Video post-production system and production method
By using the non-linear editing method of the video post-production system, video materials are organized, classified, and processed. It integrates multiple tools and provides cloud services, solving the problem of low efficiency in traditional linear editing and achieving efficient and rapid video production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-05
- Publication Date
- 2026-04-21
AI Technical Summary
Traditional video post-production uses a linear editing method, which leads to low production efficiency and makes it difficult to achieve efficient and fast editing.
This invention provides a video post-production system, including an input module, a sorting and classification module, a processing module, and an output module. It combines an integration unit and a cloud service unit to sort, classify, process, and output video materials using a non-linear editing method. It integrates multiple post-production tools and provides cloud service support.
It improved the efficiency and quality of video production, enabled refined management, and facilitated efficient and rapid editing.
Smart Images

Figure CN121907970A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of video post-production technology, and in particular to a video post-production system and method. Background Technology
[0002] After a video is filmed, it usually requires post-production processing. Post-production processing includes many aspects, the most basic of which include editing footage, adding effects, background music, and subtitles.
[0003] Traditional video post-production involves selecting, splicing, and transitioning the filmed video footage to create a complete video. As needed, subtitles, sound effects, color adjustments, and other special effects are added to the video. Dubbing and background music are also added, and the finished video is output in a specific format for easy playback and storage.
[0004] However, traditional video post-production typically uses a linear editing approach, which involves editing in chronological order. This results in low production efficiency and makes it difficult to achieve efficient and rapid editing. Summary of the Invention
[0005] The purpose of this invention is to provide a video post-production system and method, which solves the problem that traditional video post-production usually adopts a linear editing method, that is, editing according to time sequence, which leads to low production efficiency and makes it difficult to achieve efficient and fast editing.
[0006] To achieve the above objectives, the present invention provides a video post-production system, including an input module, a sorting and classification module, and a processing module, wherein the input module is connected to the sorting and classification module, and the processing module is connected to the sorting and classification module.
[0007] The input module is used to import and store the captured video footage;
[0008] The sorting and categorizing module is used to sort and categorize the imported video materials;
[0009] The processing module is used to process the categorized video materials separately and to synthesize the processed videos.
[0010] The video post-production system also includes an output module, which is connected to the processing module.
[0011] The output module is used to output the synthesized video in different formats, resolutions, bitrates, and compressions to generate the finished video.
[0012] The processing module includes an integration unit and a cloud service unit. The integration unit is connected to the sorting and classification module, and the cloud service unit is connected to the integration unit.
[0013] The integration unit is used for integrating post-production tools;
[0014] The cloud service unit is used to provide cloud service support, including cloud storage and cloud rendering.
[0015] The integrated unit includes a video editing subunit and an audio editing subunit, wherein the video editing subunit is connected to the sorting and classification module; and the audio editing subunit is connected to the sorting and classification module.
[0016] The video editing subunit is used to cut, splice, and reassemble video footage;
[0017] The audio editing subunit is used to edit the audio in the video footage.
[0018] The integrated unit further includes a transition subunit and a special effects subunit. The transition subunit is connected to the sorting and classification module, and the special effects subunit is connected to the sorting and classification module.
[0019] The transition subunit is used to add various transition effects between video clips;
[0020] The special effects subunit is used to add various special effects to video footage.
[0021] The integration unit further includes a subtitle subunit and an animation subunit. The subtitle subunit is connected to the sorting and classification module, and the animation subunit is connected to the sorting and classification module.
[0022] The subtitle subunit is used to add subtitles to video footage;
[0023] The animation subunit is used to add various animation effects to video footage.
[0024] A video post-production method includes the following steps:
[0025] Import and save the captured video footage through the input module;
[0026] The sorting and categorizing module sorts and categorizes the imported video materials;
[0027] The processing module processes the categorized video materials separately and then combines the processed videos.
[0028] The output module outputs the synthesized video in different formats, resolutions, bitrates, and compressions to generate the final video.
[0029] This invention discloses a video post-production system and method. The system imports and stores captured video footage through an input module. A sorting and categorizing module organizes and categorizes the imported video footage according to different methods such as theme, scene, and time, facilitating subsequent editing and retrieval. A processing module performs editing, special effects, subtitle, audio, transitions, and animation on the categorized video footage, and then synthesizes and outputs the processed individual videos. By classifying the overall video footage, processing each video individually, and finally synthesizing and outputting the final product, the system improves production efficiency and quality, achieves refined management, and enables highly efficient and rapid editing. Attached Figure Description
[0030] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0031] Figure 1 This is a structural block diagram of the video post-production system according to the first embodiment of the present invention.
[0032] Figure 2 This is a structural block diagram of the integrated unit in the first embodiment of the present invention.
[0033] Figure 3 This is a flowchart illustrating the video post-production method according to the second embodiment of the present invention.
[0034] In the diagram: 101-Input Module, 102-Organization and Classification Module, 103-Processing Module, 104-Output Module, 105-Integration Unit, 106-Cloud Service Unit, 107-Community Support Unit, 108-Video Editing Subunit, 109-Audio Editing Subunit, 110-Transition Subunit, 111-Special Effects Subunit, 112-Subtitle Subunit, 113-Animation Subunit. Detailed Implementation
[0035] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0036] The first embodiment of this application is as follows:
[0037] Please see Figure 1 and Figure 2 ,in, Figure 1 This is a structural block diagram of the video post-production system according to the first embodiment of the present invention. Figure 2This is a structural block diagram of the integration unit 105 in the first embodiment of the present invention. The present invention provides a video post-production system: including an input module 101, a sorting and classification module 102, a processing module 103, and an output module 104. The processing module 103 includes an integration unit 105, a cloud service unit 106, and a community support unit 107. The integration unit 105 includes a video editing subunit 108, an audio editing subunit 109, a transition subunit 110, a special effects subunit 111, a subtitle subunit 112, and an animation subunit 113.
[0038] In this specific embodiment, the input module 101 is connected to the sorting and classification module 102, and the processing module 103 is connected to the sorting and classification module 102.
[0039] The input module 101 is used to import and store the captured video footage;
[0040] The sorting and classification module 102 is used to sort and classify the imported video materials;
[0041] The processing module 103 is used to process the classified video materials separately and to synthesize the processed videos.
[0042] The captured video footage is input and stored through the input module 101. It can be a digital signal or an analog signal. It is converted into a digital format and stored in the computer through a capture card or software. The sorting and classification module 102 sorts and classifies the imported video footage according to different methods such as theme, scene, and time to facilitate subsequent editing and searching. The processing module 103 processes each of the classified video footage separately and finally synthesizes the processed video footage.
[0043] The output module 104 is connected to the processing module 103;
[0044] The output module 104 is used to output the synthesized video in different formats, resolutions, bitrates and compressions to generate the finished video.
[0045] The output module 104 can select different output formats and resolutions, set bitrate and compression parameters, etc. to output the synthesized video, and finally generate the finished video. The finished video can be exported to an external storage device, such as a hard drive or USB flash drive, or directly shared to a social media platform for viewers to watch and share.
[0046] Secondly, the integration unit 105 is connected to the sorting and classification module 102, and the cloud service unit 106 is connected to the integration unit 105;
[0047] The integration unit 105 is used for integrating post-production tools;
[0048] The cloud service unit 106 is used to provide cloud service support, including cloud storage and cloud rendering.
[0049] The integration unit 105 integrates with other post-production tools, such as audio editors and graphic design software, to improve production efficiency and quality. The cloud service unit 106 can provide cloud service support, such as cloud storage and cloud rendering, to help users complete post-production work more efficiently.
[0050] Meanwhile, the community support unit 107 is connected to the integration unit 105;
[0051] The community support unit 107 is used to provide community support.
[0052] The community support unit 107 can provide community support so that users can get help and advice during the production process.
[0053] In addition, the video editing subunit 108 is connected to the sorting and classification module 102; the audio editing subunit 109 is connected to the sorting and classification module 102.
[0054] The video editing subunit 108 is used to cut, splice, and reassemble video materials;
[0055] The audio editing subunit 109 is used to edit the audio in the video material.
[0056] The transition subunit 110 is connected to the sorting and classification module 102, and the special effects subunit 111 is connected to the sorting and classification module 102;
[0057] The transition subunit 110 is used to add various transition effects between video clips;
[0058] The special effects subunit 111 is used to add various special effects to video footage.
[0059] The subtitle subunit 112 is connected to the sorting and classification module 102, and the animation subunit 113 is connected to the sorting and classification module 102.
[0060] The subtitle subunit 112 is used to add subtitles to video footage;
[0061] The animation subunit 113 is used to add various animation effects to video materials.
[0062] The video editing subunit 108 cuts, splices, and reassembles video clips to achieve creative purposes. The audio subunit edits the audio in the video, such as adjusting volume, reducing noise, and adding sound effects. The transition subunit 110 adds various transition effects between video clips to make the transitions between different shots more natural and smooth. The special effects subunit 111 adds various special effects to the video, such as color correction, brightness adjustment, shadows, and highlights, to enhance the video's expressiveness and visual effects. The subtitle subunit 112 adds subtitles to the video, including titles, dialogues, and narration, to improve the video's readability and the audience's viewing experience. The animation subunit 113 adds various animation effects to the video, such as motion tracking and path animation, to increase the video's dynamism and interest. The video materials are processed separately, and finally, the processed individual videos are synthesized.
[0063] Using a video post-production system according to this embodiment, the input module 101 imports and stores the captured video footage. The sorting and categorizing module 102 sorts and categorizes the imported video footage by different methods such as theme, scene, and time to facilitate subsequent editing and searching. The processing module 103 performs video editing, audio editing, transitions, special effects, subtitles, and animation processing on the categorized short video footage. The processed short videos are then combined into a complete video, which is finally exported through the output module 104. The output module 104 can set the video format, resolution, bitrate, and compression to generate the finished video. This non-linear video production method improves production efficiency and quality, enables refined management, and achieves efficient and rapid editing.
[0064] The second embodiment of this application is as follows:
[0065] Based on the first embodiment, please refer to Figure 3 ,in, Figure 3 This is a flowchart illustrating the steps of a video post-production method according to a second embodiment of the present invention. This embodiment of a video post-production method includes the following steps:
[0066] S201: Import and store the captured video footage through input module 101;
[0067] S202: The sorting and classification module 102 sorts and classifies the imported video materials;
[0068] S203: Processing module 103 processes the classified video materials separately and then synthesizes the processed videos;
[0069] S204: Output module 104 outputs the synthesized video in different formats, resolutions, bitrates, and compressions to generate the finished video.
[0070] Specifically, the input module 101 imports and stores the captured video footage, which can be digital or analog signals. It converts the footage into digital format using a capture card or software and stores it in the computer. The sorting and categorizing module 102 organizes and categorizes the imported video footage by theme, scene, time, and other methods to facilitate subsequent editing and searching. The processing module 103 performs video editing, audio editing, transitions, special effects, subtitles, and animation processing on the categorized short video footage. The processed short videos are then combined into a complete video, which is finally exported through the output module 104. The output module 104 allows setting the video format, resolution, bitrate, and compression to generate the finished video. This non-linear video production method improves production efficiency and quality, enables refined management, and achieves efficient and rapid editing.
[0071] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that implementing all or part of the above embodiments and making equivalent changes in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A video post-production system, characterized in that, It includes an input module, a sorting and classification module, and a processing module. The input module is connected to the sorting and classification module, and the processing module is connected to the sorting and classification module. The input module is used to import and store the captured video footage; The sorting and categorizing module is used to sort and categorize the imported video materials; The processing module is used to process the categorized video materials separately and to synthesize the processed videos.
2. The video post-production system as described in claim 1, characterized in that, The video post-production system also includes an output module, which is connected to the processing module. The output module is used to output the synthesized video in different formats, resolutions, bitrates, and compressions to generate the finished video.
3. The video post-production system as described in claim 1, characterized in that, The processing module includes an integration unit and a cloud service unit. The integration unit is connected to the sorting and classification module, and the cloud service unit is connected to the integration unit. The integration unit is used for integrating post-production tools; The cloud service unit is used to provide cloud service support, including cloud storage and cloud rendering.
4. The video post-production system as described in claim 3, characterized in that, The integrated unit includes a video editing subunit and an audio editing subunit, wherein the video editing subunit is connected to the sorting and classification module; and the audio editing subunit is connected to the sorting and classification module. The video editing subunit is used to cut, splice, and reassemble video footage; The audio editing subunit is used to edit the audio in the video footage.
5. The video post-production system as described in claim 4, characterized in that, The integrated unit further includes a transition subunit and a special effects subunit. The transition subunit is connected to the sorting and classification module, and the special effects subunit is connected to the sorting and classification module. The transition subunit is used to add various transition effects between video clips; The special effects subunit is used to add various special effects to video footage.
6. The video post-production system as described in claim 5, characterized in that, The integration unit further includes a subtitle subunit and an animation subunit, wherein the subtitle subunit is connected to the sorting and classification module, and the animation subunit is connected to the sorting and classification module; The subtitle subunit is used to add subtitles to video footage; The animation subunit is used to add various animation effects to video footage.
7. A video post-production method, applicable to the video post-production system as described in claim 1, characterized in that, Includes the following steps: Import and save the captured video footage through the input module; The sorting and categorizing module sorts and categorizes the imported video materials; The processing module processes the categorized video materials separately and then combines the processed videos. The output module outputs the synthesized video in different formats, resolutions, bitrates, and compressions to generate the final video.