WO2017096857A1 - 相机拍摄参数调整方法及装置 - Google Patents

相机拍摄参数调整方法及装置 Download PDF

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Publication number
WO2017096857A1
WO2017096857A1 PCT/CN2016/088964 CN2016088964W WO2017096857A1 WO 2017096857 A1 WO2017096857 A1 WO 2017096857A1 CN 2016088964 W CN2016088964 W CN 2016088964W WO 2017096857 A1 WO2017096857 A1 WO 2017096857A1
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Prior art keywords
parameter
camera
photographing
shooting
current
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English (en)
French (fr)
Inventor
姜天宇
张乃雷
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Le Holdings Beijing Co Ltd
Lemobile Information Technology (Beijing) Co Ltd
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Le Holdings Beijing Co Ltd
Lemobile Information Technology (Beijing) Co Ltd
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Priority to US15/245,043 priority Critical patent/US20170163878A1/en
Publication of WO2017096857A1 publication Critical patent/WO2017096857A1/zh
Anticipated expiration legal-status Critical
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    • 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
    • H04N23/64Computer-aided capture of images, e.g. transfer from script file into camera, check of taken image quality, advice or proposal for image composition or decision on when to take image

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  • Embodiments of the present disclosure relate to image processing techniques, for example, to a camera shooting parameter adjustment method and apparatus.
  • the technical solution of the camera shooting adjustment is to solidify the entire calibration scheme into the system layer of the device after setting the parameters affecting the camera shooting in the system development environment.
  • the camera shooting parameters that have been solidified in this way cannot be re-edited.
  • the device system firmware needs to be re-created, resulting in system development, debugging, and optimization. Inconvenience affects the adjustment efficiency of the camera.
  • the inflexible camera shooting parameter modification method will also affect the use and upgrade experience of the camera itself; in addition, in the user application scenario, the general camera calibration scheme may not achieve better shooting results.
  • the present disclosure provides a camera shooting parameter adjustment method and apparatus to improve the shooting effect of the camera.
  • an embodiment of the present disclosure provides a camera shooting parameter adjustment method, where the method includes:
  • the current photographing parameter of the camera is adjusted based on the setting parameter adjustment policy.
  • an embodiment of the present disclosure further provides a camera shooting parameter adjustment device, where the device includes:
  • a setting module configured to determine a target scene according to a current photographing environment when receiving a camera open command, and set a current photographing parameter of the camera by using a parameter configuration initial value corresponding to the target scene;
  • An image generating module is configured to generate a captured image by using the photographing parameter according to the received photographing instruction
  • the adjusting module is configured to adjust the current photographing parameter of the camera based on the setting parameter adjustment strategy when it is recognized that the camera has an abnormal shooting.
  • the camera shooting parameter adjustment scheme of the present disclosure determines a target scene according to a current photographing environment when receiving a camera open command, and sets a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene in the system, and Using the initial photographing parameter to generate a photographed image, when it is recognized that the photographing abnormality occurs in the camera, adjusting the current photographing parameter of the camera based on the setting parameter adjustment strategy to adapt to the photographing scene, improving the photographing effect, and shooting Make the user satisfied with the image, enhance the user experience, and achieve personalized shooting.
  • FIG. 1 is a flowchart of a camera shooting parameter adjustment method according to Embodiment 1 of the present disclosure
  • FIG. 2 is a flowchart of a method for adjusting camera shooting parameters according to Embodiment 2 of the present disclosure
  • FIG. 3 is a flowchart of a method for adjusting camera shooting parameters according to Embodiment 3 of the present disclosure
  • FIG. 4 is a flowchart of a camera shooting parameter adjustment method according to Embodiment 4 of the present disclosure
  • FIG. 5 is a structural block diagram of a camera shooting parameter adjusting apparatus according to Embodiment 5 of the present disclosure.
  • FIG. 6 is a schematic structural diagram of hardware of a terminal device according to Embodiment 7 of the present disclosure.
  • FIG. 1 is a flowchart of a camera shooting parameter adjustment method according to Embodiment 1 of the present disclosure.
  • the initial value of the shooting parameter configuration in the system cannot be met by the user.
  • the shooting parameters are adjusted to take a picture that is satisfactory to the user, and the method can be performed by the camera shooting parameter adjusting device.
  • the device can be implemented in hardware and/or software and can generally be integrated into a terminal device equipped with a camera. The method comprises the following steps:
  • step 110 when receiving a camera open command, determining a target scene according to a current photographing environment, and setting a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene;
  • the camera may be a camera configured on various mobile terminals, such as a camera on a mobile terminal such as a mobile phone or a tablet computer.
  • the camera opening instruction is issued by the user. When the user has a photo request, the camera opening instruction may be issued by starting an application corresponding to the camera on the mobile terminal.
  • the parameter configuration initial value is parameter configuration data that is saved in the system and matched with a certain target scene (for example, "eye”, “night scene”, and “fluorescent light”) when the camera is shipped from the factory, and is called by the camera during the photographing process.
  • the system when the user launches the camera application in a well-lit environment, when the system receives the camera open command, it receives it according to ISP (Image Signal Processing).
  • the data determines the target scene of the current photographing environment, determines the target scene as "gaze”, and then uses the parameter configuration initial value matching the "gaze" scene to set the current photographing parameter of the camera, for example, the sensitivity is set lower;
  • the user launches the camera application in a very dark environment.
  • the system uses the parameter configuration initial value matching the "night scene” scene to set the camera's current camera parameters.
  • the sensitivity may be set higher. At the same time increase the exposure time.
  • the camera's current camera parameters include: focus, sensitivity, aperture size or shutter time.
  • step 120 according to the received photographing instruction, the photographing parameter is used to generate a photographed image
  • the photographing instruction is issued by the user, and the user can issue a photographing instruction by clicking a virtual button corresponding to photographing on the mobile terminal.
  • step 130 if it is recognized that the camera has an abnormality in shooting, the current photographing parameter of the camera is adjusted based on the setting parameter adjustment strategy.
  • the shooting abnormality of the camera may include: an abnormality of the photographing operation of the user and an abnormality of the photographed image, etc., which may represent an abnormal situation that the user may be dissatisfied with the currently photographed photograph.
  • the abnormality of the user's photographing operation may be an abnormality of the setting operation of the user during the camera opening process, for example, the number of the deleting operation is greater than the set threshold threshold, or the ratio of the number of the deleting operations to the number of the shooting operations is greater than The set threshold threshold, or the ratio of the number of save operations to the number of shooting operations is less than the set threshold value, and the like.
  • the abnormality of the photographed picture may be an abnormality in which the set parameter (for example, the number of noises) in the captured image exceeds the set threshold threshold by analyzing and processing the photographed picture during the process of turning on the camera.
  • the set parameter for example, the number of noises
  • adjusting the current photographing parameter of the camera based on the setting parameter adjustment policy may include: adjusting a current photographing parameter of the camera by using a local adjustment policy locally stored by the camera and corresponding to the shooting abnormality Or by transmitting parameters corresponding to the photographing abnormality (for example, the number of abnormal photographing operations, the abnormal photographing image, and the photographing parameters of the current camera, etc.) to the cloud server, according to the remote adjustment policy returned by the cloud server to the camera The current camera parameters are adjusted; or the current camera parameters of the camera are adjusted according to the local adjustment policy and the remote adjustment policy.
  • an abnormal captured image in the captured image may be acquired in real time during the opening process of the camera, and after determining that the abnormality of the user's photographing operation occurs, the current photographing parameter of the camera is performed according to the acquired abnormal photographed image. Adjustment.
  • the camera shooting parameter adjustment scheme of the present disclosure determines a target scene according to a current photographing environment when receiving a camera open command, and sets a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene in the system, and Using the initial photographing parameter to generate a photographed image, when it is recognized that the photographing abnormality occurs in the camera, adjusting the current photographing parameter of the camera based on the setting parameter adjustment strategy to adapt to the photographing scene, improving the photographing effect, and shooting Make the user satisfied with the image, enhance the user experience, and achieve personalized shooting.
  • Embodiment 2 is a flowchart of a camera shooting parameter adjustment method according to Embodiment 2 of the present disclosure.
  • the embodiment is optimized to quickly and accurately determine a camera parameter by identifying a user operation abnormality. Timing adjustment.
  • the method comprises the following steps:
  • step 210 when receiving a camera open command, determining a target scene according to a current photographing environment, and setting a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene;
  • step 220 according to the received photographing instruction, the photographing parameter is used to generate a photographed image
  • step 230 during the opening process of the camera, while recording the number of photographing operations set by the user, performing real-time data analysis on each of the generated captured images to determine an abnormally captured image;
  • the setting photographing operation includes: a deletion operation of the generated captured image by the user, and/or a saving operation;
  • real-time data analysis is performed on each of the generated captured images, and determining the abnormal captured image includes:
  • the second user satisfaction parameter includes: a noise number and/or a white balance
  • the second user satisfaction parameter is too high, for example, 10
  • the second user satisfaction threshold is six.
  • the second user satisfaction parameter is used as an abnormal parameter, that is, the number of noises as an abnormal parameter, and the current camera parameters of the camera are locally adjusted according to the abnormal parameter to reduce The amount of noise in the captured image.
  • step 240 it is determined whether the value of the first user satisfaction parameter determined by the number of the set photographing operations reaches a first user satisfaction threshold: when the first user determined by the number of the set photographing operations When the value of the satisfaction parameter reaches the first user satisfaction threshold, step 250 is performed; when the value of the satisfaction parameter of the first user determined by the number of the set photo operation does not reach the first user satisfaction threshold Returning to step 230;
  • the value of the first user satisfaction parameter determined by the set number of photographing operations reaches the first user satisfaction threshold, it is determined that the photographing abnormality is recognized.
  • the user continuously takes six photos in the same photographing scene, deletes five sheets, and saves only one sheet.
  • the number of setting photographing operations may be 6, which is determined by the number of the photographing operations.
  • the value of the first user satisfaction parameter may be 5/6, and if the first user satisfaction threshold is 0.2, then 5/6 is greater than 0.2, and it is determined that the shooting abnormality is recognized, that is, the user is dissatisfied with the current photographing parameter.
  • the current photographing parameters need to be adjusted, and the current photographing parameters of the camera are adjusted based on the setting parameter adjustment strategy.
  • step 250 it is determined that the shooting abnormality is recognized
  • step 260 the current camera parameters of the camera are locally adjusted according to the abnormal parameters in the abnormally captured image.
  • the local adjustment of the current camera parameter of the camera according to the abnormal parameter in the abnormal captured image means: for example, the user takes a photo in a dark environment, and when the ISP of the camera obtains the current camera environment parameter, it is determined.
  • the target scene of the current photographing environment uses the parameter configuration initial value corresponding to the target scene to set the current photographing parameter of the camera, such as locking the sensitivity to ISO6000 (ISO indicates sensitivity, ISO6000 indicates sensitivity value is 6000), close the OIS (Optical Image Stabilizer) while pulling the shutter, adjust the exposure time to find a reasonable amount of light to complete the photo, but the user deletes all the photos, then determine the If the camera is abnormal in shooting, adjust the current camera parameters of the camera based on the setting parameter adjustment strategy, such as reducing the sensitivity to ISO2000 (ISO indicates sensitivity, ISO2000 indicates sensitivity value is 2000), and increases exposure. Time, continue to take pictures.
  • a camera photographing parameter adjustment method in the embodiment whether the photographing of the camera is abnormal by the first user satisfaction or the photographing image abnormality parameter is determined by the second user satisfaction parameter, and the photographing abnormality is recognized when the camera is recognized Or determining the abnormal parameter, adjusting the current camera parameter of the camera based on the setting parameter adjustment policy or locally adjusting the current camera parameter of the camera according to the abnormal parameter in the abnormal captured image to adapt to the camera Scenes, improve the shooting effect, take images that satisfy the user, enhance the user experience, and achieve personalized shooting.
  • FIG. 3 is a flowchart of a camera shooting parameter adjustment method according to Embodiment 3 of the present disclosure.
  • the embodiment is optimized to formulate a better camera shooting parameter adjustment strategy, thereby improving Photo effect.
  • the method comprises the following steps:
  • step 310 when receiving a camera open command, determining a target scene according to a current photographing environment, and setting a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene;
  • step 320 according to the received photographing instruction, the photographing parameter is used to generate a photographed image
  • step 330 if it is recognized that the camera is abnormal in shooting, the parameter adjustment basis is generated according to the shooting abnormality, and sent to the cloud server to instruct the cloud server to generate a remote adjustment policy according to the parameter adjustment basis;
  • the cloud server According to the received parameter adjustment, the cloud server generates an advanced adjustment strategy based on the expert system analysis through big data calculation and data analysis mining, and the remote adjustment strategy is superior to the local adjustment strategy.
  • the parameter adjustment basis may include: a current photographing environment parameter obtained by the camera's ISP, real-time data of the abnormal photographed image, and a parameter corresponding to the photographing abnormality (for example, the number of abnormal photographing operations, the user's satisfaction data, and the current The camera's camera parameters, etc.) or the local adjustment strategy stored locally by the camera corresponding to the shooting abnormality.
  • step 340 the remote adjustment policy is received as the setting parameter adjustment policy
  • step 350 the current camera parameters of the camera are adjusted based on the set parameter adjustment strategy.
  • the current camera parameters of the camera are adjusted to obtain a better shooting effect.
  • the camera shooting parameter adjustment method is configured to send the parameter adjustment basis to the cloud server, and the cloud server generates a remote adjustment policy according to the received parameter adjustment, and further measures the current camera parameters of the camera.
  • the remote adjustment strategy it is adjusted to better adapt to the photographing scene, improve the shooting effect, and make images that satisfy the user, improve the user experience, and realize personalized shooting.
  • Embodiment 4 is a flowchart of a camera shooting parameter adjustment method according to Embodiment 4 of the present disclosure.
  • the embodiment is optimized to enrich the initial value of the parameter configuration corresponding to the target scene in the camera. Make the camera adapt to more shooting scenes and improve the shooting effect.
  • the method comprises the following steps:
  • step 410 when receiving a camera open command, determining a target scene according to a current photographing environment, and setting a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene;
  • step 420 generating a captured image using the photographing parameter according to the received photographing instruction
  • step 430 if it is recognized that the camera has an abnormality in shooting, the current photographing parameter of the camera is adjusted based on the setting parameter adjustment strategy.
  • step 440 according to the adjustment value of the current photographing parameter, the parameter configuration initial value corresponding to the target scene is updated and stored.
  • a camera shooting parameter adjustment scheme is configured to adjust a current camera parameter of the camera according to a set parameter adjustment strategy to recognize a camera shooting abnormality, so as to adapt to a photographing scene and improve a shooting effect. And updating the parameter configuration initial value corresponding to the target scene according to the adjustment value of the current photographing parameter, thereby continuously enriching the initial value of the parameter configuration corresponding to the target scene in the camera, so that the camera can adapt to the More shooting scenes, while achieving personality Shooting.
  • FIG. 5 is a structural block diagram of a camera shooting parameter adjusting apparatus according to Embodiment 5 of the present disclosure.
  • the device includes:
  • the module 510, the image generation module 520 and the adjustment module 530 are provided.
  • the setting module 510 is configured to: when receiving the camera opening instruction, determine a target scene according to the current photographing environment, and set a current photographing parameter of the camera by using a parameter configuration initial value corresponding to the target scene;
  • the image generating module 520 is configured to generate a captured image by using the photographing parameter according to the received photographing instruction;
  • the adjusting module 530 is configured to adjust the current photographing parameter of the camera based on the setting parameter adjustment policy if it is recognized that the camera has an abnormal shooting.
  • the camera shooting parameter adjustment scheme of the present disclosure determines a target scene according to a current photographing environment when receiving a camera open command, and sets a current photographing parameter of the camera using a parameter configuration initial value corresponding to the target scene in the system, and Using the initial photographing parameter to generate a photographed image, when it is recognized that the photographing abnormality occurs in the camera, adjusting the current photographing parameter of the camera based on the setting parameter adjustment strategy to adapt to the photographing scene, improving the photographing effect, and shooting Make the user satisfied with the image, enhance the user experience, and achieve personalized shooting.
  • the device may further include: a sending module, configured to: if it is recognized that the camera is abnormal in shooting, generate a parameter adjustment basis according to the shooting abnormality, and send the parameter to the cloud server to instruct the cloud server to The parameter adjustment is based on generating a remote adjustment policy; and the receiving module is configured to receive the remote adjustment policy as the setting parameter adjustment policy.
  • a sending module configured to: if it is recognized that the camera is abnormal in shooting, generate a parameter adjustment basis according to the shooting abnormality, and send the parameter to the cloud server to instruct the cloud server to The parameter adjustment is based on generating a remote adjustment policy
  • the receiving module is configured to receive the remote adjustment policy as the setting parameter adjustment policy.
  • the adjustment module 430 may be configured to: during the opening process of the camera, record the number of user-set photo taking operations, wherein the setting the photographing operation comprises: the user generating the a deletion operation of the captured image, and/or a save operation; if the value of the first user satisfaction parameter determined by the number of the set photo operation reaches the first user satisfaction threshold, then the identification is determined Don't go shooting abnormally.
  • the apparatus may further include: an abnormally captured image determining module configured to perform real-time data analysis on each of the generated captured images during the opening process of the camera to determine an abnormally captured image;
  • the adjusting module 530 may be configured to locally adjust the current camera parameters of the camera according to the abnormal parameters in the abnormal captured image.
  • the abnormal captured image determining module may include:
  • An obtaining unit configured to obtain a value of a second user satisfaction parameter in each of the generated captured images, where the second user satisfaction parameter includes: a noise number and/or a white balance;
  • the determining unit is configured to set a captured image of the second user satisfaction parameter to a second user satisfaction threshold as an abnormal captured image, and use the second user satisfaction parameter as an abnormal parameter.
  • the current camera parameters of the camera may include: focal length, sensitivity, aperture size or shutter time.
  • the device may further include: a storage module, configured to: after adjusting the current camera parameter of the camera based on the setting parameter adjustment policy, updating according to the adjustment value of the current camera parameter And storing a parameter configuration initial value corresponding to the target scenario.
  • a storage module configured to: after adjusting the current camera parameter of the camera based on the setting parameter adjustment policy, updating according to the adjustment value of the current camera parameter And storing a parameter configuration initial value corresponding to the target scenario.
  • the above product can perform the method provided by any embodiment of the present disclosure, and has the corresponding functional modules and beneficial effects of the execution method.
  • the present disclosure provides a non-volatile computer storage medium storing one or more modules that are caused when the one or more modules are executed by a terminal device of a camera shooting parameter adjustment method
  • the terminal device performs any one of the above embodiments.
  • FIG. 6 is a schematic structural diagram of hardware of a terminal device according to Embodiment 7 of the present disclosure. As shown in FIG. 6, the terminal device includes:
  • the terminal device may further include: an input device 630 and an output device 640.
  • the processor 610, the memory 620, the input device 630, and the output device 640 in the terminal device may be connected by a bus or other manner, and the bus connection is taken as an example in FIG.
  • the memory 620 is a non-volatile computer readable storage medium, and is configured to store a software program, a computer executable program, and a module, such as a program instruction/module corresponding to the camera shooting parameter adjustment method in the embodiment of the present disclosure (for example, The setting module 510, the image generating module 520, and the adjusting module 530) shown in FIG.
  • the processor 610 executes various functional applications and data processing of the server by executing software programs, instructions, and modules stored in the memory 620, that is, implementing the camera shooting parameter adjustment method of the above method embodiment.
  • the memory 620 may include a storage program area and an storage data area, wherein the storage program area may store an operating system, an application required for at least one function; the storage data area may store data created according to usage of the terminal device, and the like.
  • memory 620 can include high speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other non-volatile solid state storage device.
  • memory 620 can optionally include memory remotely located relative to processor 41, which can be connected to the terminal device over a network. Examples of such networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof.
  • Input device 630 can be configured to receive input numeric or character information and to generate key signal inputs related to user settings and function control of the terminal.
  • the output device 640 can include a display device such as a display screen.
  • the one or more modules are stored in the memory 620, and when executed by the one or more processors 610, perform any of the above-described embodiments.
  • the camera shooting parameter adjustment scheme provided by the present disclosure, when it is recognized that the camera is abnormal in shooting, adjusts the current camera parameters of the camera based on the setting parameter adjustment strategy to adapt to the shooting scene, improve the shooting effect, and improve the user. Experience, while achieving personalized shooting.

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Abstract

一种相机拍摄参数调整方法及装置,所述方法包括:在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;如果识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。

Description

相机拍摄参数调整方法及装置
本公开要求在2015年12月08日提交中国专利局、申请号为2015108966452、公开名称为“相机拍摄参数调整方法及装置”的中国专利申请的优先权,其全部内容通过引用结合在本公开中。
技术领域
本公开实施例涉及图像处理技术,例如涉及一种相机拍摄参数调整方法及装置。
背景技术
随着移动终端技术的发展,手机等移动终端中的应用也越来越多,各种移动终端也变得越来越普及。现有移动终端的功能早已不局限于打电话或者看视频的功能,拍摄作为大多数移动终端的功能之一,显的较为重要。对于一些摄影爱好者,并不是随时随地携带单反相机,但是如果遇到美好影像而单反相机又不在身边时,往往会选择使用随身携带的移动终端中的相机进行拍摄。
然而,使用移动终端中的相机进行拍摄时,又会对相机的拍摄效果有一定的要求。相关技术中,相机拍摄调校的技术方案是在系统开发环境下将影响相机拍摄的参数设置完成后,将整个调校方案固化制作到设备的系统层中。而在移动终端的使用过程中,无法对通过这种方式固化后的相机拍摄参数进行再编辑,如果需要对相机拍摄参数进行修改,则需要重新制作设备系统固件,导致系统开发、调试、优化的不便利性,影响相机的调校效率。同时不灵活的相机拍摄参数修改方式也会影响相机本身的使用和升级体验;此外,在用户应用场景下,通用的相机调校方案可能无法达到较好的拍摄效果。
因此,需要对相机的调校方法进行改进,以提高相机的拍摄效果。
发明内容
本公开提供一种相机拍摄参数调整方法及装置,以提高相机的拍摄效果。
第一方面,本公开实施例提供了一种相机拍摄参数调整方法,该方法包括:
在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;以及
当识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
第二方面,本公开实施例还提供了一种相机拍摄参数调整装置,该装置包括:
设置模块,设置为在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
图像生成模块,设置为根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
调整模块,设置为当识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
本公开的相机拍摄参数调整方案,通过接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用系统内与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数,并使用所述初始拍照参数生成拍摄图像,当识别到所述相机出现拍摄异常时,则基于设定参数调整策略对所述相机的当前拍照参数进行调整,以适应拍照场景,提高拍摄效果,拍出让用户满意的图像,提升用户体验,同时实现了个性化拍摄。
附图说明
图1是本公开实施例一提供的一种相机拍摄参数调整方法流程图;
图2是本公开实施例二提供的一种相机拍摄参数调整方法流程图;
图3是本公开实施例三提供的一种相机拍摄参数调整方法流程图;
图4是本公开实施例四提供的一种相机拍摄参数调整方法流程图;
图5是本公开实施例五提供的一种相机拍摄参数调整装置结构框图;
图6是本公开实施例七提供的一种终端设备的硬件结构示意图。
实施方式
下面结合附图和实施例对本公开作说明。可以理解的是,此处所描述的实施例用于解释本公开,而非对本公开的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本公开相关的部分而非全部结构。
在讨论示例性实施例之前应当提到的是,一些示例性实施例被描述成作为流程图描绘的处理或方法。虽然流程图将各项步骤描述成顺序的处理,但是其中的许多步骤可以被并行地、并发地或者同时实施。此外,各项步骤的顺序可以被重新安排。当其步骤完成时所述处理可以被终止,但是还可以具有未包括在附图中的附加步骤。所述处理可以对应于方法、函数、规程、子例程、子程序等等。
实施例一
图1为本公开实施例一提供的一种相机拍摄参数调整方法的流程图,本实施例可适用于系统中自带的拍摄参数配置初始值无法满足用户的拍照需求,需要根据实际拍照场景重新调整拍摄参数以拍出让用户满意的照片的情况,该方法可以由相机拍摄参数调整装置来执行。该装置可通过硬件和/或软件的方式实现,并一般可集成于配置有摄像头的终端设备中。该方法包括如下步骤:
在步骤110中、在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
其中,所述相机可以是各种移动终端上配置的相机,比如手机或者平板电脑等移动终端上的相机。所述相机开启指令由用户发出,当用户有拍照需求时,可以通过启动移动终端上相机对应的应用程序来发出相机开启指令。所述参数配置初始值是相机出厂时已经保存在系统中与一定目标场景(例如,“目光”、“夜景”以及“荧光灯”等场景)匹配的供相机在拍照过程中调用的参数配置数据。
例如,当用户在光线很好的环境下启动了相机应用程序,当系统接收到相机开启指令时,根据ISP(Image Signal Processing,图像信号处理)接收到 的数据确定当前拍照环境的目标场景,确定目标场景为“目光”,然后使用与“目光”场景匹配的参数配置初始值设置所述相机的当前拍照参数,比如会将感光度设置低一些;当用户在光线很暗的环境下启动了相机应用程序,此时,系统会使用与“夜景”场景匹配的参数配置初始值设置所述相机的当前拍照参数,此时可能会将感光度设置高些同时增加曝光时间。
可选的,相机的当前拍照参数包括:焦距、感光度、光圈大小或者快门时间。
在步骤120中、根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
其中,拍照指令由用户发出,用户可以通过点击移动终端上拍照对应的虚拟按键发出拍照指令。
在步骤130中、如果识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
在本实施例中,所述相机的拍摄异常可以包括:用户拍照操作的异常以及拍照图像的异常等可以表征用户对当前拍摄的照片可能存在不满的异常情况。
可选的,用户拍照操作的异常可以是用户在相机开启过程中的设定操作的异常,例如,删除操作的数量大于设定的门限阈值,或者删除操作的数量与拍摄操作的数量的比值大于设定的门限阈值,或者保存操作的数量与拍摄操作的数量的比值小于设定的门限值等。
可选的,拍照图片的异常可以是在相机开启过程中通过对所拍照图片进行分析处理,确定出所拍摄图像中的设定参数(例如,噪点数)超过设定的门限阈值的异常。
在本实施例中,基于设定参数调整策略对所述相机的当前拍照参数进行调整可以包括:通过所述相机本地存储的与拍摄异常对应的本地调整策略对所述相机的当前拍照参数进行调整;或者通过将与拍照异常对应的参数(例如,异常拍照操作的数量、异常拍照图像以及当前相机的拍照参数等)发送至云端服务器,根据所述云端服务器返回的远程调整策略对所述相机的当前拍照参数进行调整;或者同时根据所述本地调整策略以及所述远程调整策略对所述相机的当前拍照参数进行调整。
可选的,可以在相机的开启过程中,实时获取拍摄图像中的异常拍摄图像,在确定出现用户拍照操作的异常后,根据获取的所述异常拍摄图像,对所述相机的当前拍照参数进行调整。
本公开的相机拍摄参数调整方案,通过接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用系统内与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数,并使用所述初始拍照参数生成拍摄图像,当识别到所述相机出现拍摄异常时,则基于设定参数调整策略对所述相机的当前拍照参数进行调整,以适应拍照场景,提高拍摄效果,拍出让用户满意的图像,提升用户体验,同时实现了个性化拍摄。
实施例二
图2为本公开实施例二提供的一种相机拍摄参数调整方法的流程图,在实施例一的基础上,本实施例进行了优化,通过识别用户操作异常的方式快速、准确确定出拍照参数的调整时机。该方法包括如下步骤:
在步骤210中、在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
在步骤220中、根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
在步骤230中、在所述相机的开启过程中,记录用户设定拍照操作的数量的同时,对生成的各所述拍摄图像进行实时数据分析,确定异常拍摄图像;
其中,所述设定拍照操作包括:用户对生成的所述拍摄图像的删除操作,和/或保存操作;
可选的,在所述相机的开启过程中,对生成的各所述拍摄图像进行实时数据分析,确定异常拍摄图像包括:
获取生成的各所述拍摄图像中第二用户满意度参数的取值,其中,所述第二用户满意度参数包括:噪点数目和/或白平衡;
将所述第二用户满意度参数的取值达到第二用户满意度阈值的拍摄图像作为异常拍摄图像,并将所述第二用户满意度参数作为异常参数。
例如,用户在某暗光环境下拍照,通过对生成的各所述拍摄图像进行实时数据分析得到所述拍摄图像的噪点太多,即第二用户满意度参数太高,比如是10个,第二用户满意度阈值为6个,此时将所述第二用户满意度参数作为异常参数即噪点数量作为异常参数,根据所述异常参数,对所述相机的当前拍照参数进行本地调整,以降低拍摄图像的噪点数量。
在步骤240中、判断由所述设定拍照操作的数量确定的第一用户满意度参数的取值是否达到第一用户满意度阈值:当由所述设定拍照操作的数量确定的第一用户的满意度参数的取值达到第一用户满意度阈值时,执行步骤250;当由所述设定拍照操作的数量确定的第一用户的满意度参数的取值未达到第一用户满意度阈值时,返回步骤230;
如果由所述设定拍照操作的数量确定的第一用户满意度参数的取值达到第一用户满意度阈值,则确定识别到拍摄异常。
例如,用户在同一拍照场景中连续拍了六张照片,删除了五张,只保存了一张,此时所述设定拍照操作的数量可以为6,由所述设定拍照操作的数量确定的第一用户满意度参数的取值可以为5/6,假设第一用户满意度阈值为0.2,则5/6大于0.2,此时确定识别到拍摄异常,即,用户不满意使用当前拍照参数拍出的照片,需要对当前拍照参数进行调整,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
在步骤250中、确定识别到拍摄异常;
在步骤260中、根据所述异常拍摄图像中的异常参数,对所述相机的当前拍照参数进行本地调整。
其中,根据所述异常拍摄图像中的异常参数,对所述相机的当前拍照参数进行本地调整是指:例如,用户在某暗光环境下拍照,当相机的ISP获得当前拍照环境参数后,确定当前拍照环境的目标场景,默认使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数,比如将感光度锁定在ISO6000(ISO表示的是感光度,ISO6000表示感光度数值是6000),关闭OIS(Optical Image Stabilizer,光学图像稳定器)的同时拉动快门,调整曝光时间寻找合理进光量完成拍照,但是用户看到照片后全部删除,此时确定所述 相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整,如将感光度降至ISO2000(ISO表示的是感光度,ISO2000表示感光度数值是2000),同时增加曝光时间,继续拍照。
本实施例中的一种相机拍摄参数调整方法,通过第一用户满意度识别所述相机的拍摄是否异常或者通过第二用户满意度参数确定拍摄图像异常参数,当识别到所述相机出现拍摄异常或者确定了异常参数,则基于设定参数调整策略对所述相机的当前拍照参数进行调整或者根据所述异常拍摄图像中的异常参数,对所述相机的当前拍照参数进行本地调整,以适应拍照场景,提高拍摄效果,拍出让用户满意的图像,提升用户体验,同时实现了个性化拍摄。
实施例三
图3为本公开实施例三提供的一种相机拍摄参数调整方法的流程图,在实施例一的基础上,本实施例进行了优化,以制定出较优的相机拍摄参数调整策略,进而提高拍照效果。该方法包括如下步骤:
在步骤310中、在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
在步骤320中、根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
在步骤330中、如果识别到所述相机出现拍摄异常,则根据所述拍摄异常产生参数调整依据,发送至云端服务器,以指示云端服务器根据所述参数调整依据生成远程调整策略;
云端服务器根据接收到的参数调整依据通过大数据计算以及数据分析挖掘进行专家系统分析生成远程调整策略,此远程调整策略相对于本地调整策略更优。其中,所述参数调整依据可以包括:相机的ISP获得到的当前拍照环境参数、异常拍摄图片的实时数据、与拍照异常对应的参数(例如,异常拍照操作的数量、用户的满意度数据以及当前相机的拍照参数等)或者所述相机本地存储的与拍摄异常对应的本地调整策略等。
在步骤340中、接收所述远程调整策略,作为所述设定参数调整策略;
在步骤350中、基于设定参数调整策略对所述相机的当前拍照参数进行调整。
根据接收到的远程调整策略,对所述相机的当前拍照参数进行调整,以得到更好的拍摄效果。
本实施例中的一种相机拍摄参数调整方法,通过将所述参数调整依据发送至云端服务器,云端服务器根据接收到的所述参数调整依据生成远程调整策略,进而对所述相机的当前拍照参数按照所述远程调整策略进行调整,以更好地适应拍照场景,提高拍摄效果,拍出让用户满意的图像,提升用户体验,同时实现了个性化拍摄。
实施例四
图4为本公开实施例四提供的一种相机拍摄参数调整方法的流程图,在上述实施例的基础上,本实施例进行了优化,以丰富相机中与目标场景对应的参数配置初始值,使相机能适应更多的拍摄场景,提高拍照效果。该方法包括如下步骤:
在步骤410中、在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
在步骤420中、根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
在步骤430中、如果识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
在步骤440中、根据对所述当前拍照参数的调整值,更新存储与所述目标场景对应的参数配置初始值。
本实施例中的一种相机拍摄参数调整方案,当识别到所述相机出现拍摄异常时,则基于设定参数调整策略对所述相机的当前拍照参数进行调整,以适应拍照场景,提高拍摄效果,同时根据对所述当前拍照参数的调整值,更新存储与所述目标场景对应的参数配置初始值,从而实现了不断地丰富相机中与目标场景对应的参数配置初始值,使相机能适应更多的拍摄场景,同时实现了个性 化拍摄。
实施例五
图5为本公开实施例五提供的一种相机拍摄参数调整装置的结构框图。参见图5,该装置包括:
设置模块510,图像生成模块520和调整模块530。
其中,设置模块510,设置为在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
图像生成模块520,设置为根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
调整模块530,设置为如果识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
本公开的相机拍摄参数调整方案,通过接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用系统内与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数,并使用所述初始拍照参数生成拍摄图像,当识别到所述相机出现拍摄异常时,则基于设定参数调整策略对所述相机的当前拍照参数进行调整,以适应拍照场景,提高拍摄效果,拍出让用户满意的图像,提升用户体验,同时实现了个性化拍摄。
在上述各实施例的基础上,该装置还可以包括:发送模块,设置为如果识别到所述相机出现拍摄异常,根据所述拍摄异常产生参数调整依据,发送至云端服务器,以指示云端服务器根据所述参数调整依据生成远程调整策略;接收模块,设置为接收所述远程调整策略,作为所述设定参数调整策略。
在上述各实施例的基础上,调整模块430可以设置为:在所述相机的开启过程中,记录用户设定拍照操作的数量,其中,所述设定拍照操作包括:用户对生成的所述拍摄图像的删除操作,和/或保存操作;如果由所述设定拍照操作的数量确定的第一用户满意度参数的取值达到第一用户满意度阈值,则确定识 别到拍摄异常。
在上述各实施例的基础上,该装置还可以包括:异常拍摄图像确定模块,设置为在所述相机的开启过程中,对生成的各所述拍摄图像进行实时数据分析,确定异常拍摄图像;
相应地,所述调整模块530可以设置为:根据所述异常拍摄图像中的异常参数,对所述相机的当前拍照参数进行本地调整。
在上述各实施例的基础上,异常拍摄图像确定模块可以包括:
获取单元,设置为获取生成的各所述拍摄图像中第二用户满意度参数的取值,其中,所述第二用户满意度参数包括:噪点数目和/或白平衡;
确定单元,设置为将所述第二用户满意度参数的取值达到第二用户满意度阈值的拍摄图像作为异常拍摄图像,并将所述第二用户满意度参数作为异常参数。
在上述各实施例的基础上,相机的当前拍照参数可以包括:焦距、感光度、光圈大小或者快门时间。
在上述实施例的基础上,该装置还可以包括:存储模块,设置为在基于设定参数调整策略对所述相机的当前拍照参数进行调整之后,根据对所述当前拍照参数的调整值,更新存储与所述目标场景对应的参数配置初始值。
上述产品可执行本公开任意实施例所提供的方法,具备执行方法相应的功能模块和有益效果。
实施例六
本公开提供了一种非易失性计算机存储介质,所述计算机存储介质存储有一个或者多个模块,当所述一个或者多个模块被一种相机拍摄参数调整方法的终端设备执行时,使得所述终端设备执行上述实施例中的任意一种方法。
实施例七
图6为本公开实施例七提供的一种终端设备的硬件结构示意图,如图6所示,该终端设备包括:
一个或多个处理器610,存储器620;图6中以一个处理器610为例;
所述终端设备还可以包括:输入装置630和输出装置640。
所述终端设备中的处理器610、存储器620、输入装置630和输出装置640可以通过总线或者其他方式连接,图6中以通过总线连接为例。
存储器620作为一种非易失性的计算机可读存储介质,可设置为存储软件程序、计算机可执行程序以及模块,如本公开实施例中的相机拍摄参数调整方法对应的程序指令/模块(例如,附图5所示的设置模块510、图像生成模块520、和调整模块530)。处理器610通过运行存储在存储器620中的软件程序、指令以及模块,从而执行服务器的各种功能应用以及数据处理,即实现上述方法实施例的相机拍摄参数调整方法。
存储器620可以包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需要的应用程序;存储数据区可存储根据终端设备的使用所创建的数据等。此外,存储器620可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。在一些实施例中,存储器620可选包括相对于处理器41远程设置的存储器,这些远程存储器可以通过网络连接至终端设备。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。
输入装置630可设置为接收输入的数字或字符信息,以及产生与终端的用户设置以及功能控制有关的键信号输入。输出装置640可包括显示屏等显示设备。
所述一个或者多个模块存储在所述存储器620中,当被所述一个或者多个处理器610执行时,执行上述实施例中的任意一种方法。
注意,上述仅为本公开的较佳实施例及所运用技术原理。本领域技术人员会理解,本公开不限于这里所述的特定实施例,对本领域技术人员来说能够进行各种明显的变化、重新调整和替代而不会脱离本公开的保护范围。因此,虽然通过以上实施例对本公开进行了较为详细的说明,但是本公开不仅仅限于以上实施例,在不脱离本公开构思的情况下,还可以包括更多其他等效实施例, 而本公开的范围由所附的权利要求范围决定。
工业实用性
本公开提供的相机拍摄参数调整方案,当识别到所述相机出现拍摄异常时,则基于设定参数调整策略对所述相机的当前拍照参数进行调整,以适应拍照场景,提高拍摄效果,提升用户体验,同时实现了个性化拍摄。

Claims (14)

  1. 一种相机拍摄参数调整方法,包括:
    在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
    根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
    当识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
  2. 根据权利要求1所述的方法,当识别到所述相机出现拍摄异常,还包括:
    根据所述拍摄异常产生参数调整依据,发送至云端服务器,以指示云端服务器根据所述参数调整依据生成远程调整策略;
    接收所述远程调整策略,作为所述设定参数调整策略。
  3. 根据权利要求1所述的方法,其中,识别所述相机的拍摄异常包括:
    在所述相机的开启过程中,记录用户设定拍照操作的数量,其中,所述设定拍照操作包括:用户对生成的所述拍摄图像的删除操作,和/或保存操作;
    如果由所述设定拍照操作的数量确定的第一用户满意度参数的取值达到第一用户满意度阈值,则确定识别到拍摄异常。
  4. 根据权利要求3所述的方法,还包括:在所述相机的开启过程中,对生成的各所述拍摄图像进行实时数据分析,确定异常拍摄图像;
    相应的,基于设定参数调整策略对所述相机的当前拍照参数进行调整具体包括:
    根据所述异常拍摄图像中的异常参数,对所述相机的当前拍照参数进行本地调整。
  5. 根据权利要求4所述的方法,其中,在所述相机的开启过程中,对生成的各所述拍摄图像进行实时数据分析,确定异常拍摄图像包括:
    获取生成的各所述拍摄图像中第二用户满意度参数的取值,其中,所述第二用户满意度参数包括:噪点数目和/或白平衡;
    将所述第二用户满意度参数的取值达到第二用户满意度阈值的拍摄图像作为异常拍摄图像,并将所述第二用户满意度参数作为异常参数。
  6. 根据权利要求1-5任一项所述的方法,其中,相机的当前拍照参数包括:
    焦距、感光度、光圈大小或者快门时间。
  7. 根据权利要求1-5任一项所述的方法,在基于设定参数调整策略对所述相机的当前拍照参数进行调整之后,还包括:
    根据对所述当前拍照参数的调整值,更新存储与所述目标场景对应的参数配置初始值。
  8. 一种相机拍摄参数调整装置,包括:
    设置模块,设置为在接收到相机开启指令时,根据当前拍照环境确定目标场景,并使用与所述目标场景对应的参数配置初始值设置所述相机的当前拍照参数;
    图像生成模块,设置为根据接收到的拍照指令,使用所述拍照参数生成拍摄图像;
    调整模块,设置为如果识别到所述相机出现拍摄异常,则基于设定参数调整策略对所述相机的当前拍照参数进行调整。
  9. 根据权利要求8所述的装置,还包括:
    发送模块,设置为如果识别到所述相机出现拍摄异常,根据所述拍摄异常产生参数调整依据,发送至云端服务器,以指示云端服务器根据所述参数调整依据生成远程调整策略;
    接收模块,设置为接收所述远程调整策略,作为所述设定参数调整策略。
  10. 根据权利要求8所述的装置,其中,所述调整模块设置为:
    在所述相机的开启过程中,记录用户设定拍照操作的数量,其中,所述设定拍照操作包括:用户对生成的所述拍摄图像的删除操作,和/或保存操作;如果由所述设定拍照操作的数量确定的第一用户满意度参数的取值达到第一用户满意度阈值,则确定识别到拍摄异常。
  11. 根据权利要求10所述的装置,还包括:
    异常拍摄图像确定模块,设置为在所述相机的开启过程中,对生成的各所述拍摄图像进行实时数据分析,确定异常拍摄图像;
    相应的,所述调整模块设置为:根据所述异常拍摄图像中的异常参数,对所述相机的当前拍照参数进行本地调整。
  12. 根据权利要求11所述的装置,其中,异常拍摄图像确定模块包括:
    获取单元,设置为获取生成的各所述拍摄图像中第二用户满意度参数的取值,其中,所述第二用户满意度参数包括:噪点数目和/或白平衡;
    确定单元,设置为将所述第二用户满意度参数的取值达到第二用户满意度阈值的拍摄图像作为异常拍摄图像,并将所述第二用户满意度参数作为异常参数。
  13. 根据权利要求8-12任一项所述的装置,其其中,相机的当前拍照参数包括:
    焦距、感光度、光圈大小或者快门时间。
  14. 根据权利要求8-12任一项所述的装置,还包括:
    存储模块,设置为在基于设定参数调整策略对所述相机的当前拍照参数进行调整之后,根据对所述当前拍照参数的调整值,更新存储与所述目标场景对应的参数配置初始值。
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