WO2020199169A1 - 可弯折的电子终端及其拍摄方法 - Google Patents

可弯折的电子终端及其拍摄方法 Download PDF

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Publication number
WO2020199169A1
WO2020199169A1 PCT/CN2019/081312 CN2019081312W WO2020199169A1 WO 2020199169 A1 WO2020199169 A1 WO 2020199169A1 CN 2019081312 W CN2019081312 W CN 2019081312W WO 2020199169 A1 WO2020199169 A1 WO 2020199169A1
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WO
WIPO (PCT)
Prior art keywords
camera
screen
electronic terminal
combined
shooting
Prior art date
Application number
PCT/CN2019/081312
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English (en)
French (fr)
Inventor
袁浩
Original Assignee
深圳市柔宇科技有限公司
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 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to CN201980079784.2A priority Critical patent/CN113366824A/zh
Priority to PCT/CN2019/081312 priority patent/WO2020199169A1/zh
Publication of WO2020199169A1 publication Critical patent/WO2020199169A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • 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

Definitions

  • the present application relates to a camera device, in particular to a bendable electronic terminal and a shooting method thereof.
  • the camera combination method is to combine two or more cameras arranged on the same side of the electronic terminal to capture images. For example, a combination of two or more cameras arranged on the front of the electronic terminal is used for Take pictures, or combine two or more cameras arranged on the back of the electronic terminal to take pictures.
  • this traditional camera combination method cannot maximize the use of the camera of the bendable electronic terminal.
  • the embodiment of the application discloses a bendable electronic terminal and a shooting method thereof.
  • the front camera and the rear camera can be controlled to be combined into a combined camera for taking images. , Which can maximize the use of the camera.
  • the bendable electronic terminal disclosed in the embodiment of the present application includes a terminal body, a front camera, a rear camera, and a processor.
  • the terminal body includes a front surface and a back surface that are arranged oppositely.
  • the front camera is arranged on the front of the terminal body.
  • the rear camera is arranged on the back of the terminal body.
  • the processor controls the front camera and the rear camera to combine to form a combined camera and controls the combined camera to capture images.
  • the front camera and the rear camera do not block each other when the electronic terminal is in a bent state.
  • the photographing method disclosed in the embodiment of the present application is applied to a bendable electronic terminal.
  • the electronic terminal also includes a front camera and a rear camera.
  • the shooting method includes the steps of: judging whether the electronic terminal is in a bent state; when the electronic terminal is in a bent state, responding to a user operation to control the combination of the front camera and the rear camera to form a combined camera and control The combined camera captures images. Wherein, the front camera and the rear camera do not block each other when the electronic terminal is in a bent state.
  • photographing program instructions are stored in the computer-readable storage medium. After the photographing program instructions are invoked and executed by a processor, the steps of the photographing method are executed.
  • the front camera and the rear camera are controlled to form a combined camera and the combined camera is controlled to capture images, so that the electronic Each camera of the terminal is utilized to the maximum.
  • FIG. 1 is a schematic diagram of a module of a bendable electronic terminal in an embodiment of the application.
  • FIG. 2 is a top view of a bendable electronic terminal in a tablet state in an embodiment of the application.
  • FIG 3 is a top view of the bendable electronic terminal in a bent state in an embodiment of the application.
  • FIG. 4 is a schematic diagram of a bendable electronic terminal taking a selfie in a tablet state in an embodiment of the application.
  • FIG. 5 is a schematic diagram of the bendable electronic terminal in an embodiment of the application performing other shooting in a tablet state.
  • FIG. 6 is a schematic diagram of a bendable electronic terminal performing a selfie in a bent state in an embodiment of the application.
  • FIG. 7 is a schematic diagram of the bendable electronic terminal in an embodiment of the application performing other shooting in a bent state.
  • FIG. 8 is a schematic structural diagram of a bendable electronic terminal having a front camera and a rear camera in an embodiment of the application.
  • FIG. 9 is a schematic structural diagram of a bendable electronic terminal having one front camera and two rear cameras in an embodiment of the application.
  • FIG. 10 is a schematic structural diagram of a bendable electronic terminal having two front cameras and two rear cameras in an embodiment of the application.
  • FIG. 11 is a schematic structural diagram of a bendable electronic terminal having two front cameras and one rear camera in an embodiment of the application.
  • FIG. 12 is a schematic flowchart of a photographing method applied to a bendable electronic terminal in an embodiment of the application.
  • FIG. 1 is a schematic diagram of modules of an electronic terminal 100 in an embodiment of the application.
  • the electronic terminal 100 may be, but is not limited to, a bendable terminal device such as a mobile phone or a tablet computer.
  • the electronic terminal 100 includes a terminal body 10, a front camera 20, a rear camera 30, a processor 40 and a flexible display 50.
  • the processor 40 may be a microcontroller, a microprocessor, a single-chip microcomputer, a digital signal processor, etc.
  • the processor 40 is electrically connected to the front camera 20, the rear camera 30, and the flexible display 50, respectively.
  • FIG. 2 and FIG. 3 together.
  • FIG. 2 is a schematic structural diagram of the electronic terminal 100 in a tablet state.
  • FIG. 2 is a schematic structural diagram of the electronic terminal 100 in a tablet state.
  • the terminal body 10 includes a front side 11 and a back side 12 oppositely arranged.
  • the front side 11 refers to the side of the terminal body 10 where the flexible display screen 50 is provided.
  • the back surface 12 refers to a surface opposite to the front surface 11.
  • the front camera 20 is arranged on the front side 11 of the terminal body 10.
  • the rear camera 30 is arranged on the back 12 of the terminal body 10.
  • the processor 40 controls the front camera 20 and the rear camera 30 to combine to form a combined camera, and controls the combined camera to capture images, which enriches
  • the diversified use of the camera of the electronic terminal 100 allows the camera of the electronic terminal 100 to be utilized to the maximum.
  • the flexible display 50 is used as a whole screen for content display.
  • the processor 40 controls the image taken by the front camera 20 to be displayed on the flexible display 50.
  • the processor 40 controls the image of a person taken by the front camera 20 to be displayed on the flexible display 50.
  • the processor 40 controls the image taken by the rear camera 30 to be displayed on the flexible display 50.
  • the processor 40 controls the scene image taken by the rear camera 30 to be displayed on the flexible display screen 50.
  • the “self-portrait” means that the camera faces the side close to the holder of the electronic terminal 100 to capture images.
  • the “other-photographing” means that the camera is facing away from the holder of the electronic terminal 100 to take images.
  • the electronic terminal 100 defines a bending line at its asymmetrical position.
  • the flexible display screen 50 is divided into an exposed first screen 51 and a second screen 53 (as shown in FIG. 7).
  • the angle between the plane where the first screen 51 is located and the plane where the second screen 53 is located is greater than a preset threshold, for example, greater than 10 degrees.
  • the processor 40 determines that the electronic terminal 100 is in a tablet state.
  • the angle between the plane where the first screen 51 is located and the plane where the second screen 53 is located can be measured by an angle sensor, a distance sensor, or the like. Specifically, when the measurement is performed by a distance sensor, the distance sensor measures the displacement between the sliders of the hinge between the first screen 51 and the second screen 53, and the processor 40 is The displacement determines the angle between the plane where the first screen 51 is located and the plane where the second screen 53 is located, and further determines whether the electronic terminal 100 is in a flat state or a bent state.
  • the bending line is not set on the middle axis of symmetry of the electronic terminal 100, but is offset to a screen by a predetermined distance, when the electronic terminal 100 is along its axis
  • the sizes of the first screen 51 and the second screen 53 formed after the bending line is bent are different.
  • the bending line is offset to the first screen 51, that is, the size of the first screen 51 is relatively smaller than the size of the second screen 53.
  • the terminal body 10 includes a first end 101 and a second end 102 opposite to each other. The first end 101 is disposed adjacent to the first screen 51, and the second end 102 is disposed adjacent to the second screen 53.
  • the front surface 11 defines a first area 1011 on the first end 101.
  • the back surface 12 defines a second area 1021 on the second end 102.
  • the second area 1021 is exposed from one side of the first area 1011.
  • the first area 1011 does not block the second area 1021.
  • the front camera 20 is arranged on the first area 1011.
  • the rear camera 30 is provided on the second area 1021.
  • the distance between the front camera 20 and the rear camera 30 is less than a preset distance, for example, The distance between the front camera 20 and the rear camera 30 is smaller than the distance between binocular cameras, so that it is convenient to form a binocular camera and the like. It can be understood that in other embodiments, the distance between the front camera 20 and the rear camera 30 may not be limited by this, and can be specifically set according to actual needs.
  • the front camera 20 and the rear camera 30 do not block each other, and the processor 40 can therefore control the front camera 20 and the rear camera 30.
  • the rear camera 30 is combined to form a combined camera for capturing images.
  • the electronic terminal 100 can determine whether to control the combination of the front camera 20 and the rear camera 30 to form a combined camera according to the user's selection. If it is not necessary to form a combined camera, it will not be combined. . If a combination is required, it is combined into a camera to take an image according to the actual situation, so that each camera of the electronic terminal 100 can be utilized to the maximum.
  • a flashlight, a proximity sensor, etc. are also provided on the second area 1021.
  • the flashing light, proximity sensor, etc. may also be arranged on the first area 1011.
  • part of the flashing light, proximity sensor, etc. may also be arranged on the first area 1011, and the other part may be arranged on the second area 1021, which is not limited here. Actually need to be set.
  • the side of the flexible display screen 50 close to the first end 101 is adjacent to the first area 1011.
  • the electronic terminal 100 can realize a narrow frame.
  • the processor 40 controls the front camera 20 and the rear camera 30 to combine into a front combined camera for shooting. Further, in one of the embodiments, the processor 40 controls to display the images taken by the front combined camera formed by the combination of the front camera 20 and the rear camera 30 on the flexible display 50 On the first screen 51. It is understandable that, in one of the embodiments, the processor 40 can also control the images taken by the front combined camera formed by the combination of the front camera 20 and the rear camera 30 to be simultaneously displayed on the On the second screen 53. In this way, others can watch the effect of the self-portrait or give shooting suggestions.
  • the processor 40 controls the front camera 20 and the rear camera 30 to combine to form a rear combined camera for shooting.
  • the processor 40 controls the image taken by the rear combination camera formed by the combination of the front camera 20 and the rear camera 30 to be displayed on the second screen of the flexible display 50 53 on.
  • the processor 40 may also control the images taken by the rear combination camera formed by the combination of the front camera 20 and the rear camera 30 to be simultaneously displayed on the On the first screen 51 of the flexible display 50. Thereby, it is convenient for others to view the captured image or provide shooting opinions.
  • the processor 40 determines the shooting requirement in response to the user's first operation.
  • the shooting requirement includes self-portrait or other shooting.
  • the processor 40 controls at least one of the front camera 20 and the rear camera 30 to capture images according to the shooting requirement.
  • the front camera 20 includes at least one front camera; the rear camera 30 includes at least one rear camera 30.
  • the processor 40 selects one of the combined camera, the front camera 20, and the rear camera 30 to take an image in response to the second operation of the user, wherein the combined camera includes the combined front camera and The combined rear camera. Therefore, even in the case of combining a combined camera, the front camera 20 or the rear camera 30 can still be selected to capture images, so as to adapt to some special situations, for example, a situation where the battery is relatively low.
  • the processor 40 controls the first screen 51 or the second screen 53 to receive the first operation, and according to In the first operation, it is determined that the shooting demand is a self-portrait or another shooting.
  • the processor 40 determines that the shooting requirement is a selfie according to the first operation, it controls the first screen 51 to receive the second operation; or, the processor 40 is determining according to the first operation
  • the second screen 53 is controlled to receive the second operation.
  • the front camera 20 includes a front camera 20; the rear camera 30 includes a rear camera 30.
  • the processor 40 controls the front camera 20 and the rear camera 30 according to the functions of the front camera 20 and the rear camera 30.
  • One of the rear cameras 30 performs shooting, or the front camera 20 and the rear camera 30 are controlled to combine to form a binocular camera for shooting.
  • the processor 40 may control the rear camera 30 to take a selfie, or the processor 40 may control the front camera 20 and the rear camera 30 to form a binocular camera to take a selfie.
  • the present application uses the rear camera 30 or the binocular camera composed of the front camera 20 and the rear camera 30 to perform The selfie effect is better for selfies.
  • the processor 40 may control one camera or two of the front camera 20 and the rear camera 30 to take photos.
  • the processor 40 may control the front camera 20 to perform other shooting, or the processor 40 may control the front camera 20 and the rear camera 30 to form a binocular camera for other shooting.
  • the processor 40 controls the front camera 20 and the rear camera 30 to form a binocular camera for shooting
  • One of the cameras 30 takes a color image
  • the other camera takes a black-and-white image
  • the processor 40 synthesizes the color image and the black-and-white image, and uses the color image to adjust the color of the composite image.
  • the black and white image adjusts the depth of the composite image, so as to obtain a better shot image.
  • the front camera 20 includes a front camera 20, and the rear camera 30 includes two rear cameras 30.
  • the processor 40 controls the front camera 20 according to the functions of the front camera 20 and the two rear cameras 30 Shooting with one of the two rear cameras 30, or, the processor 40 controls the front camera 20 and two or three of the two rear cameras 30 to perform the combination.
  • the processor 40 may control the two rear cameras 30 to take a selfie, or the processor 40 may control the front camera 20 and one of the rear cameras 30 to form a dual camera.
  • the eye camera takes a self-portrait
  • the processor 40 controls the front camera 20 and the two rear cameras 30 to take a self-portrait. Therefore, for selfies, compared to the configuration of the front camera of the existing smart terminal, the rear camera 30 or the camera composed of the front camera 20 and the rear camera 30 of the present application has a better self-portrait effect.
  • the processor 40 may control the front camera 20 to perform other shooting, or the processor 40 may control the front camera 20 and one of the rear cameras 30 to form a binocular camera Other shooting is performed, or the processor 40 controls the front camera 20 and the two rear cameras 30 to combine to perform the other shooting.
  • the front camera 20 includes two front cameras 20, and the rear camera 30 includes two rear cameras 30.
  • the processor 40 controls the two front cameras 20 and the two rear cameras 30 according to their functions.
  • the two front cameras 20 and one of the two rear cameras 30 perform shooting, or the processor 40 controls two of the two front cameras 20 and the two rear cameras 30 , Three or four cameras are combined to shoot.
  • the front camera 20 includes two front cameras 20, and the rear camera 30 includes one rear camera 30.
  • the processor 40 controls the two front cameras according to the functions of the two front cameras 20 and the rear camera 30.
  • One of the two front cameras 20 and the rear camera 30 performs shooting, or the processor 40 controls two or three of the two front cameras 20 and the rear camera 30 to combine After shooting.
  • the front camera 20 may include but is not limited to two front cameras 20.
  • the rear camera 30 may include but is not limited to two rear cameras 30. This is not limited, it can be set according to actual needs.
  • the functions of each camera in the front camera 20 and the rear camera 30 may be different.
  • the front camera 20 and the rear camera 30 may be, but not limited to, one of a wide-angle camera, a telephoto camera, a 3D camera, etc., respectively.
  • the processor 40 controls the front camera 20 and the rear camera 30 when determining that a wide-angle camera is needed for shooting The wide-angle camera in the camera for shooting.
  • the processor 40 determines that a telephoto camera is required for shooting, and controls the front camera 20 and the rear camera 30 in the telephoto camera for shooting.
  • the processor 40 controls the front camera 20 and the rear camera 30 when determining that a 3D camera is needed for shooting The 3D camera in the camera for shooting.
  • the electronic terminal 100 further includes a memory 60.
  • the processor 40 is electrically connected to the processor 60.
  • the memory 60 may be a computer-readable storage medium such as a memory card, solid-state memory, micro hard disk, and optical disk.
  • the memory 60 stores a number of program instructions, and the program instructions can be called by the processor 10 to perform the aforementioned functions.
  • FIG. 12 is a flowchart of a shooting method in an embodiment of this application.
  • the shooting method is applied to the aforementioned electronic terminal 100, and the execution sequence is not limited to the sequence shown in FIG. 12.
  • the shooting method includes the steps:
  • Step S1201 Determine whether the electronic terminal 100 is in a bent state. When the electronic terminal 100 is in a bent state, step S1202 is executed. Otherwise, it ends.
  • Step S1202 When the electronic terminal 100 is in a bent state, respond to the user's operation to control the front camera 20 and the rear camera 30 to form a combined camera and control the combined camera to capture images, wherein the front camera The camera 20 and the rear camera 30 do not block each other in the bent state.
  • the user operation refers to the operation of selecting to combine the front camera 20 and the rear camera 30 into a combined camera.
  • the electronic terminal 100 can determine whether to control the front camera 20 and the rear camera 30 to combine to form a combined camera according to the user's choice. If it is not required to form a combined camera, it does not combination. If a combination is required, it is combined into a camera to take an image according to the actual situation, so that each camera of the electronic terminal 100 can be utilized to the maximum.
  • the front camera 20 and the rear camera 30 are combined to form a combined camera and control the combined camera to shoot Images, including:
  • the front camera 20 and the rear camera 30 are controlled to combine to form a front combined camera in response to a user operation and the front combined camera is controlled to capture images.
  • the shooting method when taking a selfie in a bent state, the front camera 20 and the rear camera 30 are combined to form a front combined camera in response to a user operation, and the front combined camera is controlled After the camera captures the image, the shooting method further includes:
  • the image taken by the front combined camera formed by the combination of the front camera 20 and the rear camera 30 is controlled to be displayed on the first screen 51 of the flexible display screen 50.
  • the shooting method when taking a selfie in a bent state, the front camera 20 and the rear camera 30 are combined to form a front combined camera in response to a user operation, and the front combined camera is controlled After the camera captures the image, the shooting method further includes:
  • the front camera 20 and the rear camera 30 are combined to form a combined camera and use the combined camera to shoot Images, including:
  • the front camera 20 and the rear camera 30 are controlled to combine to form a rear combined camera and the rear combined camera is controlled to capture images.
  • the shooting method further includes the steps:
  • the image taken by the rear combination camera formed by the combination of the front camera 20 and the rear camera 30 is controlled to be displayed on the second screen 53 of the flexible display screen 50.
  • the shooting method further includes the steps:
  • the image taken by the rear combined camera formed by combining the front camera 20 and the rear camera 30 is controlled to be displayed on the first screen 51 of the flexible display 50 at the same time.
  • the processor 40 determines the shooting requirement in response to the user's first operation.
  • the shooting requirement includes self-portrait or other shooting.
  • the processor 40 controls at least one of the front camera 20 and the rear camera 30 to capture images according to the shooting requirement.
  • the front camera 20 includes at least one front camera; the rear camera 30 includes at least one rear camera 30.
  • the processor 40 selects one of the combined camera, the front camera 20, and the rear camera 30 to take an image in response to the second operation of the user, wherein the combined camera includes the combined front camera and The combined rear camera. Therefore, even in the case of combining a combined camera, the front camera 20 or the rear camera 30 can still be selected to capture images, so as to adapt to some special situations, for example, a situation where the battery is relatively low.
  • the processor 40 controls the first screen 51 or the second screen 53 to receive the first operation, and according to In the first operation, it is determined that the shooting demand is a self-portrait or another shooting.
  • the processor 40 determines that the shooting requirement is a selfie according to the first operation, it controls the first screen 51 to receive the second operation; or, the processor 40 is determining according to the first operation
  • the second screen 53 is controlled to receive the second operation.
  • the front camera 20 includes at least one front camera 20
  • the rear camera 30 includes at least one rear camera 30.
  • the shooting method further includes the steps:
  • the at least one front camera 20 is controlled according to the functions of the at least one front camera 20 and the at least one rear camera 30 And at least one of the at least one rear camera 30 to take an image.
  • the front camera 20 includes a front camera 20; the rear camera 30 includes a rear camera 30.
  • the at least one front camera 20 is controlled according to the functions of the at least one front camera 20 and the at least one rear camera 30 Taking images with at least one of the at least one rear camera 30 includes:
  • the front camera 20 and the rear camera 30 are controlled according to the functions of the front camera 20 and the rear camera 30 One of the cameras 30 performs shooting, or the front camera 20 and the rear camera 30 are controlled to form a binocular camera for shooting.
  • the front-facing camera 20 includes a front-facing camera 20; when the electronic terminal 100 in the bent state requires a self-portrait or other shooting , Controlling at least one of the at least one front camera 20 and the at least one rear camera 30 to capture images according to the functions of the at least one front camera 20 and the at least one rear camera 30 includes:
  • the front camera 20 and the two rear cameras 30 are controlled according to the functions of the front camera 20 and the two rear cameras 30.
  • One of the two rear cameras 30 performs shooting, or the processor 40 controls two or three of the front camera 20 and the two rear cameras 30 to perform shooting after being combined.
  • the front camera 20 includes two front cameras 20; the rear camera 30 includes two rear cameras 30; when the electronic terminal 100 is in a bent state
  • at least one of the at least one front camera 20 and the at least one rear camera 30 is controlled according to the functions of the at least one front camera 20 and the at least one rear camera 30
  • a camera takes images, including:
  • the two front cameras are controlled according to the functions of the two front cameras 20 and the two rear cameras 30 20 and one of the two rear cameras 30 for shooting, or the processor 40 controls two, three, or two of the two front cameras 20 and the two rear cameras 30 The four cameras are combined to shoot.
  • the front camera 20 includes two front cameras 20; the rear camera 30 includes a rear camera 30; when the electronic terminal 100 When the shooting requirement in the bent state is a selfie or other shooting, the at least one front camera 20 and the at least one rear camera are controlled according to the functions of the at least one front camera 20 and the at least one rear camera 30 At least one camera in the set camera 30 takes images, including:
  • the two front-facing cameras 20 and the rear camera 30 are controlled according to the functions of the two front-facing cameras 20 and the rear camera 30.
  • One of the rear cameras 30 performs shooting, or the processor 40 controls two or three of the two front cameras 20 and the rear camera 30 to shoot after being combined.
  • the bendable electronic terminal and the shooting method thereof of the present application when the electronic terminal is in a bent state, the front camera and the rear camera are controlled to form a combined camera, which can save the production cost of a set of cameras and Arrange the space to maximize the use of each camera of the electronic terminal.
  • the program can be stored in a computer readable storage medium.
  • the program may include the processes of the above-mentioned method embodiments, and specifically include at least: judging whether the electronic terminal is in a bent state; when the electronic terminal is in a bent state, responding to user operations to control the front
  • the front camera and the rear camera are combined to form a combined camera and control the combined camera to capture images, wherein the front camera and the rear camera do not block each other in a bent state.
  • the computer storage medium is the memory, which may be a magnetic disk, an optical disk, a read-only memory (Read-Only Memory, ROM), or a random access memory (Random Access Memory, for short). RAM) etc.

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Abstract

一种可弯折的电子终端(100),包括终端本体(10)、前置摄像头(20)、后置摄像头(30)和处理器(40),终端本体(10)包括相对设置的正面(11)和背面(12),前置摄像头(20)设置在终端本体(10)的正面(11)上,后置摄像头(30)设置在终端本体(10)的背面(12)上;当电子终端(100)处于弯折状态时,处理器(40)控制前置摄像头(20)和后置摄像头(30)组合形成组合摄像头并控制组合摄像头拍摄图像,其中,前置摄像头(20)和后置摄像头(30)在电子终端(100)处于弯折状态下互不遮挡。还公开了一种拍摄方法及计算机可读存储介质。从而,丰富了摄像头组合的多样性,并减少一组摄像头的生产成本及其所占空间。

Description

可弯折的电子终端及其拍摄方法 技术领域
本申请涉及一种摄像设备,尤其涉及一种可弯折的电子终端及其拍摄方法。
背景技术
对于传统的直板电子终端,摄像头的组合方式为将排列在电子终端同一面上的两个及以上摄像头组合拍摄图像,比如,将排列在电子终端正面上的两个及以上的摄像头的组合用于拍摄图像,或者,将排列在电子终端背面上的两个及以上的摄像头组合用于拍摄图像。随着柔性显示屏的出现,可弯折的电子终端成为新的潮流。然而,这种传统的摄像头的组合方式并不能使可弯折的电子终端的摄像头实现最大化利用。
发明内容
本申请实施例公开一种可弯折的电子终端及其拍摄方法,能够在可弯折的电子终端处于弯折状态时,控制其前置摄像头和后置摄像头组合成组合摄像头以用于拍摄图像,从而可以实现摄像头的最大化利用。
本申请实施例公开的可弯折的电子终端,包括终端本体、前置摄像头、后置摄像头和处理器。所述终端本体包括相对设置的正面和背面。所述前置摄像头设置在所述终端本体的正面上。所述后置摄像头设置在所述终端本体的背面上。当所述电子终端处于弯折状态时,所述处理器控制所述前置摄像头和所述后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像。其中,所述前置摄像头和所述后置摄像头在所述电子终端处于弯折状态下互不遮挡。
本申请实施例公开的拍摄方法,应用于可弯折的电子终端上。所述电子终端还包括前置摄像头和后置摄像头。所述拍摄方法包括步骤:判断所述电子终端是否处于弯折状态;当所述电子终端处于弯折状态时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像。其中,所述前置摄像头和所述后置摄像头在所述电子终端处于弯折状态下互不遮挡。
本申请实施例公开的计算机可读存储介质,所述计算机可读存储介质中存储有拍摄程序指令,所述拍摄程序指令供处理器调用执行后,执行所述拍摄方法的步骤。
本申请的可弯折的电子终端及其拍摄方法,当所述电子终端处于弯折状态时,控制其前置摄像头和后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像,可以使电子终端的各个摄像头得到最大化利用。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例中所需要拍摄图像的附 图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请一实施例中的可弯折的电子终端的模块示意图。
图2为本申请一实施例中的可弯折的电子终端在平板状态下的俯视图。
图3为本申请一实施例中的可弯折的电子终端在弯折状态下的俯视图。
图4为本申请一实施例中的可弯折的电子终端在平板状态下进行自拍的示意图。
图5为本申请一实施例中的可弯折的电子终端在平板状态下进行他拍的示意图。
图6为本申请一实施例中的可弯折的电子终端在弯折状态下进行自拍的示意图。
图7为本申请一实施例中的可弯折的电子终端在弯折状态下进行他拍的示意图。
图8为本申请一实施例中的可弯折的电子终端具有一个前置摄像头和一个后置摄像头的结构示意图。
图9为本申请一实施例中的可弯折的电子终端具有一个前置摄像头和两个后置摄像头的结构示意图。
图10为本申请一实施例中的可弯折的电子终端具有两个前置摄像头和两个后置摄像头的结构示意图。
图11为本申请一实施例中的可弯折的电子终端具有两个前置摄像头和一个后置摄像头的结构示意图。
图12为本申请一实施例中应用于可弯折的电子终端的拍摄方法的流程示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请的说明书和权利要求书及上述附图中的术语“包括”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、***、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或单元。本申请的说明书和权利要求书及上述附图中的术语“第一”和“第二”等是用于区别不同对象,而非用于描述特定顺序。
请参阅图1,图1为本申请一实施例中的电子终端100的模块示意图。所述电子终端100可以是但不限于手机、平板电脑等可弯折的终端设备。所述电子终端100包括终端本体10、前置摄像头20、后置摄像头30、处理器40和柔性显示屏50。所述处理器40可为微控制器、微处理器、单片机、数字信号处理器等。所述处理器40分别与所述前置摄像头20、后置摄像头30和柔性显示屏50电性连接。请一并参考图2和图3,图2是所述电子终端100处于平板 状态下的结构示意图。图3是所述电子终端100处于弯折状态下的结构示意图。所述终端本体10包括相对设置的正面11和背面12。其中,所述正面11是指所述终端本体10设置所述柔性显示屏50的一面。所述背面12是指与所述正面11相对设置的一面。所述前置摄像头20设置在所述终端本体10的正面11上。所述后置摄像头30设置在所述终端本体10的背面12上。当所述电子终端100处于弯折状态时,所述处理器40控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头并控制所述组合摄像头拍摄图像,其中,所述前置摄像头20和所述后置摄像头30在所述电子终端100处于弯折状态下互不遮挡。
从而,当所述电子终端100处于弯折状态时,所述处理器40控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头,并控制所述组合摄像头拍摄图像,其丰富了所述电子终端100的摄像头使用的多样性,并使所述电子终端100的摄像头得到最大化利用。
具体地,请一并参考图2,当所述电子终端100处于平板状态时,所述柔性显示屏50作为一整块屏幕用于内容显示。当所述电子终端100利用所述前置摄像头20进行自拍时,所述处理器40控制所述前置摄像头20所拍摄的图像显示在所述柔性显示屏50上。例如,如4所示,所述处理器40控制所述前置摄像头20所拍摄的人物图像显示在所述柔性显示屏50上。同理,当所述电子终端100利用所述后置摄像头30进行他拍时,所述处理器40控制所述后置摄像头30所拍摄的图像显示在所述柔性显示屏50上。例如,如图5所示,所述处理器40控制所述后置摄像头30所拍摄的景物图像显示在所述柔性显示屏50上。
其中,所述“自拍”是指摄像头朝向靠近所述电子终端100持有者的一侧进行拍摄图像。所述“他拍”是指摄像头朝向远离所述电子终端100持有者的一侧进行拍摄图像。
具体地,请一并参考图3,所述电子终端100在其非对称位置定义有弯折线。所述电子终端100沿其弯折线朝向所述背面12的方向弯折时,所述柔性显示屏50在弯折后被划分为外露的第一屏幕51和第二屏幕53(如图7所示)。当所述电子终端100处于弯折状态时,所述第一屏幕51所在的平面与所述第二屏幕53所在的平面的夹角大于预设阈值,例如,大于10度。当然,当所述第一屏幕51所在的平面与所述第二屏幕53所在的平面的夹角小于预设阈值时,所述处理器40确定所述电子终端100处于平板状态。可以理解的是,所述第一屏幕51所在的平面与所述第二屏幕53所在的平面之间的夹角可以通过角度传感器、距离传感器等方式测得。具体地,当通过距离传感器进行测量时,所述距离传感器测量位于所述第一屏幕51和所述第二屏幕53之间的铰链的滑块之间的位移量,所述处理器40根据所述位移量确定所述第一屏幕51所在的平面与所述第二屏幕53所在的平面之间的夹角,并进而确定所述电子终端100是处于平板状态还是弯折状态。
具体地,在其中一实施例中,由于所述弯折线没有设置在所述电子终端100的正中间对称轴上,而是向一屏幕偏移预定距离,因此,当所述电子终端100沿其弯折线弯折后形成的第一屏幕51和第二屏幕53的尺寸不同。在本实施方式中,弯折线向第一屏幕51偏移,即,所述第一屏幕51的尺寸相对小于所述第二屏幕53的尺寸。进一步地,所述终端本体10包括相 对设置的第一端101和第二端102。所述第一端101邻近所述第一屏幕51设置,所述第二端102邻近所述第二屏幕53设置。所述正面11在所述第一端101上定义有第一区域1011。所述背面12在所述第二端102上定义有第二区域1021。所述电子终端100沿其弯折线非对称弯折时,所述第二区域1021从所述第一区域1011的一侧露出。所述第一区域1011不遮挡所述第二区域1021。所述第一区域1011上设置有所述前置摄像头20。所述第二区域1021上设置有所述后置摄像头30。进一步地,在其中一实施例中,所述电子终端100沿其弯折线发生非对称弯折时,所述前置摄像头20和所述后置摄像头30之间的距离小于预设距离,例如,所述前置摄像头20和所述后置摄像头30之间的距离小于双目摄像头之间的距离,从而方便组成双目摄像头等。可以理解的是,在其它实施例中,所述前置摄像头20和所述后置摄像头30之间的距离可以不受此限制,具体可根据实际需要设置。
从而,当所述电子终端100处于弯折状态时,所述前置摄像头20和所述后置摄像头30之间互不遮挡,所述处理器40因而可以控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头以用于拍摄图像。当然,可以理解的是,所述电子终端100可以根据用户的选择确定是否要控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头,如果不需要组成组合摄像头时,则不组合。如果需要组合时,则根据实际情况组合成组成摄像头拍摄图像,使得所述电子终端100的各个摄像头能够得到最大化利用。
可以理解的是,在其中一实施例中,所述第二区域1021上还设置有闪光灯、接近传感器等。在另一实施例中,所述闪过灯、接近传感器等还可以设置在第一区域1011上。在又一实施例中,所述闪过灯、接近传感器等还可以一部分设置在所述第一区域1011上,另一部分设置在所述第二区域1021上,在此不做限定,具体可根据实际需要设置。
进一步地,在其中一实施例中,所述柔性显示屏50靠近所述第一端101的一侧与所述第一区域1011相邻设置。从而,所述电子终端100可以实现窄边框。
具体地,在其中一实施例中,请一并参考图6,当在弯折状态下进行自拍时,用户将所述电子终端100翻转使得所述前置摄像头20和所述后置摄像头30均朝向用户一侧,所述处理器40控制所述前置摄像头20和所述后置摄像头30组合成前置组合摄像头进行拍摄。进一步地,在其中一实施例中,所述处理器40控制将由所述前置摄像头20和所述后置摄像头30组合形成的前置组合摄像头所拍摄的图像显示在所述柔性显示屏50的第一屏幕51上。可以理解的是,在其中一实施例中,所述处理器40还可以控制将由所述前置摄像头20和所述后置摄像头30组合形成的前置组合摄像头所拍摄的图像同时显示在所述第二屏幕53上。这样,他人可以对自拍图像的效果进行观赏或者给出拍摄建议等。
具体地,在其中一实施例中,请一并参考图7,当在弯折状态下进行他拍时,用户将所述电子终端100翻转使得所述前置摄像头20和所述后置摄像头30均朝向背离用户的一侧,所述处理器40控制所述前置摄像头20和所述后置摄像头30组合形成后置组合摄像头进行拍摄。在其中一实施例中,所述处理器40控制将由所述前置摄像头20和所述后置摄像头30组合形 成的后置组合摄像头所拍摄的图像显示在所述柔性显示屏50的第二屏幕53上。可以理解的是,在其中一实施例中,所述处理器40还可以控制将由所述前置摄像头20和所述后置摄像头30组合形成的后置组合摄像头所拍摄的图像同时显示在所述柔性显示屏50的第一屏幕51上。从而,方便他人对所拍摄的图像就行观赏或者提出拍摄意见等。
当所述电子终端100在弯折状态下时,所述处理器40响应用户的第一操作确定拍摄需求。其中,所述拍摄需求包括自拍或他拍。所述处理器40根据所述拍摄需求控制所述前置摄像头20和所述后置摄像头30中的至少一个摄像头拍摄图像。
具体地,在其中一实施例中,所述前置摄像头20包括至少一个前置摄像头;所述后置摄像头30包括至少一个后置摄像头30。所述处理器40响应用户的第二操作选择所述组合摄像头、所述前置摄像头20和所述后置摄像头30其中之一拍摄图像,其中,所述组合摄像头包括所述组合前置摄像头和所述组合后置摄像头。从而,即使在组合成组合摄像头的情况下,仍然可以选择所述前置摄像头20或所述后置摄像头30进行拍摄图像,从而适应一些比较特殊的情况,例如,电量比较低的情况。
进一步地,在其中一实施例中,所述电子终端100在弯折状态下时,所述处理器40控制所述第一屏幕51或所述第二屏幕53接收所述第一操作,并根据所述第一操作确定所述拍摄需求为自拍或者他拍。所述处理器40在根据所述第一操作确定所述拍摄需求为自拍时,控制所述第一屏幕51接收所述第二操作;或,所述处理器40在根据所述第一操作确定所述拍摄需求为他拍时,控制所述第二屏幕53接收所述第二操作。从而,可以节约能耗。
请一并参考图8,在其中一实施例中,所述前置摄像头20包括一个前置摄像头20;所述后置摄像头30包括一个后置摄像头30。当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,所述处理器40根据所述前置摄像头20和所述后置摄像头30的功能控制所述前置摄像头20和所述后置摄像头30中的一个摄像头进行拍摄,或者,控制所述前置摄像头20和所述后置摄像头30组合形成双目摄像头进行拍摄。例如,所述处理器40可控制所述后置摄像头30进行自拍,或,所述处理器40可控制所述前置摄像头20和所述后置摄像头30组成双目摄像头进行自拍。从而,对于自拍而言,相较现有的智能终端的前置摄像头的配置,本申请采用所述后置摄像头30或者所述前置摄像头20和所述后置摄像头30组成的双目摄像头进行自拍的自拍效果更好。当进行他拍时,所述处理器40可控制所述前置摄像头20和所述后置摄像头30中的一个摄像头或者两个摄像头进行拍摄。例如,所述处理器40可控制所述前置摄像头20进行他拍,或,所述处理器40控制所述前置摄像头20和所述后置摄像头30组成双目摄像头进行他拍。
可以理解的是,在其中一实施例中,所述处理器40控制所述前置摄像头20和所述后置摄像头30组成双目摄像头进行拍摄时,所述前置摄像头20和所述后置摄像头30中的其中一个摄像头拍摄彩色图像,另一个摄像头拍摄黑白图像;所述处理器40根据所述彩色图像和所述黑白图像进行合成,并利用所述彩色图像调整合成图像的色彩,利用所述黑白图像调整合成 图像的深浅,从而得到效果更好的拍摄图像。
在其中一实施例中,请参考图9,所述前置摄像头20包括一个前置摄像头20,所述后置摄像头30包括两个后置摄像头30。所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,所述处理器40根据所述前置摄像头20和所述两个后置摄像头30的功能控制所述前置摄像头20和所述两个后置摄像头30中的一个摄像头进行拍摄,或者,所述处理器40控制所述前置摄像头20和所述两个后置摄像头30中的两个或者三个摄像头组合后进行拍摄。例如,当进行自拍时,所述处理器40可控制所述两个后置摄像头30进行自拍,或,所述处理器40控制所述前置摄像头20和其中一个所述后置摄像头30组成双目摄像头进行自拍,或者,所述处理器40控制所述前置摄像头20和所述两个后置摄像头30进行自拍。从而,对于自拍而言,相较现有的智能终端的前置摄像头的配置,本申请的后置摄像头30或者前置摄像头20和后置摄像头30组成的摄像头进行自拍的自拍效果更好。当进行他拍时,所述处理器40可控制所述前置摄像头20进行他拍,或,所述处理器40控制所述前置摄像头20和其中一个所述后置摄像头30组成双目摄像头进行他拍,或,所述处理器40控制所述前置摄像头20和所述两个后置摄像头30组合后进行他拍。
请一并参考图10,在其中一实施例中,所述前置摄像头20包括两个前置摄像头20,所述后置摄像头30包括两个后置摄像头30。所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,所述处理器40根据所述两个前置摄像头20和所述两个后置摄像头30的功能,控制所述两个前置摄像头20和所述两个后置摄像头30中的一个摄像头进行拍摄,或者,所述处理器40控制所述两个前置摄像头20和所述两个后置摄像头30中的两个、三个或者四个摄像头在组合后进行拍摄。
请一并参考图11,在其中一实施例中,所述前置摄像头20包括两个前置摄像头20,所述后置摄像头30包括一个后置摄像头30。当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,所述处理器40根据所述两个前置摄像头20和所述后置摄像头30的功能控制所述两个前置摄像头20和所述后置摄像头30中的一个摄像头进行拍摄,或者,所述处理器40控制所述两个前置摄像头20和所述后置摄像头30中的两个或者三个摄像头在组合后进行拍摄。
可以理解的是,在其它实施例中,所述前置摄像头20可以包括但不限于两个前置摄像头20,当然,所述后置摄像头30可以包括但不限于两个后置摄像头30,在此不做限定,具体可以根据实际需要进行设置。
可以理解的是,在其中一实施例中,所述前置摄像头20和所述后置摄像头30中的各个摄像头的功能可以不一样。例如,所述前置摄像头20和所述后置摄像头30可以分别是但不限于广角摄像头、长焦摄像头、3D摄像头等的其中一种。当所述前置摄像头20和所述后置摄像头30中至少包括一个广角摄像头时,所述处理器40在确定需要广角摄像头进行拍摄时,控制所述前置摄像头20和所述后置摄像头30中的广角摄像头进行拍摄。当所述前置摄像头20和 所述后置摄像头30中至少包括一个长焦摄像头时,所述处理器40在确定需要长焦摄像头进行拍摄,控制所述前置摄像头20和所述后置摄像头30中的长焦摄像头进行拍摄。当所述前置摄像头20和所述后置摄像头30中至少包括一个3D摄像头时,所述处理器40在确定需要3D摄像头进行拍摄时,控制所述前置摄像头20和所述后置摄像头30中的3D摄像头进行拍摄。
可以理解的是,在其中一实施例中,所述电子终端100还包括存储器60。所述处理器40与所述处理器60电性连接。所述存储器60可为存储卡、固态存储器、微硬盘、光盘等计算机可读存储介质。在一些实施例中,所述存储器60中存储有若干程序指令,所述程序指令可被处理器10调用后执行前述的功能。
请参阅图12,为本申请一实施例中的拍摄方法的流程图。所述拍摄方法应用于前述的电子终端100中,执行顺序并不限于图12所示的顺序。所述拍摄方法包括步骤:
步骤S1201,判断所述电子终端100是否处于弯折状态。当所述电子终端100处于弯折状态时,执行步骤S1202。否则,结束。
步骤S1202,当所述电子终端100处于弯折状态时,响应用户操作控制所述前置摄像头20和所述后置摄像头30形成组合摄像头并控制所述组合摄像头拍摄图像,其中,所述前置摄像头20和所述后置摄像头30在弯折状态下互不遮挡。
其中,所述用户操作是指选择将所述前置摄像头20和所述后置摄像头30组合成组合摄像头的操作。当然,可以理解的是,所述电子终端100可以根据用户的选择确定是否要控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头,如果不需要组成成组合摄像头时,则不组合。如果需要组合时,则根据实际情况组合成组成摄像头拍摄图像,使得所述电子终端100的各个摄像头能够得到最大化利用。
具体地,在其中一实施例中,当所述电子终端100处于弯折状态时,响应用户操作控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头并控制所述组合摄像头拍摄图像,包括:
当在弯折状态下进行自拍时,响应用户操作控制所述前置摄像头20和所述后置摄像头30组合形成前置组合摄像头并控制所述前置组合摄像头拍摄图像。
进一步地,在其中一实施例中,当在弯折状态下进行自拍时,响应用户操作控制所述前置摄像头20和所述后置摄像头30组合形成前置组合摄像头并控制所述前置组合摄像头拍摄图像之后,所述拍摄方法还包括:
控制将由所述前置摄像头20和所述后置摄像头30组合形成的前置组合摄像头所拍摄的图像显示在所述柔性显示屏50的第一屏幕51上。
进一步地,在其中一实施例中,当在弯折状态下进行自拍时,响应用户操作控制所述前置摄像头20和所述后置摄像头30组合形成前置组合摄像头并控制所述前置组合摄像头拍摄图像之后,所述拍摄方法还包括:
控制将由所述前置摄像头20和所述后置摄像头30组合形成的前置组合摄像头所拍摄的 图像同时显示在所述第二屏幕53上。
具体地,在其中一实施例中,当所述电子终端100处于弯折状态时,响应用户操作控制所述前置摄像头20和所述后置摄像头30组合形成组合摄像头并利用所述组合摄像头拍摄图像,包括:
当在弯折状态下进行他拍时,控制所述前置摄像头20和所述后置摄像头30均组合形成后置组合摄像头并控制所述后置组合摄像头拍摄图像。
具体地,在其中一实施例中,当在弯折状态下进行他拍时,控制所述前置摄像头20和所述后置摄像头30组合形成后置组合摄像头并控制所述后置组合摄像头拍摄图像之后,所述拍摄方法还包括步骤:
控制将由所述前置摄像头20和所述后置摄像头30组合形成的后置组合摄像头所拍摄的图像显示在所述柔性显示屏50的第二屏幕53上。
进一步地,在另一实施例中,当在弯折状态下进行他拍时,控制所述前置摄像头20和所述后置摄像头30组合形成后置组合摄像头并控制所述后置组合摄像头拍摄图像之后,所述拍摄方法还包括步骤:
控制将由所述前置摄像头20和所述后置摄像头30组合形成的后置组合摄像头所拍摄的图像还同时显示在所述柔性显示屏50的第一屏幕51上。
当所述电子终端100在弯折状态下时,所述处理器40响应用户的第一操作确定拍摄需求。其中,所述拍摄需求包括自拍或他拍。所述处理器40根据所述拍摄需求控制所述前置摄像头20和所述后置摄像头30中的至少一个摄像头拍摄图像。
具体地,在其中一实施例中,所述前置摄像头20包括至少一个前置摄像头;所述后置摄像头30包括至少一个后置摄像头30。所述处理器40响应用户的第二操作选择所述组合摄像头、所述前置摄像头20和所述后置摄像头30其中之一拍摄图像,其中,所述组合摄像头包括所述组合前置摄像头和所述组合后置摄像头。从而,即使在组合成组合摄像头的情况下,仍然可以选择所述前置摄像头20或所述后置摄像头30进行拍摄图像,从而适应一些比较特殊的情况,例如,电量比较低的情况。
进一步地,在其中一实施例中,所述电子终端100在弯折状态下时,所述处理器40控制所述第一屏幕51或所述第二屏幕53接收所述第一操作,并根据所述第一操作确定所述拍摄需求为自拍或者他拍。所述处理器40在根据所述第一操作确定所述拍摄需求为自拍时,控制所述第一屏幕51接收所述第二操作;或,所述处理器40在根据所述第一操作确定所述拍摄需求为他拍时,控制所述第二屏幕53接收所述第二操作。从而,可以节约能耗。
具体地,在其中一实施例中,所述前置摄像头20包括至少一个前置摄像头20,所述后置摄像头30包括至少一个后置摄像头30,所述拍摄方法还包括步骤:
当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述至少一个前置摄像头20和所述至少一个后置摄像头30的功能控制所述至少一个前置摄像头20和所述至 少一个后置摄像头30中的至少一个摄像头拍摄图像。
具体地,在其中一实施例中,所述前置摄像头20包括一个前置摄像头20;所述后置摄像头30包括一个后置摄像头30。当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述至少一个前置摄像头20和所述至少一个后置摄像头30的功能控制所述至少一个前置摄像头20和所述至少一个后置摄像头30中的至少一个摄像头拍摄图像,包括:
当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述前置摄像头20和所述后置摄像头30的功能控制所述前置摄像头20和所述后置摄像头30的其中一个摄像头进行拍摄,或,控制所述前置摄像头20和所述后置摄像头30组成双目摄像头进行拍摄。
具体地,在其中一实施例中,请一并参考图9,所述前置摄像头20包括一个前置摄像头20;当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述至少一个前置摄像头20和所述至少一个后置摄像头30的功能控制所述至少一个前置摄像头20和所述至少一个后置摄像头30中的至少一个摄像头拍摄图像,包括:
当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述前置摄像头20和所述两个后置摄像头30的功能控制所述前置摄像头20和所述两个后置摄像头30中的一个摄像头进行拍摄,或者,所述处理器40控制所述前置摄像头20和所述两个后置摄像头30中的两个或者三个摄像头在组合后进行拍摄。
具体地,在其中一实施例中,所述前置摄像头20包括两个前置摄像头20;所述后置摄像头30包括两个后置摄像头30;当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述至少一个前置摄像头20和所述至少一个后置摄像头30的功能控制所述至少一个前置摄像头20和所述至少一个后置摄像头30中的至少一个摄像头拍摄图像,包括:
当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述两个前置摄像头20和所述两个后置摄像头30的功能,控制所述两个前置摄像头20和所述两个后置摄像头30中的一个摄像头进行拍摄,或者,所述处理器40控制所述两个前置摄像头20和所述两个后置摄像头30中的两个、三个或者四个摄像头在组合后进行拍摄。
具体地,请一并参考图11,在其中一实施例中,所述前置摄像头20包括两个前置摄像头20;所述后置摄像头30包括一个后置摄像头30;当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述至少一个前置摄像头20和所述至少一个后置摄像头30的功能控制所述至少一个前置摄像头20和所述至少一个后置摄像头30中的至少一个摄像头拍摄图像,包括:
当所述电子终端100在弯折状态下的拍摄需求为自拍或者他拍时,根据所述两个前置摄像头20和所述后置摄像头30的功能控制所述两个前置摄像头20和所述后置摄像头30中的一个摄像头进行拍摄,或者,所述处理器40控制所述两个前置摄像头20和所述后置摄像头30中的两个或者三个摄像头在组合后进行拍摄。
从而,本申请的可弯折的电子终端及其拍摄方法,当所述电子终端处于弯折状态时,控 制其前置摄像头和后置摄像头组合成组合摄像头,可以节省一组摄像头的生产成本及布置空间,使得电子终端的各个摄像头得到最大化利用。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某一些步骤可以采用其它顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本申请所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其它实施例的相关描述。
本申请实施例方法中的步骤可以根据实际需要进行顺序调整、合并和删减。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,所述程序在执行时,可包括如上述各方法的实施例的流程,具体至少包括:判断所述电子终端是否处于弯折状态;当所述电子终端处于弯折状态时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像,其中,所述前置摄像头和所述后置摄像头在弯折状态下互不遮挡。在一些实施例中,所述计算机存储介质即为所述存储器,可为可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存取存储器(Random Access Memory,简称RAM)等。
以上对本申请实施例进行了详细介绍,本文中应用了具体个例对本申请的原理及实施例进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施例及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (22)

  1. 一种可弯折的电子终端,其特征在于,包括终端本体、前置摄像头、后置摄像头和处理器,所述终端本体包括相对设置的正面和背面,所述前置摄像头设置在所述终端本体的正面上,所述后置摄像头设置在所述终端本体的背面上;当所述电子终端处于弯折状态时,所述处理器控制所述前置摄像头和所述后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像,其中,所述前置摄像头和所述后置摄像头在所述电子终端处于弯折状态下互不遮挡。
  2. 如权利要求1所述的电子终端,其特征在于,所述终端本体具有相对设置的第一端和第二端,所述正面在所述第一端上定义有第一区域,所述背面在所述第二端上定义有第二区域,所述电子终端在其非对称位置定义有弯折线,并沿所述弯折线弯折时形成非对称弯折,所述第二区域相对所述第一端外露于所述第一区域,所述前置摄像头设置于所述第一区域内,所述后置摄像头设置于所述第二区域内。
  3. 如权利要求2所述的电子终端,其特征在于,所述电子终端还包括柔性显示屏,所述柔性显示屏设置在所述终端本体的正面上,所述柔性显示屏靠近所述第一端的一侧与所述第一区域相邻设置。
  4. 如权利要求3所述的电子终端,其特征在于,当所述电子终端在弯折状态下进行自拍时,所述处理器控制所述前置摄像头和所述后置摄像头组合形成前置组合摄像头并控制所述前置组合摄像头拍摄图像;或者,当所述电子终端在弯折状态下进行他拍时,所述处理器控制所述前置摄像头和所述后置摄像头组合形成后置组合摄像头并控制所述后置组合摄像头拍摄图像。
  5. 如权利要求4所述的电子终端,其特征在于,所述柔性显示屏沿其弯折线朝向所述背面弯折后被划分为外露的第一屏幕和第二屏幕,所述第一屏幕邻近所述第一区域设置,且所述第一屏幕的尺寸小于所述第二屏幕的尺寸,所述处理器控制将由所述前置摄像头和所述后置摄像头组合形成的前置组合摄像头进行自拍时所拍摄的图像显示在所述柔性显示屏的第一屏幕上。
  6. 如权利要求5所述的电子终端,其特征在于,所述处理器还控制将由所述前置摄像头和所述后置摄像头组合形成的前置组合摄像头所拍摄的图像同时显示在所述第二屏幕上。
  7. 如权利要求4所述的电子终端,其特征在于,所述柔性显示屏沿弯折线弯折后被划分为第一屏幕和第二屏幕,所述第一屏幕邻近所述第一区域设置,且所述第一屏幕的尺寸小于所述第二屏幕的尺寸,所述处理器控制将由所述前置摄像头和所述后置摄像头组合形成的后置组合摄像头进行他拍时所拍摄的图像显示在所述柔性显示屏的第二屏幕上。
  8. 如权利要求7所述的电子终端,其特征在于,所述处理器还控制将由所述前置摄像头和所述后置摄像头组合形成的后置组合摄像头所拍摄的图像同时显示在所述柔性显示屏的第一屏幕上。
  9. 如权利要求5至8任意一项所述的电子终端,其特征在于,所述处理器响应用户的第一操作确定拍摄需求,所述拍摄需求包括自拍或他拍,所述前置摄像头和所述后置摄像头中的至 少一个摄像头拍摄图像。
  10. 如权利要求9所述的电子终端,其特征在于,所述前置摄像头包括至少一个前置摄像头,所述后置摄像头包括至少一个后置摄像头。
  11. 如权利要求10所述的电子终端,其特征在于,所述处理器响应用户的第二操作选择所述组合摄像头、所述前置摄像头和所述后置摄像头其中之一拍摄图像,其中,所述组合摄像头包括所述组合前置摄像头和所述组合后置摄像头。
  12. 如权利要求11所述的电子终端,其特征在于,所述处理器控制所述第一屏幕或所述第二屏幕接收所述第一操作,并在根据所述第一操作确定所述拍摄需求为自拍时,控制所述第一屏幕接收所述第二操作;或所述处理器在根据所述第一操作确定所述拍摄需求为他拍时,控制所述第二屏幕接收所述第二操作。
  13. 一种拍摄方法,应用于可弯折的电子终端上,所述电子终端还包括前置摄像头和后置摄像头,所述拍摄方法包括步骤:
    判断所述电子终端是否处于弯折状态;
    当所述电子终端处于弯折状态时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像,其中,所述前置摄像头和所述后置摄像头在所述电子终端处于弯折状态下互不遮挡。
  14. 如权利要求13所述的拍摄方法,其特征在于,当所述电子终端处于弯折状态时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成组合摄像头并控制所述组合摄像头拍摄图像,包括:
    当在弯折状态下进行自拍时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成前置组合摄像头并控制所述前置组合摄像头拍摄图像;或者,
    当在弯折状态下进行他拍时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成后置组合摄像头并控制所述后置组合摄像头拍摄图像。
  15. 如权利要求14所述的拍摄方法,其特征在于,所述电子终端还包括终端本体和柔性显示屏,所述终端本体包括相对设置的正面和背面,所述前置摄像头设置在所述正面上,所述后置摄像头设置在所述背面上,所述柔性显示屏设置在所述正面上,所述柔性显示屏沿其弯折线朝向所述背面弯折后被划分为外露的第一屏幕和第二屏幕,其中,所述第一屏幕邻近所述前置摄像头设置,所述第二屏幕邻近所述后置摄像头设置;当在弯折状态下进行自拍时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成前置组合摄像头并控制所述前置组合摄像头拍摄图像,包括:
    响应用户操作控制将由所述前置摄像头和所述后置摄像头组合形成的前置组合摄像头拍摄图像并控制所述前置组合摄像头所拍摄的图像显示在所述第一屏幕上。
  16. 如权利要求15所述的拍摄方法,其特征在于,还包括:
    控制将由所述前置摄像头和所述后置摄像头组合形成的前置组合摄像头所拍摄的图像同 时显示在所述第二屏幕上。
  17. 如权利要求14所述的拍摄方法,其特征在于,所述电子终端还包括终端本体和柔性显示屏,所述终端本体包括相对设置的正面和背面,所述前置摄像头设置在所述正面上,所述后置摄像头设置在所述背面上,所述柔性显示屏设置在所述正面上,所述柔性显示屏沿其弯折线朝向所述背面弯折后被划分为外露的第一屏幕和第二屏幕,其中,所述第一屏幕邻近所述前置摄像头设置,所述第二屏幕邻近所述后置摄像头设置;当在弯折状态下进行他拍时,响应用户操作控制所述前置摄像头和所述后置摄像头组合形成后置组合摄像头并控制所述后置组合摄像头拍摄图像,包括:
    控制将由所述前置摄像头和所述后置摄像头组合形成的后置组合摄像头拍摄图像并控制所述后置组合摄像头所拍摄的图像显示在所述柔性显示屏的第二屏幕上。
  18. 如权利要求17所述的拍摄方法,其特征在于,还包括:
    控制将由所述前置摄像头和所述后置摄像头组合形成的后置组合摄像头拍摄图像并控制所述后置组合摄像头所拍摄的图像同时显示在所述柔性显示屏的第一屏幕上。
  19. 如权利要求15至18任一项所述的拍摄方法,其特征在于,所述拍摄方法还包括步骤:
    在弯折状态下时,响应用户的第一操作确定拍摄需求,所述前置摄像头和所述后置摄像头中的至少一个摄像头拍摄图像,所述拍摄需求包括自拍或他拍。
  20. 如权利要求19所述的拍摄方法,其特征在于,所述前置摄像头包括至少一个前置摄像头,所述后置摄像头包括至少一个后置摄像头,所述前置摄像头和所述后置摄像头中的至少一个摄像头拍摄图像,包括:
    响应用户的第二操作选择所述组合摄像头、所述前置摄像头和所述后置摄像头其中之一拍摄图像,其中,所述组合摄像头包括所述组合前置摄像头和所述组合后置摄像头。
  21. 如权利要求20所述的拍摄方法,其特征在于,响应用户的第一操作确定拍摄需求,包括:
    控制所述第一屏幕或所述第二屏幕接收所述第一操作,并根据所述第一操作确定所述拍摄需求为自拍或他拍;
    所述拍摄方法还包括步骤:
    当根据所述第一操作确定所述拍摄需求为自拍时,控制所述第一屏幕接收所述第二操作;或,
    当根据所述第一操作确定所述拍摄需求为他拍时,控制所述第二屏幕接收所述第二操作。
  22. 一种计算机可读存储介质,所述计算机可读存储介质中存储有拍摄程序指令,所述拍摄程序指令供处理器调用执行后,执行所述权利要求13至21任一项所述拍摄方法中的步骤。
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