple Access, TDMA),无线保真技术(Wireless Fidelity, Wi-Fi)(如美国电气和电子工程师协会标准 IEEE 802.11a, IEEE 802.11b, IEEE802.11g 和/或 IEEE 802.11n)、网络电话(Voice over Internet Protocol, VoIP)、全球微波互联接入(Worldwide Interoperability for Microwave Access, Wi-Max)、其他用于邮件、即时通讯及短消息的协议,以及任何其他合适的通讯协议,甚至可包括那些当前仍未被开发出来的协议。
存储器120可用于存储软件程序以及模块,如上述实施例中虚化照片的生成方法对应的程序指令/模块,处理器180通过运行存储在存储器120内的软件程序以及模块,从而执行各种功能应用以及数据处理,即实现虚化照片的生成的功能。存储器120可包括高速随机存储器,还可包括非易失性存储器,如一个或者多个磁性存储装置、闪存、或者其他非易失性固态存储器。在一些实例中,存储器120可进一步包括相对于处理器180远程设置的存储器,这些远程存储器可以通过网络连接至移动终端1200。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。
输入单元130可用于接收输入的数字或字符信息,以及产生与用户设置以及功能控制有关的键盘、鼠标、操作杆、光学或者轨迹球信号输入。具体地,输入单元130可包括触敏表面131以及其他输入设备132。触敏表面131,也称为触摸显示屏或者触控板,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触敏表面131上或在触敏表面131附近的操作),并根据预先设定的程式驱动相应的连接装置。可选的,触敏表面131可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器180,并能接收处理器180发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触敏表面131。除了触敏表面131,输入单元130还可以包括其他输入设备132。具体地,其他输入设备132可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆等中的一种或多种。
显示单元140可用于显示由用户输入的信息或提供给用户的信息以及移动终端1200的各种图形用户接口,这些图形用户接口可以由图形、文本、图标、视频和其任意组合来构成。显示单元140可包括显示面板141,可选的,可以采用LCD(Liquid Crystal Display,液晶显示器)、OLED(Organic Light-Emitting Diode,有机发光二极管)等形式来配置显示面板141。进一步的,触敏表面131可覆盖显示面板141,当触敏表面131检测到在其上或附近的触摸操作后,传送给处理器180以确定触摸事件的类型,随后处理器180根据触摸事件的类型在显示面板141上提供相应的视觉输出。虽然在图7中,触敏表面131与显示面板141是作为两个独立的部件来实现输入和输入功能,但是在某些实施例中,可以将触敏表面131与显示面板141集成而实现输入和输出功能。
移动终端1200还可包括至少一种传感器150,比如光传感器、运动传感器以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示面板141的亮度,接近传感器可在移动终端1200移动到耳边时,关闭显示面板141和/或背光。作为运动传感器的一种,重力加速度传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别手机姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等; 至于移动终端1200还可配置的陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不再赘述。
音频电路160、扬声器161,传声器162可提供用户与移动终端1200之间的音频接口。音频电路160可将接收到的音频数据转换后的电信号,传输到扬声器161,由扬声器161转换为声音信号输出;另一方面,传声器162将收集的声音信号转换为电信号,由音频电路160接收后转换为音频数据,再将音频数据输出处理器180处理后,经RF电路110以发送给比如另一终端,或者将音频数据输出至存储器120以便进一步处理。音频电路160还可能包括耳塞插孔,以提供外设耳机与移动终端1200的通信。
移动终端1200通过传输模块170(例如Wi-Fi模块)可以帮助用户收发电子邮件、浏览网页和访问流式媒体等,它为用户提供了无线的宽带互联网访问。虽然图7示出了传输模块170,但是可以理解的是,其并不属于移动终端1200的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
处理器180是移动终端1200的控制中心,利用各种接口和线路连接整个手机的各个部分,通过运行或执行存储在存储器120内的软件程序和/或模块,以及调用存储在存储器120内的数据,执行移动终端1200的各种功能和处理数据,从而对手机进行整体监控。可选的,处理器180可包括一个或多个处理核心;在一些实施例中,处理器180可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器180中。
移动终端1200还包括给各个部件供电的电源190(比如电池),在一些实施例中,电源可以通过电源管理系统与处理器180逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。电源190还可以包括一个或一个以上的直流或交流电源、再充电系统、电源故障检测电路、电源转换器或者逆变器、电源状态指示器等任意组件。
尽管未示出,移动终端1200还可以包括摄像头(如前置摄像头、后置摄像头)、蓝牙模块等,在此不再赘述。具体在本实施例中,移动终端的显示单元是触摸屏显示器,移动终端还包括有存储器,以及一个或者一个以上的程序,其中一个或者一个以上程序存储于存储器中,且经配置以由一个或者一个以上处理器执行述一个或者一个以上程序包含用于进行以下操作的指令:
接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
其中,在所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤之前,还包括:
预先设置虚化调整信号轨迹为动态短变化,则将待虚化照片中目标物体动态向前虚化突出显示,设置虚化调整信号轨迹为动态长变化,则将待虚化照片中目标物体动态向后虚化突出显示。
其中,所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤,包括:
虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号。
其中,所述虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号的步骤,包括:
根据虚化调整信号的变化,依次输出呈动态短变化的所述第一虚拟映射电信号或呈动态长变化的第二虚拟映射电信号。
其中,在所述获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
其中,在所述获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
其中,所述发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
中央处理器调用第一虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
其中,所述发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
中央处理器调用第二虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
其中,所述若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤,包括:
当虚拟调整信号轨迹为动态短变化,则判定拍照目标物体为动态向前移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
其中,所述若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤,包括:
当虚拟调整信号轨迹为动态长变化,则判定拍照目标物体为动态向后移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
本发明提供了一种虚化照片的生成方法、存储设备及移动终端,通过接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态向前变化还是动态向后变化,若为动态向前变化,则根据目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;若为动态向后变化,则根据目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。本发明提供的照片生成方法对照片中的目标物体进行突出虚化处理,使得图片更加唯美,满足用户对拍摄照片更加智能化,更多拍摄功能的要求。
可以理解的是,对本领域普通技术人员来说,可以根据本发明的技术方案及其发明构思加以等同替换或改变,而所有这些改变或替换都应属于本发明所附的权利要求的保护范围。
本发明提供了一种虚化照片的生成方法、存储设备及移动终端,通过接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化,若为动态短变化,则根据目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;若为动态长变化,则根据目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。本发明提供的照片生成方法对照片中的目标物体进行突出虚化处理,使得图片更加唯美,满足用户对拍摄照片更加智能化,更多拍摄功能的要求。
可以理解的是,对本领域普通技术人员来说,可以根据本发明的技术方案及其发明构思加以等同替换或改变,而所有这些改变或替换都应属于本发明所附的权利要求的保护范围。

Claims (19)

  1. 一种虚化照片的生成方法,适于在带有摄像设备的智能终端中执行,其中,包括以下步骤:
    接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
    若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
    若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
  2. 根据权利要求1所述的虚化照片的生成方法,其中,在所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤之前,还包括:
    预先设置虚化调整信号轨迹为动态短变化,则将待虚化照片中目标物体动态向前虚化突出显示,设置虚化调整信号轨迹为动态长变化,则将待虚化照片中目标物体动态向后虚化突出显示。
  3. 根据权利要求2所述的虚化照片的生成方法,其中,所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤,包括:
    虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号。
  4. 根据权利要求3所述的虚化照片的生成方法,其中,所述虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号的步骤,包括:
    根据虚化调整信号的变化,依次输出呈动态短变化的所述第一虚拟映射电信号或呈动态长变化的第二虚拟映射电信号。
  5. 根据权利要求3所述的虚化照片的生成方法,其中,在所述获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
    发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
  6. 根据权利要求3所述的虚化照片的生成方法,其中,在所述获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
    发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
  7. 根据权利要求4所述的虚化照片的生成方法,其中,所述发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
    中央处理器调用第一虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
  8. 根据权利要求6所述的虚化照片的生成方法,其中,所述发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
    中央处理器调用第二虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
  9. 一种存储设备,其中存储有多条指令,与智能终端的摄像头设备相连,其中,所述指令适于由处理器加载并执行如下步骤:
    接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
    若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
    若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
  10. 一种移动终端,其中,包括:
    处理器,适于实现各指令;以及与所述处理器通信连接的存储设备,所述存储设备适于存储多条指令,所述指令适于由处理器加载并执行如下步骤:
    接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化;
    若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态;
    若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态,并将所述目标物体调整到所述虚拟拍摄状态。
  11. 根据权利要求10所述的移动终端,其中,在所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤之前,还包括:
    预先设置虚化调整信号轨迹为动态短变化,则将待虚化照片中目标物体动态向前虚化突出显示,设置虚化调整信号轨迹为动态长变化,则将待虚化照片中目标物体动态向后虚化突出显示。
  12. 根据权利要求11所述的移动终端,其中,所述接收对待虚化照片的虚拟调整指令,并判断所述虚化调整指令所对应的虚化调整信号轨迹为动态短变化还是动态长变化的步骤,包括:
    虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号。
  13. 根据权利要求12所述的移动终端,其中,所述虚拟调整指令所对应的虚化调整信号轨迹生成的同时,分别根据目标物体动态向前或者动态向后移动的虚拟移动状态,对应生成第一虚拟映射电信号和第二虚拟映射电信号的步骤,包括:
    根据虚化调整信号的变化,依次输出呈动态短变化的所述第一虚拟映射电信号或呈动态长变化的第二虚拟映射电信号。
  14. 根据权利要求12所述的移动终端,其中,在所述获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
    发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
  15. 根据权利要求12所述的移动终端,其中,在所述获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤中得到目标物体最终的虚拟拍摄状态的步骤之后,还包括:
    发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照。
  16. 根据权利要求13所述的移动终端,其中,所述发出第一虚拟拍照请求到中央处理器,所述中央处理器调用第一虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
    中央处理器调用第一虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
  17. 根据权利要求15所述的移动终端,其中,所述发出第二虚拟拍照请求到中央处理器,所述中央处理器调用第二虚拟拍照控制信号,控制目标物体调整到所述虚拟拍摄状态进行拍照的步骤,包括步骤:
    中央处理器调用第二虚拟拍照控制信号到终端摄像头模块,控制所述摄像头模块对调整到虚拟拍摄状态后的目标物体进行虚拟突出拍摄。
  18. 根据权利要求10所述的移动终端,其中,所述若为动态短变化,则获取待虚化照片中目标物体动态向前移动所对应的第一虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤,包括:
    当虚拟调整信号轨迹为动态短变化,则判定拍照目标物体为动态向前移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
  19. 根据权利要求10所述的移动终端,其中,所述若为动态长变化,则获取待虚化照片中目标物体动态向后移动所对应的第二虚化映射信号,得到目标物体最终的虚拟拍摄状态的步骤,包括:
    当虚拟调整信号轨迹为动态长变化,则判定拍照目标物体为动态向后移动,每移动一次,则虚拟映射电信号便映射依次拍照目标物体当前的虚拟状态,直到拍照目标物体动态向前移动N次后,达到最终的虚拟状态。
PCT/CN2018/088468 2017-05-26 2018-05-25 一种虚化照片的生成方法、存储设备及移动终端 WO2018214967A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
US16/616,995 US11108950B2 (en) 2017-05-26 2018-05-25 Method for generating blurred photograph, and storage device and mobile terminal
EP18806685.6A EP3633971A4 (en) 2017-05-26 2018-05-25 BLURRED PHOTOGRAPHY GENERATION PROCESS, STORAGE DEVICE AND MOBILE TERMINAL

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201710386488.X 2017-05-26
CN201710386488.XA CN107222676B (zh) 2017-05-26 2017-05-26 一种虚化照片的生成方法、存储设备及移动终端

Publications (1)

Publication Number Publication Date
WO2018214967A1 true WO2018214967A1 (zh) 2018-11-29

Family

ID=59946698

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/088468 WO2018214967A1 (zh) 2017-05-26 2018-05-25 一种虚化照片的生成方法、存储设备及移动终端

Country Status (4)

Country Link
US (1) US11108950B2 (zh)
EP (1) EP3633971A4 (zh)
CN (1) CN107222676B (zh)
WO (1) WO2018214967A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11108950B2 (en) 2017-05-26 2021-08-31 Tcl Communication (Ningbo) Co., Ltd. Method for generating blurred photograph, and storage device and mobile terminal

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101548232A (zh) * 2006-06-29 2009-09-30 森纳拉科技有限责任公司 使用图像捕捉装置捕捉图像时提供背景虚化的方法和系统
US20110134311A1 (en) * 2009-12-07 2011-06-09 Seiji Nagao Imaging device and imaging method
US20130113962A1 (en) * 2011-11-03 2013-05-09 Altek Corporation Image processing method for producing background blurred image and image capturing device thereof
CN104219445A (zh) * 2014-08-26 2014-12-17 小米科技有限责任公司 拍摄模式调整方法及装置
CN104333700A (zh) * 2014-11-28 2015-02-04 广东欧珀移动通信有限公司 一种图像虚化方法和图像虚化装置
CN104751407A (zh) * 2015-03-11 2015-07-01 百度在线网络技术(北京)有限公司 一种用于对图像进行虚化的方法和装置
CN107222676A (zh) * 2017-05-26 2017-09-29 Tcl移动通信科技(宁波)有限公司 一种虚化照片的生成方法、存储设备及移动终端

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ATE549855T1 (de) * 2003-01-16 2012-03-15 Digitaloptics Corp Internat Verfahren zur herstellung eines optischen systems,welches einen prozessor zur elektronischen bildverbesserung beinhaltet
US10769852B2 (en) * 2013-03-14 2020-09-08 Aria Glassworks, Inc. Method for simulating natural perception in virtual and augmented reality scenes
CN103297699A (zh) * 2013-05-31 2013-09-11 北京小米科技有限责任公司 一种图像的拍摄方法和终端
DE102013224704A1 (de) 2013-12-03 2015-06-03 Robert Bosch Gmbh Verfahren zur automatischen Fokussierung einer Kamera
CN106488160A (zh) * 2015-08-24 2017-03-08 中兴通讯股份有限公司 一种投影显示方法、装置及电子设备
CN105979165B (zh) * 2016-06-02 2019-02-05 Oppo广东移动通信有限公司 虚化照片生成方法、装置和移动终端
CN106375596B (zh) * 2016-10-17 2020-04-24 瑞安市任想科技有限责任公司 提示对焦对象的装置及方法
CN106570821A (zh) * 2016-10-29 2017-04-19 深圳市金立通信设备有限公司 一种图像处理方法及终端

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101548232A (zh) * 2006-06-29 2009-09-30 森纳拉科技有限责任公司 使用图像捕捉装置捕捉图像时提供背景虚化的方法和系统
US20110134311A1 (en) * 2009-12-07 2011-06-09 Seiji Nagao Imaging device and imaging method
US20130113962A1 (en) * 2011-11-03 2013-05-09 Altek Corporation Image processing method for producing background blurred image and image capturing device thereof
CN104219445A (zh) * 2014-08-26 2014-12-17 小米科技有限责任公司 拍摄模式调整方法及装置
CN104333700A (zh) * 2014-11-28 2015-02-04 广东欧珀移动通信有限公司 一种图像虚化方法和图像虚化装置
CN104751407A (zh) * 2015-03-11 2015-07-01 百度在线网络技术(北京)有限公司 一种用于对图像进行虚化的方法和装置
CN107222676A (zh) * 2017-05-26 2017-09-29 Tcl移动通信科技(宁波)有限公司 一种虚化照片的生成方法、存储设备及移动终端

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3633971A4 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11108950B2 (en) 2017-05-26 2021-08-31 Tcl Communication (Ningbo) Co., Ltd. Method for generating blurred photograph, and storage device and mobile terminal

Also Published As

Publication number Publication date
CN107222676A (zh) 2017-09-29
CN107222676B (zh) 2020-06-02
US20210136281A1 (en) 2021-05-06
EP3633971A1 (en) 2020-04-08
US11108950B2 (en) 2021-08-31
EP3633971A4 (en) 2020-09-16

Similar Documents

Publication Publication Date Title
WO2018103525A1 (zh) 人脸关键点跟踪方法和装置、存储介质
WO2019129020A1 (zh) 一种摄像头自动调焦方法、存储设备及移动终端
CN109461117B (zh) 一种图像处理方法及移动终端
WO2019091486A1 (zh) 拍照处理的方法、装置、终端和存储介质
WO2018098638A1 (zh) 一种电子设备拍摄方法和装置
US9760998B2 (en) Video processing method and apparatus
WO2019129092A1 (zh) 一种降帧率拍照方法、移动终端及存储介质
US20180253207A1 (en) Data transmission method and device
CN107948530B (zh) 一种图像处理方法、终端及计算机可读存储介质
EP4131931A1 (en) Image capturing method and electronic device
WO2018219275A1 (zh) 对焦方法、装置、计算机可读存储介质和移动终端
CN109144441B (zh) 一种屏幕调节方法、终端及计算机可读存储介质
CN109471579B (zh) 终端屏幕信息布局调整方法、装置、移动终端及存储介质
WO2018219267A1 (zh) 曝光方法、装置、计算机可读存储介质和移动终端
WO2019047862A1 (zh) 一种指纹采集方法及终端设备、存储介质
CN109493821B (zh) 屏幕亮度调整方法、装置及存储介质
CN108881721B (zh) 一种显示方法及终端
CN111182236A (zh) 一种图像合成方法、装置、存储介质及终端设备
WO2019120190A1 (zh) 拨号方法及移动终端
WO2019015562A1 (zh) 全视觉导航定位方法、智能终端及存储装置
WO2019042478A1 (zh) 移动终端输入法软键盘的控制方法、存储介质及移动终端
CN105635553B (zh) 一种图像拍摄方法和装置
WO2021104162A1 (zh) 显示方法及电子设备
CN111131930B (zh) 设备资源控制方法、第一电子设备及计算机可读存储介质
CN108762709B (zh) 一种终端控制方法、终端及计算机可读存储介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18806685

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

WWE Wipo information: entry into national phase

Ref document number: 2018806685

Country of ref document: EP

ENP Entry into the national phase

Ref document number: 2018806685

Country of ref document: EP

Effective date: 20200102