Video processing method, apparatus, system and storage medium

CN122122909APending Publication Date: 2026-05-29SZ SHANZHI TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SZ SHANZHI TECH CO LTD
Filing Date
2024-09-27
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In existing technologies, users can only set one video aspect ratio when shooting videos, which cannot meet the need to share videos to multiple social media platforms simultaneously according to different aspect ratios, resulting in poor video acquisition efficiency and user experience.

Method used

Before shooting the video, acquire at least two different video aspect ratio indications, and process the original video according to these indications to output videos with corresponding different aspect ratios.

Benefits of technology

It enables the acquisition of multiple videos with different aspect ratios in a single shot, improving video acquisition efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN122122909A_ABST
    Figure CN122122909A_ABST
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Abstract

A video processing method, device, system and storage medium, the method comprising: obtaining at least two video frame ratio indication information before processing the original video collected by the same image sensor based on the video frame ratio, the at least two video frame ratio indication information being used to indicate at least two different video frame ratios (S101); processing the original video collected by the same image sensor based on the at least two different video frame ratio indication information, and outputting at least two videos corresponding to the at least two different video frame ratios respectively (S102). Through the present application, the video acquisition efficiency and experience can be improved.
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Description

Video processing method, device, system and storage medium TECHNICAL FIELD

[0001] The present application relates to the technical field of image processing, and in particular to a video processing method, a video processing device, a video processing system and a storage medium. BACKGROUND

[0002] At present, when a user shoots a video through a camera, the user can only set one video frame (for example, set one video frame ratio) at a time. The camera processes the original video collected according to the video frame set by the user, and outputs a video corresponding to the frame. If the user needs to share the video to multiple social platforms with different requirements for video frames at the same time, the current solution cannot meet the user's needs, resulting in poor video acquisition efficiency and experience.

[0003] SUMMARY

[0004] Therefore, the present application provides a video processing method, a video processing device, a video processing system and a storage medium.

[0005] In a first aspect, the present application provides a video processing method, which comprises:

[0006] Before the original video collected by the same image sensor is processed based on the video frame ratio, at least two video frame ratio indication information is obtained, and the at least two video frame ratio indication information is used to indicate at least two different video frame ratios.

[0007] The original video collected by the same image sensor is processed based on the at least two different video frame ratio indication information, and at least two videos corresponding to the at least two different video frame ratios respectively are output.

[0008] In a second aspect, the present application provides a video processing device, which comprises a memory and a processor, wherein the memory is used to store a computer program, and the processor is used to execute the computer program and realize the following steps when executing the computer program:

[0009] Before the original video collected by the same image sensor is processed based on the video frame ratio, at least two video frame ratio indication information is obtained, and the at least two video frame ratio indication information is used to indicate at least two different video frame ratios.

[0010] The original video collected by the same image sensor is processed based on the at least two different video frame ratio indication information, and at least two videos corresponding to the at least two different video frame ratios respectively are output.

[0011] In a third aspect, the present application provides a video processing system, the system comprising: a memory, a processor and an image sensor, the memory being configured to store a computer program; the processor being configured to execute the computer program and implement the video processing method according to the first aspect when executing the computer program.

[0012] In a fourth aspect, the present application provides a computer readable storage medium, the computer readable storage medium storing a computer program, the computer program being configured to cause a processor to implement the video processing method according to the first aspect when the computer program is executed by the processor.

[0013] In the embodiments of the present application, at least two different video frame ratio indication information can be acquired at one time, and then the original video collected by the same image sensor is processed according to the at least two different video frame ratios to obtain at least two videos corresponding to the at least two different video frame ratios, so that the user can set at least two different video frame ratios at one time, and the user can obtain videos with at least two different video frame ratios at one time, thereby improving the video acquisition efficiency and experience.

[0014] In a fifth aspect, the present application provides a video processing method, the method comprising:

[0015] Before the original video collected by the same image sensor is processed based on the video frame indication information, at least two video frame indication information is acquired, the video frame indication information being configured to indicate the frame of the video, the video frame indication information indicated by the at least two video frame indication information being different in the display content of the video frame;

[0016] The original video collected by the same image sensor is processed based on the at least two video frame indication information, and at least two videos corresponding to the at least two video frame indication information are output.

[0017] In a sixth aspect, the present application provides a video processing device, the device comprising: a memory and a processor, the memory being configured to store a computer program; the processor being configured to execute the computer program and implement the following steps when executing the computer program:

[0018] Before the original video collected by the same image sensor is processed based on the video frame indication information, at least two video frame indication information is acquired, the video frame indication information being configured to indicate the frame of the video, the video frame indication information indicated by the at least two video frame indication information being different in the display content of the video frame;

[0019] process the original video collected by the same image sensor respectively based on the at least two video frame indication information, and output at least two videos corresponding to the at least two video frame indication information respectively.

[0020] In a seventh aspect, the present application provides a video processing system, which comprises a memory, a processor and an image sensor, wherein the memory is configured to store a computer program; the processor is configured to execute the computer program and implement the video processing method in the fifth aspect when executing the computer program.

[0021] In an eighth aspect, the present application provides a computer readable storage medium, which stores a computer program, and the computer program, when executed by a processor, causes the processor to implement the video processing method in the fifth aspect.

[0022] In the embodiments of the present application, at least two video frame indication information can be acquired at one time, and then the original video collected by the same image sensor is processed respectively based on the acquired at least two video frame indication information to obtain at least two videos corresponding to the at least two video frame indication information respectively, so that the user can set at least two video frames at one time, and the user can obtain at least two videos of different frames at one time, thereby improving the video acquisition efficiency and experience.

[0023] It should be understood that the foregoing general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. BRIEF DESCRIPTION OF DRAWINGS

[0024] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0025] FIG. 1 is a flow diagram of an embodiment of the video processing method of the present application;

[0026] FIG. 2 is a schematic diagram of an embodiment of obtaining a video frame ratio by adjusting the size of a frame cutting box in the video processing method of the present application;

[0027] FIG. 3 is a flow diagram of another embodiment of the video processing method of the present application;

[0028] FIG. 4 is a flow diagram of still another embodiment of the video processing method of the present application;

[0029] FIG. 5 is a structural schematic diagram of an embodiment of the video processing device of the present application;

[0030] FIG. 6 is a structural schematic diagram of an embodiment of a video processing system according to the present application;

[0031] FIG. 7 is a flowchart of another embodiment of a video processing method according to the present application;

[0032] FIG. 8 is a flowchart of another embodiment of a video processing method according to the present application;

[0033] FIG. 9 is a flowchart of another embodiment of a video processing method according to the present application;

[0034] FIG. 10 is a structural schematic diagram of another embodiment of a video processing apparatus according to the present application;

[0035] FIG. 11 is a structural schematic diagram of another embodiment of a video processing system according to the present application. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0037] The flowcharts shown in the drawings are only exemplary and do not necessarily include all the contents and operations / steps, nor do they have to be executed in the order described. For example, some operations / steps can be further divided, combined or partially merged, so the actual execution order may be changed according to the actual situation.

[0038] At present, when a user shoots a video through a camera, the user can only set one of a horizontal screen video and a vertical screen video in a single shot, such as 16:9 (horizontal screen video). The camera processes the original video collected according to the horizontal screen video aspect ratio set by the user and outputs the corresponding horizontal screen video. If the user needs to share the video according to the horizontal screen video and the vertical screen video to different multiple social platforms (such as the general video aspect ratio of Douyin is 9:16 vertical screen video and the general video aspect ratio of Bilibili is 16:9 horizontal screen video), the current solution cannot meet the user's needs, resulting in poor video acquisition efficiency and experience.

[0039] In the related art, after obtaining the original video, the user can adjust the aspect ratio of the original video through some editing software, for example, the aspect ratio of the original video is 4:3, the user can adjust the aspect ratio of the original video from 4:3 to 16:9 through the post-editing software, and the user shares the video corresponding to the desired aspect ratio of the horizontal screen video to the corresponding social platform, for example, B station. If the user wants to share the video to different social platforms at the same time, the user needs to adjust the aspect ratio of the original video again, for example, the user adjusts the aspect ratio of the original video from 4:3 to 9:16 through the editing software, and then shares the adjusted video to the Douyin platform. This operation method needs the user to adjust the aspect ratio of the original video multiple times to obtain two different videos with different aspect ratios, which causes the operation of the user to be too cumbersome and the efficiency to be low.

[0040] In the embodiments of the present application, at least two different video aspect ratios can be obtained at a time, and then the original video collected by the same image sensor is processed according to the obtained at least two different video aspect ratios to obtain at least two videos corresponding to the at least two different video aspect ratios respectively, so that at least two different video aspect ratios can be set at a time, and the user can obtain videos with at least two different video aspect ratios at a time, thereby improving the video acquisition efficiency and experience.

[0041] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the case of no conflict, the embodiments described below and the features in the embodiments can be combined with each other.

[0042] Referring to FIG. 1, FIG. 1 is a flowchart of an embodiment of a video processing method of the present application, and the method comprises:

[0043] Step S101: Before processing the original video collected by the same image sensor based on the video aspect ratio, at least two video aspect ratio indication information are obtained, and the at least two video aspect ratio indication information are used to indicate at least two different video aspect ratios.

[0044] Step S102: The original video collected by the same image sensor is processed based on the at least two different video aspect ratio indication information, and at least two videos corresponding to the at least two different video aspect ratios respectively are output.

[0045] The video aspect ratio can refer to the width-height ratio of the video, for example, 16:9 (the width-height ratio of the aspect ratio of the current common horizontal screen video), 9:16 (the width-height ratio of the aspect ratio of the current common vertical screen video), 4:3, etc. For example, the at least two video aspect ratio indication information are used to indicate the width-height ratio 16:9 of a horizontal screen video and the width-height ratio 9:16 of a vertical screen video.

[0046] At least two different video frame ratios are acquired during the processing, or a part of the different video frame ratios are acquired before the original video is processed, and another part of the different video frame ratios are acquired during the processing of the original video. In the embodiment of the application, at least two different video frame ratio indication information is acquired once before the original video collected by the same image sensor is processed based on the video frame ratio, and then the original video is processed based on the at least two different video frame ratio indication information. The whole processing operation process of the video processing device is more smooth and smooth, and the operation of acquiring the video frame ratio indication information is introduced in the middle of the whole processing operation process, so that the whole operation process is interrupted in the middle, and therefore the processing efficiency is improved.

[0047] In the embodiment of the application, at least two different video frame ratios are acquired once, and then the original video collected by the same image sensor is processed based on the at least two different video frame ratios to obtain at least two videos corresponding to the at least two different video frame ratios, respectively. At least two different video frame ratios are set once, and at least two videos with different video frame ratios can be obtained by a single shooting of the user, so as to improve the video acquisition efficiency and experience.

[0048] In some embodiments, the at least two video frame ratio indication information is used to indicate at least a first video aspect ratio with an aspect ratio greater than 1 and a second video aspect ratio with an aspect ratio less than 1.

[0049] The first video aspect ratio with an aspect ratio greater than 1 is that the width of the video frame is greater than the height, which is usually the frame of a horizontal screen video; and the second video aspect ratio with an aspect ratio less than 1 is that the width of the video frame is less than the height, which is usually the frame of a vertical screen video. In this way, the user can quickly obtain at least two different horizontal screen videos and vertical screen videos. In an application scenario, the first video aspect ratio with an aspect ratio greater than 1 and the second video aspect ratio with an aspect ratio less than 1 are the common video frame ratios on the current social platform (for example, the general video frame of Douyin is a vertical screen video, and the general video frame of Bilibili is a horizontal screen video). In this way, the user can quickly share at least two videos to at least two different platforms that require horizontal screen videos and vertical screen videos, respectively, such as different social platforms, thereby improving the video acquisition efficiency and experience.

[0050] In some embodiments, the at least two video frame ratio indication information is used to indicate at least a first video aspect ratio with an aspect ratio greater than 1 and a second video aspect ratio with an aspect ratio less than 1.

[0051] The first video aspect ratio is greater than 1, i.e. the width of the video aspect is greater than the height, which is usually the aspect of a horizontal screen video; the second video aspect ratio is less than 1, i.e. the width of the video aspect is less than the height, which is usually the aspect of a vertical screen video. In this way, the user can quickly obtain at least two different horizontal screen videos or quickly obtain at least two different vertical screen videos.

[0052] In some embodiments, one of the at least two video aspect ratio indication information is used to indicate the aspect ratio same as that of the image sensor.

[0053] The aspect ratio same as that of the image sensor is the aspect ratio same as that of the original video captured by the image sensor. In this way, the user can quickly obtain at least two videos of different aspect ratios including the original video.

[0054] In some embodiments, the at least two video aspect ratio indication information is input by the user. In this way, the actual needs of the user for at least two video aspect ratios can be met.

[0055] In some embodiments, the at least two video aspect ratio indication information is input by the user through user information or through a control device.

[0056] The user information can refer to information directly related to the user, such as the user's voice, the user's gesture, the user's posture, the user's movement parameter, etc. For example, the user can directly speak at least two different video aspect ratio indication information, and the video processing device can recognize the user's voice to obtain at least two video aspect ratio indication information; for another example, a one-to-one correspondence between the user's preset gesture or posture and the preset video aspect ratio is established in advance, and the user can make different gestures or postures, and the video processing device can recognize a plurality of different gestures or postures corresponding to a plurality of different video aspect ratios, and then obtain at least two video aspect ratio indication information. Wherein, the user's movement parameter can be a movement distance and / or a movement direction, and a one-to-one correspondence between the user's movement parameter and the preset video aspect ratio is established in advance, and the user can move in different directions by different distances, and the video processing device can recognize a plurality of different movement parameters corresponding to a plurality of different video aspect ratios, and then obtain at least two video aspect ratio indication information.

[0057] The control device can be part of the video processing device, or can be independent of the video processing device. The control device can be in communication connection with the video processing device, and can be in wired or wireless connection with the video processing device, for example, the control device can be in remote communication with the video processing device. The control device includes but is not limited to a remote controller, a wearable device, a mobile phone, etc.

[0058] In some embodiments, the inputting of the at least two video frame scale ratio indication information by the control device comprises inputting by a display interface, inputting by a gesture of a wearable device, or inputting by a control of the control device.

[0059] The inputting by the display interface is a common input method, and a display screen corresponding to the input method is usually a touch screen. A user can directly input on the touch screen by a finger or input on the touch screen by an object such as an input pen.

[0060] The inputting by the gesture of the wearable device usually needs to previously establish a one-to-one correspondence between a preset gesture of the wearable device and a preset video frame scale ratio. The wearable device captures and recognizes a gesture of the wearable device and determines a video frame scale ratio corresponding to the gesture (for example, the wearable device is part of a video processing device, the wearable device can recognize the gesture of the wearable device and determine the video frame scale ratio corresponding to the gesture, or the wearable device and the video processing device are independently arranged, and the wearable device sends the determined video frame scale ratio to the video processing device), or the wearable device sends the gesture of the wearable device to the video processing device, and the video processing device determines a video frame scale ratio corresponding to the gesture of the wearable device. The inputting by the gesture of the wearable device usually needs a user to wear the wearable device (including a head-mounted wearable device such as glasses, a helmet, and the like, and a non-head-mounted wearable device such as a watch, a bracelet, and the like), and the gesture made by the user is taken as the gesture of the wearable device. The gesture of the wearable device is recognized to determine a video frame scale ratio corresponding to the gesture.

[0061] The control of the control device includes but is not limited to a dial, a joystick, and a button. In the related art, the dial and the joystick are usually used to quickly adjust a parameter, and the button is used to execute a specific function. Embodiments of the present application can reuse the control of the control device. In the case that the control has a function already possessed by the control itself, the input function of the embodiments of the present application is additionally added. The control device recognizes a video frame scale ratio input by a user through the control (for example, the control device is part of a video processing device, the control device recognizes the video frame scale ratio input by the user through the control, or the control device and the video processing device are independently arranged, and the control device sends the recognized video frame scale ratio input by the user through the control to the video processing device).

[0062] The embodiments of the present application input at least two video frame scale ratio indication information by a user through user information or through a control device. The input method is flexible and various, and can fully meet the current diversified input methods.

[0063] In some embodiments, the display interface comprises a display interface of the video processing device, i.e. the display interface is part of the video processing device; or the display interface comprises a display interface of a control device of the video processing device, i.e. the display interface is part of the control device which is independent of the video processing device. In this way, the user can input at the display interface of the video processing device or can input at the display interface of the control device.

[0064] In some embodiments, the video aspect ratio indication information is input by the user by inputting an aspect ratio value of the video, adjusting a size of an aspect ratio crop frame, or inputting a platform required to share the video.

[0065] The user obtains the video aspect ratio by inputting an aspect ratio value of the video, for example, a pre-provision is made that two values are inputted, a value inputted first represents width and a value inputted later represents height, the user inputs 16 and 9, which means that the width-to-height ratio of the video aspect ratio is 16:9; or a pre-provision is made that a ratio of values inputted directly is the width-to-height ratio, the user inputs 16:9, which means that the width-to-height ratio of the video aspect ratio is 16:9; etc.

[0066] The user obtains the video aspect ratio by adjusting a size of an aspect ratio crop frame, for example: the user can adjust the width and the height of the crop frame simultaneously in a direction of a diagonal line of the crop frame, can adjust the width of the crop frame in a width direction of the crop frame, or can adjust the height of the crop frame in a height direction of the crop frame.

[0067] As shown in FIG. 2, the image sensor is square, the width-to-height ratio of the original video collected by the image sensor is 1:1 (corresponding to the outermost dashed boundary frame in the figure), two crop frames can be displayed in a real-time picture or a preview picture during shooting, the two crop frames can be adjusted in width-to-height ratio, size and position, for example, the two crop frames can correspond to a horizontal version crop frame and a vertical version crop frame respectively, the user obtains two video aspect ratios by adjusting sizes of the two aspect ratio crop frames, i.e. the horizontal version crop frame and the vertical version crop frame shown in the figure. Of course, more crop frames can be displayed in the real-time picture or the preview picture during shooting to facilitate the user to set multiple video aspect ratios at the same time, or the user can select a number of crop frames to be displayed on the interface, and crop frames matching the number of crop frames selected by the user can be displayed in the real-time picture or the preview picture during shooting. Only one crop frame can be displayed in the real-time picture or the preview picture during shooting, and the user can set multiple different video aspect ratios through the crop frame.

[0068] The input platform required by the user to share the video can refer to the platform required by the user to share the video, and the video processing apparatus automatically acquires the video frame ratio corresponding to the platform. For example, the user inputs Douyin and Bilibili, and the video processing apparatus automatically acquires the frame ratio of the vertical screen video and the horizontal screen video corresponding to Douyin and Bilibili, respectively.

[0069] The above input mode is flexible and diverse, and can fully meet the current diversified input mode.

[0070] In some embodiments, the frame cutting frame is displayed in the preview picture. In this way, when the frame cutting frame is adjusted, it can be displayed in the preview picture to confirm whether the size of the frame cutting frame is appropriate.

[0071] In some embodiments, the method can further include outputting a preview video, the preview video being generated based on the video frame ratio indication information input by the user.

[0072] After the user inputs the video frame ratio indication information, a preview video is generated and outputted, which facilitates the user to confirm whether the input video frame ratio indication information meets the requirements.

[0073] In some embodiments, the at least two video frame ratio indication information is automatically generated by the video processing apparatus. The video processing apparatus can also automatically generate at least two video frame ratio indication information to avoid user input. For example, the video processing apparatus can set at least two video frame ratios by default, and automatically generate at least two video frame ratio indication information based on the at least two video frame ratios; or, the video processing apparatus can save at least two video frame ratios set by the user previously, and subsequently automatically generate at least two video frame ratio indication information based on the saved at least two video frame ratios; etc.

[0074] In some embodiments, the at least two video frame ratio indication information is automatically generated by the video processing apparatus based on the current shooting scene.

[0075] The video processing apparatus can intelligently generate at least two video frame ratio indication information based on the current shooting scene, so as to better meet the user's demand for intelligent video processing apparatus and better avoid user operation.

[0076] In some embodiments, step S102, based on the at least two video frame indication information, the original video collected by the same image sensor is processed respectively, and at least two videos corresponding to the at least two video frame ratios are outputted, and step S103 can be further included, as shown in FIG. 3.

[0077] Step S103: sharing the at least two videos to at least two different platforms, respectively.

[0078] After outputting the at least two videos, the at least two videos are shared to at least two different platforms respectively, so that the sharing desire of the user can be met.

[0079] In some embodiments, the sharing of the at least two videos to at least two different platforms respectively in step S103 can include: automatically sharing the at least two videos to at least two different platforms respectively; or sharing the at least two videos to at least two different platforms respectively selected by the user.

[0080] The embodiments of the present application can meet the sharing desire of the user without the operation of the user, or share to the platform desired to be shared by the user under the selection operation of the user.

[0081] In some embodiments, after the processing of the original video collected by the same image sensor based on the at least two video frame ratio indication information in step S102, the output of the at least two videos corresponding to the at least two video frame ratios respectively, step S102 can further include steps S104 and S105, as shown in FIG. 4.

[0082] Step S104: in the case that one of the at least two videos includes the original video, at least one video frame ratio indication information is acquired again.

[0083] Step S105: based on the at least one video frame ratio indication information acquired again, the original video data is processed, and at least one video corresponding to the at least one video frame ratio indication information is output.

[0084] In the embodiments of the present application, when one of the at least two videos includes the original video, the original video can also be processed according to the at least one video frame ratio indication information acquired again to obtain at least one corresponding video, which facilitates more needs of the user. For example, after obtaining the original video, the user can use a clip software to adjust the frame ratio of the original video again, which provides more flexible adjustment space for the user later.

[0085] In some embodiments, in step S102, the processing of the original video collected by the same image sensor based on the at least two video frame ratio indication information can include: cutting the original video collected by the same image sensor based on the at least two video frame ratio indication information. This processing method is relatively simple.

[0086] In some embodiments, in step S101, the acquiring the at least two video frame ratio indication information can include: acquiring the at least two video frame ratio indication information before controlling the image sensor to capture the original video; or acquiring the at least two video frame ratio indication information after controlling the image sensor to capture the original video.

[0087] In the embodiments of the present application, the at least two video frame ratio indication information can be acquired before the image sensor captures the original video, or can be acquired after the image sensor captures the original video, which can be determined according to actual needs. For example, the at least two video frame ratio indication information can be acquired before the user triggers the shooting, for example, the user can set the at least two video frame ratio indication information before shooting, so that the user can obtain at least two videos corresponding to the at least two video frame ratio indication information respectively after shooting is completed, and the video acquisition efficiency is high. Alternatively, the at least two video frame ratio indication information can be acquired after the user triggers the shooting and obtains the original video, for example, the user inputs the at least two video frame ratio indication information by means of editing software, so that the at least two video frame ratio indication information can be set by the post-editing software at a time, and the user can also obtain at least two videos corresponding to the at least two video frame ratio indication information respectively at a time, and the video acquisition efficiency is high.

[0088] However, the at least two video frame ratio indication information must be acquired before the original video is processed by using the at least two video frame ratio indication information, that is, the at least two video frame ratio indication information has been acquired before the original video is processed in the embodiments of the present application. That is to ensure that the process of processing the original video is smooth and uninterrupted, so as to improve the processing efficiency and smoothness of the video processing device.

[0089] In some embodiments, the image sensor includes image sensors with the same aspect ratio or image sensors with different aspect ratios.

[0090] The image sensor with the same aspect ratio can be a square image sensor, and the image sensor with different aspect ratios can be a rectangular image sensor, for example, a 4:3 image sensor.

[0091] Referring to FIG. 5, which is a structural schematic diagram of an embodiment of a video processing apparatus of the present application, the apparatus 100 comprises a memory 1 and a processor 2, the memory 1 and the processor 2 being connected through a bus. The processor 2 can be a micro control unit, a central processing unit or a digital signal processor, etc. The memory 1 can be a Flash chip, a read only memory, a magnetic disk, an optical disk, a U disk or a mobile hard disk, etc. The video processing apparatus of the embodiment of the present application can execute the steps in the video processing method described above, and the detailed description of the related content can be found in the video processing method described above, which will not be repeated here.

[0092] The memory is configured to store a computer program; and the processor is configured to execute the computer program and implement the following steps when executing the computer program:

[0093] Before processing the original videos respectively collected by the same image sensor based on different video frame scales, at least two video frame scale indication information are acquired, the at least two video frame scale indication information being used to indicate at least two different video frame scales; and the original videos collected by the same image sensor are processed respectively based on the at least two different video frame scale indication information, and at least two videos corresponding to the at least two different video frame scales respectively are output.

[0094] In some embodiments, the at least two video frame scale indication information are used to indicate at least a first video aspect ratio with an aspect ratio greater than 1 and a second video aspect ratio with an aspect ratio less than 1.

[0095] In some embodiments, the at least two video frame scale indication information are used to indicate all video aspect ratios with an aspect ratio greater than 1 or all video aspect ratios with an aspect ratio less than 1.

[0096] In some embodiments, one of the at least two video frame scale indication information is used to indicate a frame scale same as an aspect ratio of the image sensor.

[0097] In some embodiments, the at least two video frame scale indication information are input by a user.

[0098] In some embodiments, the at least two video frame scale indication information are input by the user through user information or through a control device.

[0099] In some embodiments, the user information comprises voice, gesture, posture or movement parameter.

[0100] In some embodiments, the input through the control device comprises input through a display interface, input through a posture of a wearable device or input through a control of the control device.

[0101] In some embodiments, the display interface comprises a display interface of the video processing device, or a display interface of a control device of the video processing device.

[0102] In some embodiments, the video frame ratio indication information is input by the user by inputting a frame ratio value of the video, adjusting a frame cropping box size, or inputting a platform required to share the video.

[0103] In some embodiments, the frame cropping box is displayed in a preview picture.

[0104] In some embodiments, the processor is further configured to output a preview video, the preview video being generated based on the video frame ratio indication information input by the user.

[0105] In some embodiments, the at least two video frame ratio indication information is automatically generated by the video processing device.

[0106] In some embodiments, the at least two video frame ratio indication information is automatically generated by the video processing device based on a current shooting scene.

[0107] In some embodiments, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, the processor is further configured to share the at least two videos to at least two different platforms respectively.

[0108] In some embodiments, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, the processor is further configured to automatically share the at least two videos to at least two different platforms respectively, or share the at least two videos to at least two different platforms selected by the user respectively.

[0109] In some embodiments, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, the processor is further configured to:

[0110] In the case where one of the at least two videos comprises the original video, reacquire at least one video frame ratio indication information;

[0111] Based on the reacquired at least one video frame ratio indication information, process the original video data, and output at least one video corresponding to the at least one video frame ratio indication information.

[0112] In some embodiments, the processor processes the original video collected by the same image sensor based on the at least two different video frame ratio indication information respectively, comprising:

[0113] Cut the original video collected by the same image sensor respectively based on the at least two video frame ratio indication information.

[0114] In some embodiments, the processor acquires at least two video frame ratio indication information, comprising:

[0115] Before controlling the image sensor to collect the original video, the at least two video frame ratio indication information is acquired; or,

[0116] After controlling the image sensor to collect the original video, the at least two video frame ratio indication information is acquired.

[0117] In some embodiments, the image sensor comprises image sensors with the same aspect ratio or image sensors with different aspect ratios.

[0118] Referring to FIG. 6, FIG. 6 is a structural schematic diagram of an embodiment of the video processing system of the present application, the system 200 comprises a memory 1, a processor 2 and an image sensor 3, the memory 1 and the processor 2 can be in communication connection with the image sensor 3, for example, through bus connection, the memory 1 is used for storing a computer program; the processor 2 is used for executing the computer program and realizing the video processing method as described above when executing the computer program. For the detailed description of the related content, please refer to the above related content, which will not be repeated here.

[0119] The present application also provides a computer readable storage medium, the computer readable storage medium stores a computer program, the computer program is executed by the processor to make the processor realize the video processing method as described above. For the detailed description of the related content, please refer to the above related content, which will not be repeated here.

[0120] Wherein, the computer readable storage medium can be the internal storage unit of the above-mentioned video processing device or video processing system, for example, hard disk or memory. The computer readable storage medium can also be an external storage device, for example, a plug-in hard disk, a smart memory card, a secure digital card, a flash memory card, etc.

[0121] At present, when a user shoots a video through a camera, only one video frame (for example, one video frame ratio) can be set at a time, and the camera processes the original video collected according to the video frame set by the user, and outputs the video of the corresponding frame. If the user needs to share the video according to different frames to different social platforms with different requirements for video frames, the current scheme cannot meet the user's needs, resulting in poor video acquisition efficiency and experience.

[0122] In the embodiments of the present application, at least two video frame indication information can be acquired at one time, and then the original video collected by the same image sensor is processed according to the acquired at least two video frame indication information to obtain at least two videos corresponding to the at least two video frame indication information, so that the user can set at least two video frame indication information at one time, and the user can obtain at least two videos with different frame at one time, and the video acquisition efficiency and experience are improved.

[0123] Referring to FIG. 7, FIG. 7 is a flowchart of another embodiment of the video processing method of the present application, and the method comprises the following steps:

[0124] In step S201, at least two video frame indication information is acquired before the original video collected by the same image sensor is processed based on the video frame indication information, the video frame indication information is used to indicate the frame of the video, and the video frame indication information indicated by the at least two video frame indication information is not completely the same.

[0125] In step S202, the original video collected by the same image sensor is processed based on the at least two video frame indication information, and at least two videos corresponding to the at least two video frame indication information are output.

[0126] The video frame indication information is used to indicate the frame of the video, and the frame of the video refers to the information of the picture or frame of each frame of the video (for example, the frame ratio, the frame size or the frame angle range), and the video frame indication information is used to indicate the information of the picture or frame of each frame of the video.

[0127] The video frame indication information indicated by the at least two video frame indication information is not completely the same, and the video frame indication information indicated by the at least two video frame indication information can be not completely the same in the display content of the frame of the video, for example, the display content of the frame of the video in any two videos is not completely the same, for example, part of the display content is the same and the remaining display content is different, or the display content is completely different.

[0128] In the embodiments of the present application, at least two different video frame indication information can be acquired at one time, and then the original video collected by the same image sensor is processed according to the acquired at least two different video frame indication information to obtain at least two videos corresponding to the at least two different video frame indication information, so that the user can set at least two different video frame indication information at one time, and the user can obtain at least two videos with different frame at one time, and the video acquisition efficiency and experience are improved.

[0129] In some embodiments, the frames of the at least two videos are different, and the display content of the frame of the corresponding video is not completely the same.

[0130] In some embodiments, the video frame indication information is used to indicate a video frame ratio, a video frame size, and / or a video frame range.

[0131] The video frame ratio can refer to a width-to-height ratio of a video frame. In a case where the width-to-height ratio of the video frame is consistent, the size of the video frame can be inconsistent. The video frame ratio can be, for example, 16:9, 9:16, and the like.

[0132] The video frame size can refer to a width size and a height size of a video frame. In a case where the width size and the height size of the video frame are consistent, the size of the video frame is consistent. The video frame size can be, for example, 1280x720, 1920x1080, 3840x2160, and the like.

[0133] The video frame range can refer to a range of a field of view (FOV) of a video frame. In a case where the range of the FOV of the video frame is consistent, the size of the video frame can be inconsistent, as long as the FOV of the video frame is within the range of the FOV. The video frame range can be, for example, a wide-angle 120-degree FOV or a telephoto 60-degree FOV.

[0134] In this way, the size of the video frame can be indicated flexibly and diversely according to actual needs.

[0135] In some embodiments, the at least two video frame indication information are used to indicate different video frame ratios, or the at least two video frame indication information are used to indicate the same video frame ratio and different display contents.

[0136] The at least two video frame indication information are used to indicate different video frame ratios. For example, the width-to-height ratio of the video frame is different, and the corresponding display content is different.

[0137] The at least two video frame indication information are used to indicate the same video frame ratio and different display contents. For example, the width-to-height ratio of the video frame is the same, and the corresponding display content is different.

[0138] In some embodiments, the at least two video frame indication information at least include a first video aspect ratio greater than 1 and a second video aspect ratio less than 1.

[0139] The first video aspect ratio with an aspect ratio greater than 1, i.e., the width of the video frame is greater than the height, which is usually the frame of a horizontal screen video; the second video aspect ratio with an aspect ratio less than 1, i.e., the width of the video frame is less than the height, which is usually the frame of a vertical screen video. In this way, the user can quickly obtain at least two different horizontal screen videos and vertical screen videos. In an application scenario, the first video aspect ratio with an aspect ratio greater than 1 and the second video aspect ratio with an aspect ratio less than 1 are the common video frame ratios on current social platforms (for example, the general video frame of Douyin is a vertical screen video, and the general video frame of Bilibili is a horizontal screen video). In this way, the user can quickly share at least two videos to at least two different platforms that require horizontal screen videos and vertical screen videos respectively, such as different social platforms, thereby improving video acquisition efficiency and experience.

[0140] In some embodiments, the at least two video frame indication information are used to indicate the video aspect ratio with an aspect ratio greater than 1 or are used to indicate the video aspect ratio with an aspect ratio less than 1.

[0141] The first video aspect ratio with an aspect ratio greater than 1, i.e., the width of the video frame is greater than the height, which is usually the frame of a horizontal screen video; the second video aspect ratio with an aspect ratio less than 1, i.e., the width of the video frame is less than the height, which is usually the frame of a vertical screen video. In this way, the user can quickly obtain at least two different horizontal screen videos or quickly obtain at least two different vertical screen videos.

[0142] In some embodiments, one of the at least two video frame indication information is used to indicate the same frame ratio as the aspect ratio of the image sensor.

[0143] The frame ratio same as the aspect ratio of the image sensor, i.e., the frame ratio same as the frame ratio of the original video captured by the image sensor. In this way, the user can quickly obtain at least two different frame ratio videos including the original video.

[0144] In some embodiments, the at least two video frame indication information are used to indicate different video frame sizes, or the at least two video frame indication information are used to indicate the same video frame size and different display contents.

[0145] The at least two video frame indication information are used to indicate different video frame sizes. When the video frame sizes are different, e.g., the width and height of the video frame are different, the corresponding display contents are not completely the same.

[0146] The at least two video frame indication information are used to indicate the same video frame size and the not completely same picture display content. The video frame size is the same, for example, the width and height of the video frame are the same. The corresponding picture display content is generally the same without special indication. Therefore, it is necessary to specially indicate that the video frame size is the same, and the corresponding picture display content is not completely the same, for example, the display content can be adjusted by adjusting the position of the crop frame.

[0147] In some embodiments, one of the at least two video frame indication information is used to indicate the frame size which is the same as the size of the image sensor.

[0148] One of the at least two video frame indication information is used to indicate the frame size which is the same as the size of the image sensor, which indicates that at least one original video needs to be included in the output video, so as to facilitate the user to quickly obtain at least two videos including the original video.

[0149] In some embodiments, the at least two video frame indication information are used to indicate the not same video frame range, or the at least two video frame indication information are used to indicate the same video frame range and the not completely same picture display content.

[0150] The at least two video frame indication information are used to indicate the not same video frame range. The video frame range is not the same, for example, the field of view angle of the video frame is not the same. The corresponding picture display content is not completely the same.

[0151] The at least two video frame indication information are used to indicate the same video frame range and the not completely same picture display content. The video frame range is the same, for example, the field of view angle range of the video frame is the same. The corresponding picture display content is generally the same without special indication. Therefore, it is necessary to specially indicate that the video frame range is the same, and the corresponding picture display content is not completely the same.

[0152] In some embodiments, the at least two video frame indication information at least include indication information used to indicate a first field of view range and indication information used to indicate a second field of view range, and the first field of view range is smaller than the second field of view range.

[0153] The field of view range is an important indicator of the lens, which describes the picture range that can be shot by the lens, including the width and the height. The large field of view range can shoot a wider picture range, and the small field of view range can shoot a small range of picture range to capture the shooting details. For example, when shooting a person, a small field of view range can be used, and when shooting the person and the environment around the person, a large field of view range can be used.

[0154] In the embodiments of the present application, the original video can be processed by the indication information indicating the first field of view range and the indication information indicating the second field of view range, to obtain at least two videos including the videos corresponding to the first field of view range and the second field of view range respectively.

[0155] That is, the original video is obtained by using a lens with only one field of view range, and two or more videos corresponding to two or more different field of view ranges are obtained by video processing.

[0156] In some embodiments, the first field of view range includes a target shooting object, and the second field of view range includes the target shooting object and a background around the target shooting object.

[0157] The first field of view range is small and suitable for including a specific target, i.e., a target shooting object; and the second field of view range is large and can include not only the target shooting object but also a background around the target shooting object.

[0158] For example, the original video includes a person 1, a person 2 and a sea at a certain distance, the first field of view range includes the person 2 (target shooting object), and the second field of view range includes the person 2 and the sea. After processing the original video, one of the output videos can include only the video of the person 2, and the other output video can include the video of the person 2 and the sea.

[0159] In some embodiments, the target shooting object includes a static target shooting object or a dynamic target shooting object.

[0160] When the target shooting object includes a static target shooting object (for example, a person, a tree, a flower, etc. with a fixed position), the position of the target shooting object in each frame of the original video is relatively fixed; when the target shooting object includes a dynamic target shooting object (for example, a person moving, an animal moving, a car moving, etc.), the position of the target shooting object in each frame of the original video is not fixed.

[0161] In some embodiments, in response to the target shooting object being a dynamic target object, the video data corresponding to the first field of view range is obtained from different positions in different image frames in the original video.

[0162] When the target shooting object includes a dynamic target shooting object (for example, a person moving in position, an animal moving in position, a moving car, etc.), since the position of the target shooting object in each frame in the original video is not fixed, when the original video is processed, the position of the target shooting object in each frame needs to be identified first, and then the target shooting object in each frame is obtained according to the position of the target shooting object in each frame.

[0163] In some embodiments, the at least two video frame indication information is input by a user. In this way, the actual needs of the user for the at least two video frame indication information can be met.

[0164] In some embodiments, the at least two video frame indication information is input by a user through user information or through a control device.

[0165] The user information can refer to information directly related to the user, such as the user's voice, the user's gesture, the user's posture, the user's movement parameter, etc. For example, the user can directly speak at least two different video frame indication information, and the video processing apparatus identifies the user's voice to obtain the at least two video frame indication information. For another example, a one-to-one correspondence relationship between a preset gesture or posture of the user and a preset video frame indication information is established in advance, the user can make a plurality of different gestures or postures, and the video processing apparatus can identify a plurality of different video frame indication information corresponding to the plurality of different gestures or postures, respectively, to obtain the at least two video frame indication information. The movement parameter of the user includes a movement direction and / or a movement distance.

[0166] The control device can be part of the video processing apparatus or independent of the video processing apparatus. The control device can be in communication connection with the video processing apparatus, and the control device can be in wired or wireless connection with the video processing apparatus, for example, the control device can be in remote communication with the video processing apparatus. The control device includes but is not limited to a remote controller, a wearable device, a mobile phone, etc.

[0167] In some embodiments, the input through the control device includes input through a display interface, input through a posture of a wearable device, or input through a control of the control device.

[0168] The input through the display interface is a relatively common input method, and the corresponding display screen is usually a touch screen. The user can directly input on the touch screen through a finger or input on the touch screen through an input pen or the like object.

[0169] The posture input of the wearable device usually needs to establish a one-to-one correspondence between a preset posture of the wearable device and preset video frame indication information in advance. The wearable device captures and recognizes its posture and determines the video frame indication information corresponding to the posture (for example, the wearable device is part of a video processing device, the wearable device can recognize its posture and determine the corresponding video frame, or the wearable device is independently arranged with the video processing device, and the wearable device sends the determined video frame to the video processing device), or the wearable device sends its posture to the video processing device, and the video processing device determines the video frame corresponding to the posture of the wearable device. Through the posture input of the wearable device, the user usually needs to wear the wearable device (including head-mounted wearable devices such as glasses, helmets, etc., and non-head-mounted wearable devices such as watches, bracelets, etc.), and the posture made by the user is taken as the posture of the wearable device. The video frame indication information corresponding to the posture can be determined by recognizing the posture of the wearable device.

[0170] The control of the control device includes but is not limited to a dial, a joystick, and a button. In the related art, the dial and the joystick are usually used for quickly adjusting parameters, and the button is used for executing a specific function. The control device can reuse the control. In the case that the control has its own function, the input function of the embodiment of the application is added. The control device recognizes the video frame input by the user through the control (for example, the control device is part of a video processing device, the control device recognizes the video frame input by the user through the control, or the control device is independently arranged with the video processing device, and the control device sends the recognized video frame input by the user through the control to the video processing device).

[0171] The embodiment of the application inputs at least two video frame indication information by the user through user information or through the control device. The input mode is flexible and various, and can fully meet the current diversified input mode.

[0172] In some embodiments, the display interface includes a display interface of a video processing device, that is, the display interface is part of the video processing device; or the display interface includes a display interface of a control device of the video processing device, that is, the display interface is part of the control device which is independent of the video processing device. In this way, the user can input in the display interface of the video processing device or can input in the display interface of the control device.

[0173] In some embodiments, the video frame indication information input by the user is used to indicate the frame ratio of the video, the frame size of the video, and / or the frame range of the video.

[0174] The aspect ratio of the video can refer to the width-to-height ratio of the aspect of the video. In a case where the width-to-height ratio of the aspect of the video is consistent, the size of the aspect of the video can be inconsistent. The aspect ratio of the video can be, for example, 16:9, 9:16, and the like.

[0175] The aspect size of the video can refer to the width size and the height size of the aspect of the video. In a case where the width size and the height size of the aspect of the video are consistent, the size of the aspect of the video is consistent. The aspect size of the video can be, for example, 1280x720, 1920x1080, 3840x2160, and the like.

[0176] The aspect range of the video can refer to the range of the field of view of the aspect of the video. In a case where the range of the field of view of the aspect of the video is consistent, the size of the aspect of the video can be inconsistent, as long as the field of view of the aspect of the video is within the range of the field of view. The aspect range of the video can be, for example, wide-angle 120-degree field of view (FOV) or telephoto 60-degree FOV.

[0177] In the above manner, the size of the aspect of the video can be flexibly and variously indicated according to actual needs.

[0178] In some embodiments, the aspect ratio of the video is input by the user by inputting an aspect ratio value of the video, adjusting the size of the aspect cropping frame, or inputting a platform to be shared by the video.

[0179] The user obtains the aspect ratio of the video by inputting an aspect ratio value of the video. For example, two values are input in advance, the first input value represents the width, and the second input value represents the height. The user inputs 16 and 9, which indicates that the width-to-height ratio of the aspect of the video is 16:9. Or, it is specified in advance that the ratio of the input value is the width-to-height ratio. The user inputs 16:9, which indicates that the width-to-height ratio of the aspect of the video is 16:9. And the like.

[0180] The user obtains the aspect ratio of the video by adjusting the size of the aspect cropping frame. For example, the user can simultaneously adjust the width and the height of the cropping frame in the direction of the diagonal line of the cropping frame, or adjust the width of the cropping frame in the width direction of the cropping frame, or adjust the height of the cropping frame in the height direction of the cropping frame.

[0181] The user can input a platform to be shared by the video. The video processing apparatus automatically obtains the aspect ratio of the video corresponding to the platform. For example, the user inputs Douyin and Bilibili, and the video processing apparatus automatically obtains the aspect ratio of the vertical screen video and the horizontal screen video corresponding to Douyin and Bilibili, respectively.

[0182] The input mode is flexible and diverse, and can fully meet the current diversified input mode.

[0183] In some embodiments, the frame size of the video is input by the user by inputting a frame size value of the video, adjusting a frame cutting box size, or inputting a platform required to share the video.

[0184] The user obtains the frame size of the video by inputting a frame size value of the video. The frame size of the video usually refers to the width and height (usually in pixels) of the frame of the video. Common frame sizes of the video include 4K (4096x2160 pixels), 2K (2048x1080 pixels), 1080P (1920x1080 pixels), 720P (1280x720 pixels), etc. For example, two values are input in advance. The first input value represents the width, and the second input value represents the height. The user inputs 4096 and 2160, which means that the width and height of the frame of the video are 4096 and 2160 pixels, respectively.

[0185] The user obtains the frame size of the video by adjusting the size of the frame cutting box. For example, the user can adjust the width and height of the cutting box in the direction of the diagonal line of the cutting box, or adjust the width of the cutting box in the width direction of the cutting box, or adjust the height of the cutting box in the height direction of the cutting box.

[0186] The user inputs the platform required to share the video, and the video processing device automatically obtains the frame size of the video corresponding to the platform. For example, the user inputs Douyin and Bilibili, and the video processing device automatically obtains the frame size of the vertical screen video and the horizontal screen video corresponding to Douyin and Bilibili, respectively.

[0187] The input mode is flexible and diverse, and can fully meet the current diversified input mode.

[0188] In some embodiments, the frame range of the video is input by the user by inputting a frame range value of the video, inputting a focal length, adjusting a frame cutting box range, or selecting a target shooting object.

[0189] The user obtains the frame range of the video by inputting a frame range value of the video. The frame range of the video usually includes the frame field angle range of the video. For example, the user first inputs 55 and 65, which means that the frame field angle range of the video is between 55° and 65°.

[0190] The user obtains the frame range of the video by inputting the focal length. Different focal lengths affect the field of view range; the longer the focal length, the smaller the field of view angle, the subject in the picture is more prominent, and the background is compressed; the shorter the focal length, the larger the field of view angle, the wider the field of view, and it is suitable for shooting a wide scene. Therefore, the user can obtain the frame range of the video by inputting the focal length, and can preset a one-to-one correspondence between the preset focal length and the frame range of the preset video. According to the focal length input by the user, the corresponding frame range of the video can be determined.

[0191] The user obtains the frame range of the video by adjusting the frame cutting box range, for example: the user can simultaneously adjust the width and height of the cutting box in the direction of the diagonal line of the cutting box, or adjust the width of the cutting box in the width direction of the cutting box, or adjust the height of the cutting box in the height direction of the cutting box, to obtain the frame range of the video.

[0192] The user obtains the frame range of the video by selecting a target shooting object, for example, the frame of the video includes a person 1, a person 2, and the sea, and the user selects the person 2 as the target shooting object. Then the frame range of the video includes the person 2 in each frame.

[0193] The above input methods are flexible and diverse, and can fully meet the current diversified input methods.

[0194] In some embodiments, the frame cutting box is displayed in the preview picture. In this way, when the frame cutting box is adjusted, it can be displayed in the preview picture to confirm whether the size of the frame cutting box is appropriate.

[0195] In some embodiments, the method can further include outputting a preview video, wherein the preview video is generated based on the video frame indication information input by the user.

[0196] After the user inputs the video frame indication information, a preview video is generated and outputted, which facilitates the user to confirm whether the input video frame indication information meets the requirements.

[0197] In some embodiments, the at least two video frame indication information is automatically generated by the video processing device. The video processing device can also automatically generate at least two video frame indication information to avoid user input. For example, the video processing device can default at least two video frame indication information, and automatically generate at least two video frame indication information based on the default; or, the video processing device can save at least two video frame indication information previously set by the user, and automatically use the saved at least two video frame indication information as the current at least two video frame indication information; etc.

[0198] In some embodiments, the at least two video frame indication information is automatically generated by the video processing device based on a current shooting scene.

[0199] The video processing device can intelligently generate at least two video frame indication information according to a current shooting scene, so that the user's demand for intelligent video processing device can be better met, and the user's operation can be better avoided.

[0200] In some embodiments, after the step S202 of processing the original video collected by the same image sensor based on the at least two video frame indication information to output at least two videos corresponding to the at least two video frame indication information respectively, the method can further include the step S203 as shown in FIG. 8.

[0201] The step S203 is to share the at least two videos to at least two different platforms respectively.

[0202] After the at least two videos are output, the at least two videos are shared to at least two different platforms respectively, so that the user's sharing desire can be met.

[0203] In some embodiments, the step S203 of sharing the at least two videos to at least two different platforms respectively can include automatically sharing the at least two videos to at least two different platforms respectively, or sharing the at least two videos to at least two different platforms selected by the user respectively.

[0204] The embodiments of the present application can meet the user's sharing desire without the user's operation, or share to the platform desired by the user under the user's selection operation.

[0205] In some embodiments, after the step S202 of processing the original video collected by the same image sensor based on the at least two video frame indication information to output at least two videos corresponding to the at least two video frame indication information respectively, the method can further include the steps S204 and S205 as shown in FIG. 9.

[0206] The step S204 is to acquire at least one video frame indication information again in the case that one of the at least two videos includes the original video.

[0207] The step S205 is to process the original video data based on the at least one video frame indication information acquired again to output at least one video corresponding to the at least one video frame indication information.

[0208] In the embodiments of the present application, when one of the at least two videos comprises the original video, the original video can also be processed according to the at least one video frame indication information obtained again, to obtain the corresponding at least one video, thereby facilitating more needs of the user. For example, after obtaining the original video, the user can use a clipping software to adjust the frame ratio of the original video again, thereby providing more flexible adjustment space for the user later.

[0209] In some embodiments, in step S202, the original video collected by the same image sensor can be processed based on the at least two video frame indication information, which can include cutting the original video collected by the same image sensor based on the at least two video frame indication information. This processing method is relatively simple.

[0210] In some embodiments, in step S201, the at least two video frame indication information can be obtained before controlling the image sensor to collect the original video, or can be obtained after controlling the image sensor to collect the original video.

[0211] In the embodiments of the present application, the at least two video frame indication information can be obtained before the image sensor collects the original video, or can be obtained after the image sensor collects the original video, which can be determined according to actual needs. For example, the at least two video frame indication information can be obtained before the user triggers the shooting, for example, the user can set the at least two video frame indication information before shooting, so that the user can obtain the at least two videos corresponding to the at least two video frame indication information respectively after shooting, and the video acquisition efficiency is relatively high. Alternatively, the at least two video frame indication information can be obtained after the user triggers the shooting and obtains the original video, for example, the user inputs the at least two video frame indication information by using a clipping software, so that the at least two video frame indication information can be set by using the clipping software at one time, and the user can also obtain the at least two videos corresponding to the at least two video frame indication information respectively at one time, and the video acquisition efficiency is relatively high.

[0212] However, the at least two video frame indication information must be obtained before the original video is processed based on the at least two video frame indication information, that is, the at least two video frame indication information has been obtained before the original video is processed in the embodiments of the present application. Therefore, the process of processing the original video is smooth and uninterrupted, thereby improving the processing efficiency and smoothness of the video processing device.

[0213] In some embodiments, the image sensors include image sensors with the same aspect ratio or image sensors with different aspect ratios.

[0214] The image sensors with the same aspect ratio can be square image sensors, for example, and the image sensors with different aspect ratios can be rectangular image sensors, for example, such as 4:3.

[0215] Referring to FIG. 10, FIG. 10 is a structural schematic diagram of another embodiment of a video processing apparatus of the present application. The apparatus 300 includes a memory 11 and a processor 22, and the memory 11 and the processor 22 are connected through a bus. The processor 22 can be a micro control unit, a central processing unit, or a digital signal processor, etc. The memory 11 can be a Flash chip, a read-only memory, a magnetic disk, an optical disk, a U disk, or a mobile hard disk, etc. The video processing apparatus of the embodiment of the present application can execute the steps in the video processing method described above. For details, please refer to the related content of the video processing method described above, which will not be repeated here.

[0216] The memory is configured to store a computer program; and the processor is configured to execute the computer program and implement the following steps when executing the computer program:

[0217] Before processing the original video collected by the same image sensor based on the video frame indication information, at least two video frame indication information are obtained, the video frame indication information is used to indicate the frame of the video, and the video frame indication information indicated by the at least two video frame indication information is not completely the same. The original video collected by the same image sensor is processed based on the at least two video frame indication information, and at least two videos corresponding to the at least two video frame indication information are output.

[0218] In some embodiments, the frames of the at least two videos are different, and the video frame display content corresponding to the at least two videos is not completely the same.

[0219] In some embodiments, the video frame indication information is used to indicate the frame ratio of the video, the frame size of the video, and / or the frame range of the video.

[0220] In some embodiments, the at least two video frame indication information is used to indicate different video frame ratios, or the at least two video frame indication information is used to indicate the same video frame ratio and not completely the same video frame display content.

[0221] In some embodiments, the at least two video frame indication information includes at least a first video aspect ratio indicating an aspect ratio greater than 1 and a second video aspect ratio indicating an aspect ratio less than 1.

[0222] In some embodiments, the at least two video frame indication information are all used to indicate a video aspect ratio greater than 1 or all used to indicate a video aspect ratio less than 1.

[0223] In some embodiments, one of the at least two video frame indication information is used to indicate a frame ratio same as an aspect ratio of the image sensor.

[0224] In some embodiments, the at least two video frame indication information are used to indicate different video frame sizes, or the at least two video frame indication information are used to indicate a same video frame size and different display contents of the frame.

[0225] In some embodiments, one of the at least two video frame indication information is used to indicate a frame size same as a size of the image sensor.

[0226] In some embodiments, the at least two video frame indication information are used to indicate different video frame ranges, or the at least two video frame indication information are used to indicate a same video frame range and different display contents of the frame.

[0227] In some embodiments, the at least two video frame indication information at least include indication information used to indicate a first field of view range and indication information used to indicate a second field of view range, the first field of view range being smaller than the second field of view range.

[0228] In some embodiments, the first field of view range includes a target shooting object, and the second field of view range includes the target shooting object and a background around the target shooting object.

[0229] In some embodiments, the target shooting object includes a static target shooting object or a dynamic target shooting object.

[0230] In some embodiments, in response to the target shooting object being a dynamic target object, the output video data corresponding to the first field of view range is acquired from different positions in different image frames in the original video.

[0231] In some embodiments, the at least two video frame indication information are input by a user.

[0232] In some embodiments, the at least two video frame indication information are input by a user through user information or through a control device.

[0233] In some embodiments, the user information includes voice, gesture, posture, or movement parameter.

[0234] In some embodiments, the inputting through the control device comprises inputting through a display interface, inputting through a gesture of a wearable device, or inputting through a control of the control device.

[0235] In some embodiments, the display interface comprises a display interface of the video processing apparatus, or a display interface of a control device of the video processing apparatus.

[0236] In some embodiments, the video frame indication information inputted by the user is used to indicate a frame ratio of the video, a frame size of the video, and / or a frame range of the video.

[0237] In some embodiments, the frame ratio of the video is inputted by the user by inputting a frame ratio value of the video, adjusting a frame cropping box size, or inputting a platform required for sharing the video.

[0238] In some embodiments, the frame size of the video is inputted by the user by inputting a frame size value of the video, adjusting a frame cropping box size, or inputting a platform required for sharing the video.

[0239] In some embodiments, the frame range of the video is inputted by the user by inputting a frame range value of the video, inputting a focal length, adjusting a frame cropping box range, or selecting a target shooting object.

[0240] In some embodiments, the frame cropping box is displayed in a preview picture.

[0241] In some embodiments, the processor is further configured to output a preview video, the preview video being generated based on the video frame indication information inputted by the user.

[0242] In some embodiments, the at least two video frame indication information is automatically generated by the video processing apparatus.

[0243] In some embodiments, the at least two video frame indication information is automatically generated by the video processing apparatus based on a current shooting scene.

[0244] In some embodiments, after outputting the at least two videos corresponding to the at least two video frame indication information respectively, the processor is further configured to share the at least two videos to at least two different platforms respectively.

[0245] In some embodiments, after outputting the at least two videos corresponding to the at least two video frame indication information respectively, the processor is further configured to automatically share the at least two videos to at least two different platforms respectively, or share the at least two videos to at least two different platforms selected by the user respectively.

[0246] In some embodiments, the processor, after outputting the at least two videos corresponding to the at least two video frame indication information respectively, is further configured to perform:

[0247] In the case that one of the at least two videos comprises the original video, reacquire at least one video frame indication information;

[0248] Based on the reacquired at least one video frame indication information, process the original video data and output at least one video corresponding to the at least one video frame indication information.

[0249] In some embodiments, the processor processes the original video collected by the same image sensor based on the at least two different video frame scale indication information respectively, including:

[0250] Based on the at least two video frame indication information, cut the original video collected by the same image sensor respectively.

[0251] In some embodiments, the processor acquires at least two video frame scale indication information, including:

[0252] Before controlling the image sensor to collect the original video, acquire the at least two video frame indication information; or,

[0253] After controlling the image sensor to collect the original video, acquire the at least two video frame indication information.

[0254] In some embodiments, the image sensor comprises image sensors with the same aspect ratio or image sensors with different aspect ratios.

[0255] Referring to FIG. 11, FIG. 11 is a structural schematic diagram of an embodiment of the video processing system of the present application, the system 400 comprises a memory 11, a processor 22 and an image sensor 33, the memory 11 and the processor 22 can be communicatively connected with the image sensor 33, for example, connected through a bus, the memory 11 is configured to store a computer program; the processor 22 is configured to execute the computer program and realize the video processing method as described above when executing the computer program. For details, please refer to the above description, which will not be repeated here.

[0256] The present application also provides another computer readable storage medium, the computer readable storage medium stores a computer program, the computer program is executed by a processor to make the processor realize the video processing method as described above. For details, please refer to the above description, which will not be repeated here.

[0257] The computer readable storage medium can be an internal storage unit of the video processing apparatus or the video processing system, such as a hard disk or a memory. The computer readable storage medium can also be an external storage device, such as a plug-in hard disk, a smart memory card, a secure digital card, a flash memory card, etc.

[0258] It should be understood that the terms used in the present application are merely for the purpose of describing particular embodiments and are not intended to limit the present application.

[0259] It should also be understood that the term "and / or" used in the present application and the appended claims means any combination of one or more of the associated listed terms and all possible combinations, and includes these combinations.

[0260] The above description is merely illustrative of the application, and the scope of the application should be determined not by the above description but by the claims that follow.

Claims

1. A method of video processing, the method comprising: The method comprises: Before processing original videos respectively based on different video frame ratios of the same image sensor, obtaining at least two video frame ratio indication information, the at least two video frame ratio indication information being used for indicating at least two different video frame ratios; Processing the original videos respectively based on the at least two different video frame ratio indication information, and outputting at least two videos corresponding to the at least two different video frame ratios respectively.

2. The method of claim 1, wherein, The at least two video frame ratio indication information is used for indicating at least a first video aspect ratio greater than 1 and a second video aspect ratio less than 1.

3. The method of claim 1, wherein, The at least two video frame ratio indication information is used for indicating a video aspect ratio greater than 1 or a video aspect ratio less than 1.

4. The method according to claim 1 or 2, characterized in that, One of the at least two video frame ratio indication information is used for indicating a frame ratio same as that of the image sensor.

5. The method according to any one of claims 1 to 4, characterized in that, The at least two video frame ratio indication information is input by a user.

6. The method of claim 5, wherein, The at least two video frame ratio indication information is input by the user through user information or through a control device.

7. The method of claim 6, wherein, The user information comprises voice, gesture, posture or movement parameter.

8. The method of claim 6, wherein, The input through the control device comprises input through a display interface, input through a posture of a wearable device or input through a control of the control device.

9. The method of claim 8, wherein, The display interface comprises a display interface of a video processing apparatus or a display interface of a control device of the video processing apparatus.

10. The method of claim 5, wherein, The video frame ratio indication information is input by the user through input of a frame ratio value of a video, adjustment of a frame cutting box size or input of a platform required to share the video.

11. The method of claim 10, wherein, The frame cutting box is displayed in a preview picture.

12. The method of claim 5, wherein, The method further comprises: Outputting a preview video, the preview video being generated based on the video frame ratio indication information input by the user.

13. The method according to any one of claims 1 to 4, characterized in that, The at least two video frame ratio indication information is automatically generated by a video processing apparatus.

14. The method of claim 13, wherein, The at least two video frame ratio indication information is automatically generated by the video processing apparatus based on a current shooting scene.

15. The method according to any one of claims 1 to 14, characterized in that, After the processing of the original videos respectively based on the at least two video frame ratio indication information and the output of the at least two videos corresponding to the at least two video frame ratios respectively, the method further comprises: Sharing the at least two videos respectively to at least two different platforms.

16. The method of claim 15, wherein, The sharing of the at least two videos respectively to the at least two different platforms comprises: Automatically sharing the at least two videos respectively to the at least two different platforms; Or, sharing the at least two videos respectively to at least two different platforms selected by the user.

17. The method according to any one of claims 1 to 16, characterized in that, After the processing of the original videos respectively based on the at least two video frame ratio indication information and the output of the at least two videos corresponding to the at least two video frame ratios respectively, the method further comprises: In a case that one of the at least two videos comprises the original video, obtaining at least one video frame ratio indication information again; processing the original video data based on the at least one video frame ratio indication information re-acquired, and outputting at least one video corresponding to the at least one video frame ratio indication information.

18. The method according to any one of claims 1 to 17, characterized in that, The processing of the original video respectively based on the at least two video frame ratio indication information includes: The processing of the original video respectively based on the at least two video frame ratio indication information includes:

19. The method according to any one of claims 1 to 18, characterized in that, The obtaining of the at least two video frame ratio indication information includes: The at least two video frame ratio indication information is obtained before the image sensor is controlled to collect the original video, or The at least two video frame ratio indication information is obtained after the image sensor is controlled to collect the original video.

20. The method of any one of claims 1-19, wherein, The image sensor includes image sensors with the same aspect ratio or image sensors with different aspect ratios.

21. A video processing apparatus, comprising: The device includes a memory and a processor, the memory is used to store a computer program, and the processor is used to execute the computer program and realize the following steps when executing the computer program: Before the original video collected by the same image sensor is processed based on video frame ratios, at least two video frame ratio indication information is obtained, the at least two video frame ratio indication information is used to indicate at least two different video frame ratios; The original video collected by the same image sensor is processed based on the at least two different video frame ratio indication information, and at least two videos corresponding to the at least two different video frame ratios respectively are output.

22. The apparatus of claim 21, wherein, The at least two video frame ratio indication information is used to indicate at least a first video aspect ratio with an aspect ratio greater than 1 and a second video aspect ratio with an aspect ratio less than 1.

23. The apparatus of claim 21, wherein, The at least two video frame ratio indication information is used to indicate a video aspect ratio with an aspect ratio greater than 1 or a video aspect ratio with an aspect ratio less than 1.

24. The apparatus of claim 21 or 22, wherein, One of the at least two video frame ratio indication information is used to indicate a frame ratio same as the aspect ratio of the image sensor.

25. The apparatus of any one of claims 21-24, wherein, The at least two video frame ratio indication information is input by a user.

26. The apparatus of claim 25, wherein, The at least two video frame ratio indication information is input by a user through user information or through a control device.

27. The apparatus of claim 26, wherein, The user information includes voice, gesture, posture or movement parameter.

28. The apparatus of claim 26, wherein, The input through a control device includes input through a display interface, input through a posture of a wearable device or input through a control of a control device.

29. The apparatus of claim 28, wherein, The display interface includes a display interface of a video processing device or a display interface of a control device of the video processing device.

30. The apparatus of claim 25, wherein, The video frame ratio indication information is input by a user through input of a frame ratio value of a video, adjustment of a frame cutting box size or input of a platform required to share the video.

31. The apparatus of claim 30, wherein, The frame cutting box is displayed in a preview screen.

32. The apparatus of claim 25, wherein, The processor is further used to execute: Output a preview video, the preview video is generated based on the video frame ratio indication information input by a user.

33. The apparatus of any one of claims 21-24, wherein, The at least two video frame ratio indication information is automatically generated by a video processing device.

34. The apparatus of claim 33, wherein, The at least two video frame ratio indication information is automatically generated by the video processing apparatus based on a current shooting scene.

35. The device of any one of claims 21-34, wherein, The processor, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, is further configured to perform: sharing the at least two videos respectively to at least two different platforms.

36. The device of claim 35, wherein, The processor, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, is further configured to perform: sharing the at least two videos respectively to at least two different platforms. The processor, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, is further configured to perform:

37. The apparatus of claim 21, wherein, sharing the at least two videos respectively to at least two different platforms. The processor, after outputting the at least two videos corresponding to the at least two different video frame ratios respectively, is further configured to perform: in a case where one of the at least two videos comprises the original video, reacquiring at least one video frame ratio indication information; 38. The device of any one of claims 21-37, wherein, processing the original video data based on the reacquired at least one video frame ratio indication information, and outputting at least one video corresponding to the at least one video frame ratio indication information. The processor processes the original video collected by the same image sensor based on the at least two different video frame ratio indication information, including:

39. The device of any one of claims 21-38, wherein, cutting the original video collected by the same image sensor based on the at least two video frame ratio indication information. The processor acquires at least two video frame ratio indication information, including: acquiring the at least two video frame ratio indication information before controlling the image sensor to collect the original video; or 40. The device of any one of claims 21-39, wherein, acquiring the at least two video frame ratio indication information after controlling the image sensor to collect the original video.

41. A video processing system characterized by The image sensor includes image sensors with the same aspect ratio or image sensors with different aspect ratios.

42. A computer-readable storage medium, characterized in that, The system includes a memory, a processor, and an image sensor, the memory is used to store a computer program; the processor is used to execute the computer program and realize the video processing method as claimed in any one of claims 1-20 when executing the computer program.

43. A method for video processing, the method comprising: The computer readable storage medium stores a computer program, and the computer program is executed by the processor to make the processor realize the video processing method as claimed in any one of claims 1-20. The method includes: acquiring at least two video frame indication information before processing the original video collected by the same image sensor based on the video frame indication information, the video frame indication information is used to indicate a frame of a video, and the at least two video frame indication information indicates different frame display contents of the video; processing the original video collected by the same image sensor based on the at least two video frame indication information, and outputting at least two videos corresponding to the at least two video frame indication information respectively.

44. The method of claim 43, wherein, The at least two videos have different frames, and the corresponding videos have different frame display contents.

45. The method of claim 44, wherein, The video frame indication information is used for indicating a frame ratio of the video, a frame size of the video, and / or a frame range of the video.

46. The method of claim 45, wherein, The at least two video frame indication information are used for indicating different frame ratios of the video, or the at least two video frame indication information are used for indicating the same frame ratio of the video and different frame display contents.

47. The method of claim 46, wherein, The at least two video frame indication information are used for indicating a first video aspect ratio with an aspect ratio greater than 1 and a second video aspect ratio with an aspect ratio less than 1.

48. The method of claim 46, wherein, The at least two video frame indication information are used for indicating a video aspect ratio with an aspect ratio greater than 1 or a video aspect ratio with an aspect ratio less than 1.

49. The method of any one of claims 46 to 48, wherein, One of the at least two video frame indication information is used for indicating a frame ratio same as an aspect ratio of the image sensor.

50. The method of claim 45, wherein, The at least two video frame indication information are used for indicating different frame sizes of the video, or the at least two video frame indication information are used for indicating the same frame size of the video and different frame display contents.

51. The method of claim 50, wherein, One of the at least two video frame indication information is used for indicating a frame size same as a size of the image sensor.

52. The method of claim 45, wherein, The at least two video frame indication information are used for indicating different frame ranges of the video, or the at least two video frame indication information are used for indicating the same frame range of the video and different frame display contents.

53. The method of claim 52, wherein, The at least two video frame indication information include indication information for indicating a first field of view range and indication information for indicating a second field of view range, the first field of view range being smaller than the second field of view range.

54. The method of claim 53, wherein, The first field of view range includes a target shooting object, and the second field of view range includes the target shooting object and a background around the target shooting object.

55. The method of claim 54, wherein, The target shooting object includes a static target shooting object or a dynamic target shooting object.

56. The method of claim 55, wherein, In response to the target shooting object being a dynamic target object, the output video data corresponding to the first field of view range is acquired from different positions in different image frames in the original video.

57. The method of any one of claims 43-56, wherein, The at least two video frame indication information are input by a user.

58. The method of claim 57, wherein, The at least two video frame indication information are input by the user through user information or through a control device.

59. The method of claim 58, wherein, The user information includes voice, gesture, posture, or movement parameter.

60. The method of claim 58, wherein, The input through the control device includes input through a display interface, input through a posture of a wearable device, or input through a control of a control device.

61. The method of claim 60, wherein, The display interface includes a display interface of a video processing apparatus or a display interface of a control device of the video processing apparatus.

62. The method of claim 57, wherein, The video frame indication information input by the user is used for indicating a frame ratio of the video, a frame size of the video, and / or a frame range of the video.

63. The method of claim 62, wherein, The frame ratio of the video is input by the user by inputting a frame ratio value of the video, adjusting a size of a frame cropping box, or inputting a platform required for sharing the video.

64. The method of claim 62, wherein, The frame size of the video is input by the user by inputting a frame size value of the video, adjusting a size of a frame cropping box, or inputting a platform required for sharing the video.

65. The method of claim 62, wherein, The frame range of the video is input by the user by inputting a frame range value of the video, inputting a focal length, adjusting a frame cutting box range, or selecting a target shooting object.

66. The method of any one of claims 63-65, wherein, The frame cutting box is displayed in a preview picture.

67. The method of any one of claims 57-66, wherein, The method further comprises: outputting a preview video, which is generated based on the video frame indication information input by the user.

68. The method of any one of claims 43-56, wherein, The at least two video frame indication information is automatically generated by the video processing device.

69. The method of claim 68, wherein, The at least two video frame indication information is automatically generated by the video processing device based on a current shooting scene.

70. The method of any one of claims 43-69, wherein, After the raw video collected by the same image sensor is respectively processed based on the at least two video frame indication information and at least two videos corresponding to the at least two video frame indication information are output, the method further comprises: sharing the at least two videos to at least two different platforms respectively.

71. The method of claim 70, wherein, The sharing of the at least two videos to at least two different platforms respectively comprises: automatically sharing the at least two videos to at least two different platforms respectively; or, sharing the at least two videos to at least two different platforms selected by the user respectively.

72. The method of any one of claims 43-71, wherein, After the raw video collected by the same image sensor is respectively processed based on the at least two video frame indication information and at least two videos corresponding to the at least two video frame indication information are output, the method further comprises: in a case where one of the at least two videos comprises the raw video, acquiring at least one video frame indication information again; processing the raw video data based on the at least one video frame indication information acquired again and outputting at least one video corresponding to the at least one video frame indication information.

73. The method of any one of claims 43-72, wherein, The processing of the raw video collected by the same image sensor based on the at least two video frame indication information comprises: cutting the raw video collected by the same image sensor based on the at least two video frame indication information.

74. The method of any one of claims 43-73, wherein, The acquisition of the at least two video frame indication information comprises: acquiring the at least two video frame indication information before controlling the image sensor to collect the raw video; or, acquiring the at least two video frame indication information after controlling the image sensor to collect the raw video.

75. The method of any one of claims 43-74, wherein, The image sensor comprises image sensors with the same aspect ratio or image sensors with different aspect ratios.

76. A video processing apparatus, comprising: The device comprises a memory and a processor, the memory is used to store a computer program, and the processor is used to execute the computer program and realize the following steps when executing the computer program: acquiring at least two video frame indication information before processing the raw video collected by the same image sensor based on the video frame indication information, the video frame indication information is used to indicate a frame of a video, and the at least two video frame indication information indicates different display contents of a frame of a video; The original video collected by the same image sensor is processed based on the at least two video frame indication information, and at least two videos corresponding to the at least two video frame indication information are output.

77. The device of claim 76, wherein, The at least two videos have different frame sizes, and the corresponding video frame display contents are not completely the same.

78. The device of claim 77, wherein, The video frame indication information is used to indicate a video frame ratio, a video frame size, and / or a video frame range.

79. The device of claim 78, wherein, The at least two video frame indication information is used to indicate different video frame ratios, or the at least two video frame indication information is used to indicate the same video frame ratio and different video frame display contents.

80. The device of claim 79, wherein, The at least two video frame indication information at least includes a first video aspect ratio greater than 1 and a second video aspect ratio less than 1.

81. The device of claim 79, wherein, The at least two video frame indication information is used to indicate a video aspect ratio greater than 1 or a video aspect ratio less than 1.

82. The device of any one of claims 79-81, wherein, One of the at least two video frame indication information is used to indicate a frame ratio same as an aspect ratio of the image sensor.

83. The device of claim 78, wherein, The at least two video frame indication information is used to indicate different video frame sizes, or the at least two video frame indication information is used to indicate the same video frame size and different video frame display contents.

84. The device of claim 83, wherein, One of the at least two video frame indication information is used to indicate a frame size same as a size of the image sensor.

85. The device of claim 78, wherein, The at least two video frame indication information is used to indicate different video frame ranges, or the at least two video frame indication information is used to indicate the same video frame range and different video frame display contents.

86. The device of claim 85, wherein, The at least two video frame indication information at least includes indication information for indicating a first field of view range and indication information for indicating a second field of view range, and the first field of view range is smaller than the second field of view range.

87. The device of claim 86, wherein, The first field of view range includes a target shooting object, and the second field of view range includes the target shooting object and a background around the target shooting object.

88. The device of claim 87, wherein, The target shooting object includes a static target shooting object or a dynamic target shooting object.

89. The device of claim 88, wherein, In response to the target shooting object being a dynamic target object, the video data corresponding to the first field of view range is obtained from different positions in different image frames in the original video.

90. The device of any of claims 76-89, wherein, The at least two video frame indication information is input by a user.

91. The device of claim 90, wherein, The at least two video frame indication information is input by the user through user information or through a control device.

92. The device of claim 91, wherein, The user information includes voice, gesture, posture, or movement parameters.

93. The device of claim 91, wherein, The input through the control device includes input through a display interface, input through a posture of a wearable device, or input through a control of a control device.

94. The device of claim 93, wherein, The display interface includes a display interface of a video processing apparatus or a display interface of a control device of the video processing apparatus.

95. The device of any one of claims 90-94, wherein, The video frame indication information input by the user is used to indicate a video frame ratio, a video frame size, and / or a video frame range.

96. The device of claim 95, wherein, The aspect ratio of the video is input by the user by inputting an aspect ratio value of the video, adjusting the size of the aspect crop frame, or inputting a platform required to share the video.

97. The device of claim 95, wherein, The aspect size of the video is input by the user by inputting an aspect size value of the video, adjusting the size of the aspect crop frame, or inputting a platform required to share the video.

98. The device of claim 95, wherein, The aspect range of the video is input by the user by inputting an aspect range value of the video, inputting a focal length, adjusting the range of the aspect crop frame, or selecting a target shooting object.

99. The device of any one of claims 96-98, wherein, The aspect crop frame is displayed in a preview screen.

100. The device of any of claims 90-99, wherein, The processor is further configured to perform: outputting a preview video, the preview video being generated based on the video aspect indication information input by the user.

101. The device of any one of Claims 76-89, wherein, The at least two video aspect indication information is automatically generated by the video processing device.

102. The device of claim 101, wherein, The at least two video aspect indication information is automatically generated by the video processing device based on a current shooting scene.

103. The device of any one of claims 76-102, wherein, The processor is further configured to perform, after outputting the at least two videos corresponding to the at least two video aspect indication information respectively: sharing the at least two videos to at least two different platforms respectively.

104. The device of claim 103, wherein, The processor is further configured to perform, after outputting the at least two videos corresponding to the at least two video aspect indication information respectively: automatically sharing the at least two videos to at least two different platforms respectively; or sharing the at least two videos to at least two different platforms respectively selected by the user.

105. The device of any of claims 76-104, wherein, The processor is further configured to perform, after outputting the at least two videos corresponding to the at least two video aspect indication information respectively: in a case where one of the at least two videos comprises the original video, re-acquiring at least one video aspect indication information; processing the original video data based on the re-acquired at least one video aspect indication information, and outputting at least one video corresponding to the at least one video aspect indication information.

106. The device of any of claims 76-105, wherein, The processor processes the original video collected by the same image sensor based on the at least two different video aspect ratio indication information, including: cutting the original video collected by the same image sensor based on the at least two video aspect indication information respectively.

107. The device of any of claims 76-106, wherein, The processor acquires at least two video aspect ratio indication information, including: acquiring the at least two video aspect ratio indication information before controlling the image sensor to collect the original video; or acquiring the at least two video aspect ratio indication information after controlling the image sensor to collect the original video.

108. The device of any of claims 76-107, wherein, The image sensor includes image sensors with the same aspect ratio or image sensors with different aspect ratios.

109. A video processing system characterized by The system includes a memory, a processor, and an image sensor, the memory is configured to store a computer program, the processor is configured to execute the computer program and implement the video processing method as claimed in any one of claims 43-75 when executing the computer program.

110. A computer readable storage medium, characterized in that, The computer readable storage medium stores a computer program, the computer program is executed by the processor to make the processor implement the video processing method as claimed in any one of claims 43-75.