An interactive video editing system and reading device based on three-layer structure
Through the three-layer structure interactive video editing system, the collaborative operation of the logic layer, thinking layer and execution layer, the problems of complex operations and web page crashes in traditional interactive video editing are solved, editing efficiency and video utilization are improved, and efficient closed-loop operation of nonlinear video processing is realized.
Patent Information
- Application Number
- CN202211022004.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-24
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2042-08-24
AI Technical Summary
During the interactive video editing process, traditional methods need to re-crush the video structure for color tuning, soundtracking, etc. The operation is complicated and can easily lead to web page crashes, and the workload is repeated, which makes the editing efficiency inefficient.
An interactive video editing system with a three-layer structure, including a logic layer, a thinking layer and an execution layer, coordinated operation through protocol interaction, the logic layer performs style positioning and port recognition, the thinking layer provides auxiliary architecture and material processing, and the execution layer performs final presentation and material fitting, forming a closed-loop processing.
In the early stage of video editing, auxiliary structures such as music rhythm, sound effect processing and color adjustment are built, which avoids repeated operations, improves editing efficiency and video utilization, reduces the risk of web page crashes, and achieves the establishment of a nonlinear story line.
Smart Images

Figure CN115988235B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to H04N21, and more particularly, to an interactive video editing system and a reading device based on a three-layer structure. Background Art
[0002] With the development of self-media, interactive video has gradually emerged as a form of expression. Interactive video refers to immersive videos that feature interactive features such as perspective switching, screen interaction, and plot selection, supporting interactions across time, space, and events. Currently, interactive video is still in its infancy, and its creation and editing present significant challenges.
[0003] Patent number CN113489917A provides an interactive video editing system and method. This system ensures the security of editing through a series of verifications, such as facial recognition, passwords, and fingerprints. Edited videos are then proofread through classification checks, simplifying the editing process for the editor while improving the user experience. Patent number CN114374873A provides an interactive video editing system that processes videos through a series of operations, including post-rendering, reducing the tedious workload for video editors.
[0004] Because interactive videos break the traditional linear structure, editing and production is relatively cumbersome. Not to mention the time and effort editors spend learning different editing methods for different platforms due to platform limitations, the post-production process of reorganizing the video structure and performing color grading, music composing, and other processing is extremely complex. The repetitive workload can sometimes cause webpage crashes. Summary of the Invention
[0005] In order to solve the above problems, the first aspect of the present invention provides an interactive video editing system based on a three-layer structure, which includes a logic layer, a thinking layer and an execution layer; each layer interacts through a protocol.
[0006] As a preferred technical solution of the present invention, the logic layer is used for client port access and style positioning.
[0007] As a preferred technical solution of the present invention, the logic layer includes a port window, a positioning window and a preliminary cutting window.
[0008] Preferably, the port window includes three ports: iOS, Android, and Windows. By identifying and accessing different ports for different users, not only is the probability of the logic layer being stuck due to identification when interacting with the thinking layer and the execution layer, which leads to the inefficiency of the interactive editing process, resulting in the need to repeatedly re-edit completed work, which is a huge workload, reduced, but it is also beneficial for the fission processing of batch videos when editing at the thinking layer, thereby improving the utilization rate of batch videos when forwarding them at the thinking layer.
[0009] Preferably, the positioning window is used to define the style of the video material, so that the thinking layer can process the video material in the early stage of editing.
[0010] As a preferred technical solution of the present invention, the primary cutting window includes a fission module.
[0011] Preferably, the fission module includes a fission algorithm.
[0012] The initial cut window is used to receive the auxiliary framework provided by the thinking layer, and then apply the design plan of the interactive video to the video material to obtain an A-level video.
[0013] As a preferred technical solution of the present invention, the thinking layer is used to provide an auxiliary framework for the initial cutting window of the logic layer, and after intelligently discovering materials, provide secondary suggestions after the initial cutting.
[0014] Preferably, the auxiliary architecture includes music rhythm, sound effect processing, color grading and dynamic rendering.
[0015] Traditional interactive video processing typically involves structural adjustments in the later stages. This requires reorganizing the video structure before color grading, composing music, and other processing steps. This is extremely complex, and the extensive repetition of work can sometimes cause webpage crashes. This invention, however, utilizes a three-layered collaborative structure to build auxiliary structures for music rhythm, sound effects processing, color grading, and dynamic rendering in the early stages of video editing, laying the foundation for a nonlinear storyline and avoiding these issues.
[0016] As a preferred technical solution of the present invention, the logic layer includes a memory unit, an intelligent expansion unit and an architecture unit.
[0017] Preferably, the memory unit is used to classify and store video materials, and is connected to the cloud database of the server to form a unique video database for each user.
[0018] Preferably, the intelligent expansion unit cooperates with the preliminary cutting window, the memory unit, and the execution layer to perform secondary optimization processing on the A-level video obtained from the preliminary cutting window through secondary matching of the video database material in the memory unit with the A-level video, and finally performs fine-tuning on the basis of the secondary optimization result through the comprehensive processing unit of the execution layer to obtain the final processed video.
[0019] As a preferred technical solution of the present invention, the execution layer is used to present the design solution of the interactive video and fit it with the logic layer.
[0020] As a preferred technical solution of the present invention, the execution layer includes a remote unit, a comprehensive processing unit and a fitting unit.
[0021] Preferably, the remote unit provides remote support for the thinking layer. When editing video materials, especially batch materials, some basic materials are not located on the user's local port, but on the remote work computer port. In order to call the basic materials, the system collects the basic materials from the non-local port through the remote unit, thereby improving the editing efficiency of interactive videos.
[0022] Preferably, the fitting unit is used to finally process the fitting and matching of the basic materials of the video and the logic layer, check whether there are any omissions of basic materials, and present the design plan of the interactive video after completion.
[0023] As a preferred technical solution of the present invention, the editing method of the interactive video editing system is as follows: while the thinking layer provides an auxiliary framework for the logic layer, the logic layer provides an underlying foundation for the secondary suggestions of the thinking layer; while the execution layer provides remote support for the thinking layer, the thinking layer forwards the design plan of the interactive video to the execution layer through the logic layer, and the execution layer and the logic layer are fitted to form a closed loop of a three-layer structure.
[0024] The second aspect of the present invention provides a reading device, comprising the interactive video editing system based on the three-layer structure.
[0025] Compared with the prior art, the present invention has the following beneficial effects:
[0026] Traditional interactive video processing is generally done through structural adjustments in the later stage, and structural adjustments require reorganizing the video structure before color adjustment, music composition, etc. The operation is extremely complicated, and the large amount of repetitive work can sometimes cause the web page to crash in serious cases. The present invention uses the coordination of a three-layer structure to build auxiliary structures for music rhythm, sound effect processing, color adjustment, and dynamic rendering in the early stage of video editing, laying the foundation for a non-linear storyline and avoiding the above problems. Based on the three-layer structure, the linkage between people and the structure in the early stage of editing is realized; when batch mixing videos, algorithm fission is performed to improve the efficiency of video editing and the utilization rate of the video; at the same time, the closed-loop operation of the three-layer structure is realized, forming dynamic processing and improving the vividness of the video. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a flow chart of the system structure of the present invention. DETAILED DESCRIPTION
[0028] Example 1
[0029] This example provides an interactive video editing system based on a three-layer structure, such as Figure 1 The interactive video editing system based on the three-layer structure includes a logic layer, a thinking layer and an execution layer; each layer interacts through a protocol.
[0030] The logic layer is used for client port access and style positioning.
[0031] The logic layer includes port window, positioning window and initial cutting window.
[0032] The port window includes three ports: iOS, Android, and Windows.
[0033] The initial cutting window includes the fission module.
[0034] The fission module includes a fission algorithm.
[0035] The initial cut window is used to receive the auxiliary framework provided by the thinking layer, and then apply the design plan of the interactive video to the video material to obtain an A-level video.
[0036] The thinking layer is used to provide an auxiliary framework for the initial cut window of the logic layer, and after intelligently discovering materials, provide secondary suggestions after the initial cut.
[0037] Auxiliary architecture includes music rhythm, sound effects processing, color grading and dynamic rendering.
[0038] The logic layer includes memory units, intelligent expansion units, and architecture units.
[0039] The memory unit is used to classify and store video materials, and at the same time connects to the server's cloud database to form a unique video database for each user.
[0040] The intelligent expansion unit works together with the preliminary cutting window, memory unit, and execution layer to perform secondary optimization processing on the A-level video obtained from the preliminary cutting window through secondary matching of the video database material in the memory unit with the A-level video. Based on the secondary optimization results, the comprehensive processing unit of the execution layer performs final fine-tuning to obtain the final processed video.
[0041] The execution layer is used to present the design plan of the interactive video and fit it with the logic layer.
[0042] The execution layer includes the remote unit, the integrated processing unit and the fitting unit.
[0043] Remote units provide remote support for the thinking layer.
[0044] The fitting unit is used to finally process the basic material fitting and matching of the video and the logic layer, check whether there are any missing basic materials, and present the design plan of the interactive video after completion.
[0045] The editing method of the interactive video editing system is as follows: while the thinking layer provides an auxiliary framework for the logic layer, the logic layer provides the underlying foundation for the secondary suggestions of the thinking layer; while the execution layer provides remote support for the thinking layer, the thinking layer forwards the design plan of the interactive video to the execution layer through the logic layer. The execution layer and the logic layer are fitted to form a closed loop of the three-layer structure.
Claims
1. An interactive video editing system based on a three-layer structure, characterized in that: The interactive video editing system based on the three-layer structure includes a logic layer, a thinking layer and an execution layer; each layer interacts with each other through a protocol; The logic layer is used for client port access and style positioning; The logic layer includes a port window, a positioning window and a preliminary cutting window; The preliminary editing window includes a fission module, which includes a fission algorithm. The preliminary editing window is used to apply the interactive video design scheme to the video material after receiving the auxiliary framework provided by the thinking layer to obtain an A-level video. The positioning window is used to define the style of the video material, so that the thinking layer can process the video material in the early stage of editing. The thinking layer is used to provide an auxiliary framework for the initial cut window of the logic layer, and after intelligently discovering materials, provide secondary suggestions after the initial cut; The thinking layer includes a memory unit, an intelligent expansion unit, and an architecture unit; The memory unit is used to classify and store video materials, and at the same time connect to the cloud database of the server to form a unique video database for each user; The intelligent expansion unit works in conjunction with the preliminary cut window, memory unit, and execution layer to perform secondary optimization on the A-level video obtained from the preliminary cut window by secondary matching between the video database material in the memory unit and the A-level video. Based on the secondary optimization results, the comprehensive processing unit of the execution layer performs final fine-tuning to obtain the final processed video. The execution layer is used to present the design plan of the interactive video and fit it with the logic layer.
2. The interactive video editing system based on the three-layer structure according to claim 1 is characterized in that: The execution layer includes a remote unit, a comprehensive processing unit and a fitting unit.
3. The interactive video editing system based on a three-layer structure according to any one of claims 1-2, characterized in that: The editing method of the interactive video editing system is as follows: while the thinking layer provides an auxiliary framework for the logic layer, the logic layer provides an underlying foundation for the secondary suggestions of the thinking layer; while the execution layer provides remote support for the thinking layer, the thinking layer forwards the design plan of the interactive video to the execution layer through the logic layer, and the execution layer and the logic layer are fitted to form a closed loop of a three-layer structure.
4. A reading device, characterized in that The invention comprises the interactive video editing system based on the three-layer structure as claimed in claim 1.
Citation Information
Patent Citations
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