A control method, device, system and storage medium for multiple display scenes
By receiving scene switching instructions and automatically switching to the target scene and returning to the core content, the problems of high complexity in switching multiple display scenes and high risk of human error are solved, and seamless connection and efficient switching are achieved.
Patent Information
- Application Number
- CN202411585075.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2044-11-07
AI Technical Summary
Switching between multiple display scenes is complex, inefficient, and carries a high risk of human error, which existing technologies have failed to effectively address.
During the presentation process, the scene switching instruction is received, and the current scene is automatically switched to the target scene whose relevance to the presentation process theme does not meet the preset conditions. After the target scene content is completed, it automatically switches to the main scene bound to the core content without external intervention.
It achieves seamless connection between multiple display scenes, simplifies the operation process, improves switching efficiency, reduces manual intervention, and ensures the continuity and focus of the display content.
Smart Images

Figure CN119473009B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of computer technology, and in particular to a method, device, system, and storage medium for controlling multiple display scenes. Background Art
[0002] Complex presentation environments often require multiple scene switching. For example, in video production tutorials, live video broadcasts, and online conferences, these presentations may include a variety of content presentations, including teaching explanations, product demonstrations, and audience interactions, each of which often corresponds to a specific scene. Traditionally, operators such as hosts, anchors, and staff members need to memorize the location and switching order of each scene. This is especially true after inserting temporary or auxiliary content (such as product demonstrations and audience interactions) for presentations. They then need to manually and accurately switch to the core presentation content (such as teaching explanations). This reliance on manual memory increases the likelihood of error and places a greater psychological burden on operators. Mistakes by operators disrupt not only the continuity of the presentation but also the audience's immersion and engagement, thereby impacting the presentation's effectiveness. Furthermore, each scene transition requires manual intervention, which is not only time-consuming but, in complex presentation environments, can lead to poor content cohesion and impact the audience's experience.
[0003] Currently, no effective solution has been proposed to the technical problems of high complexity, low efficiency and high risk of human error in switching multiple display scenes in the above-mentioned prior art. Summary of the Invention
[0004] The embodiments of the present disclosure provide a method, device, system, and storage medium for controlling multiple presentation scenes, so as to at least solve the technical problems in the prior art of high complexity, low efficiency, and high risk of human error in switching multiple presentation scenes.
[0005] According to one aspect of an embodiment of the present disclosure, a method for controlling multiple display scenes is provided, comprising: receiving a first switching instruction of a scene during a display process; wherein the first switching instruction is used to instruct to switch the displayed scene from a current scene to a target scene, the relevance of the target scene to the theme of the display process does not meet a preset condition, and different scenes are bound to different display contents; and according to the first switching instruction, switching the displayed scene to the target scene, and after the content bound to the target scene is completed, switching the displayed scene to the main scene of the display process; wherein the relevance of the main scene to the theme of the display process meets a preset condition.
[0006] According to another aspect of the embodiments of the present disclosure, a storage medium is further provided. The storage medium includes a stored program, wherein the above method is executed by a processor when the program is running.
[0007] According to another aspect of an embodiment of the present disclosure, a control device for multiple display scenes is also provided, including: a receiving module for receiving a first switching instruction of a scene during a display process; wherein the first switching instruction is used to instruct to switch the displayed scene from the current scene to a target scene, the relevance of the target scene to the theme of the display process does not meet the preset conditions, and different scenes are bound to different display contents; and a switching module for switching the displayed scene to the target scene according to the first switching instruction, and after the content bound to the target scene is completed, switching the displayed scene to the main scene of the display process; wherein the relevance of the main scene to the theme of the display process meets the preset conditions.
[0008] According to another aspect of an embodiment of the present disclosure, a control system for multiple display scenes is also provided, including a processor; and a memory connected to the processor, for providing the processor with instructions for processing the following processing steps: receiving a first scene switching instruction during a display process; wherein the first switching instruction is used to indicate that the displayed scene is switched from the current scene to the target scene, the relevance of the target scene to the theme of the display process does not meet the preset conditions, and different scenes are bound to different display contents; and according to the first switching instruction, the displayed scene is switched to the target scene, and after the content bound to the target scene is completed, the displayed scene is switched to the main scene of the display process; wherein the relevance of the main scene to the theme of the display process meets the preset conditions.
[0009] The present application receives a scene switching instruction during the display process, and the switching instruction indicates that the displayed scene needs to be switched from the current scene to a target scene whose relevance to the theme of the display process does not meet the preset conditions. According to the received switching instruction, the display screen is switched from the current scene to the target scene, and after the content bound to the target scene is displayed, the displayed scene can be autonomously switched to the main scene bound to the core content without external intervention, and the relevance of the main scene to the theme of the display process meets the preset conditions. In this way, it is ensured that even after a complex scene change, it can automatically and accurately return to the core display content to maintain the continuity of the display content and the focus. Thus, it not only ensures the seamless connection between multiple display scenes, but also simplifies the operation process, improves the switching efficiency and effectively reduces manual intervention. This solves the technical problems of high switching complexity, low efficiency and high risk of human error in multiple display scenes in the prior art. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The drawings described herein are used to provide a further understanding of the present disclosure and constitute a part of this application. The illustrative embodiments of the present disclosure and their descriptions are used to explain the present disclosure and do not constitute an improper limitation of the present disclosure. In the drawings:
[0011] Figure 1 is a hardware structure block diagram of a computing device for implementing the method according to embodiment 1 of the present application;
[0012] Figure 2 is a schematic diagram of a control platform for multiple display scenarios according to Example 1 of the present application;
[0013] Figure 3 1 is a flow chart of a method for controlling multiple display scenes according to Example 1 of the present application;
[0014] Figure 4 This is a schematic diagram of a multi-display scenario according to Example 1 of the present application;
[0015] Figure 5 is another schematic diagram of the multi-display scenario according to Example 1 of the present application;
[0016] Figure 6 is a schematic diagram of a control device for multiple display scenes according to Example 2 of the present application; and
[0017] Figure 7 This is a schematic diagram of a control system for multiple display scenarios according to Example 3 of the present application. DETAILED DESCRIPTION
[0018] In order to enable those skilled in the art to better understand the technical solutions of the present disclosure, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below in conjunction with the drawings in the embodiments of the present disclosure. Obviously, the described embodiments are only part of the embodiments of the present disclosure, not all of the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present disclosure.
[0019] It should be noted that the terms "first", "second", etc. in the specification and claims of the present disclosure and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present disclosure described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0020] Example 1
[0021] According to this embodiment, a method embodiment of a method for controlling multiple display scenes is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.
[0022] The method embodiment provided in this embodiment can be executed in a mobile terminal, a computer terminal, a server or a similar computing device. Figure 1 FIG1 shows a hardware structure block diagram of a computing device for implementing a control method for multiple display scenes. Figure 1 As shown, the computing device may include one or more processors (the processor may include but is not limited to a microprocessor MCU or a programmable logic device FPGA, etc.), a memory for storing data, a transmission device for communication functions, and an input / output interface. The memory, transmission device, and input / output interface are connected to the processor via a bus. In addition, it may also include: a display, a keyboard, and a cursor control device connected to the input / output interface. It will be understood by those skilled in the art that Figure 1 The structure shown is only for illustration and does not limit the structure of the above electronic device. Figure 1 More or fewer components than shown, or with Figure 1 Different configurations shown.
[0023] It should be noted that the one or more processors and / or other data processing circuits described above may generally be referred to herein as "data processing circuitry." The data processing circuitry may be embodied in whole or in part as software, hardware, firmware, or any other combination thereof. Furthermore, the data processing circuitry may be a single, independent processing module, or may be incorporated in whole or in part into any of the other components of the computing device. As described in the embodiments of the present disclosure, the data processing circuitry serves as a processor control (e.g., selection of a variable resistor terminal path connected to an interface).
[0024] The memory can be used to store software programs and modules of application software, such as the program instructions / data storage device corresponding to the control method for multiple display scenarios in the embodiment of the present disclosure. The processor executes various functional applications and data processing by running the software programs and modules stored in the memory, that is, implementing the control method for multiple display scenarios of the above-mentioned application. The memory may include high-speed random access memory and may also include non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid-state memory. In some instances, the memory may further include a memory remotely located relative to the processor, and these remote memories may be connected to the computing device via a network. Examples of the above-mentioned network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
[0025] The transmission device is used to receive or send data via a network. Specific examples of the aforementioned network may include a wireless network provided by a communications provider of the computing device. In one embodiment, the transmission device includes a network interface controller (NIC), which can be connected to other network devices via a base station to enable communication with the Internet. In another embodiment, the transmission device may be a radio frequency (RF) module, which is used to communicate with the Internet wirelessly.
[0026] The display may be, for example, a touch screen liquid crystal display (LCD) that enables a user to interact with a user interface of the computing device.
[0027] It should be noted that, in some optional embodiments, the above Figure 1 The computing device shown may include hardware elements (including circuits), software elements (including computer code stored on a computer-readable medium), or a combination of both hardware and software elements. Figure 1 This is merely one example of a particular embodiment and is intended to illustrate the types of components that may be present in the computing devices described above.
[0028] Figure 2 Schematic diagram of the control platform for multiple display scenarios according to this embodiment. Figure 2As shown, the control platform includes: a terminal device 210 of a user 110 with a display demand, terminal devices 220 and 230 of display objects (for example, including users 120 and 130), and a server 300. Among them, when user 110 has a need to display or share content related to a certain topic with other users (such as users 120 and 130), a scene related to the topic can be created through the terminal device 210, the scene and the content are bound and stored on the terminal device 210, and then the content is sent to the terminal devices of users 120 and 130 (i.e., terminal devices 220 and 230) through the server 300 to display the content. In addition, when different types of content need to be displayed, user 110 can create different scenes in advance and bind different content to different scenes. Thus, user 110 can switch scenes according to actual needs during the display process to transition from current content to another content.
[0029] Under the above operating environment, according to the first aspect of this embodiment, a method for controlling multiple display scenes is provided. Figure 2 The terminal device 210 shown is implemented. Figure 3 A schematic diagram showing the process of the method is shown in FIG. Figure 3 As shown, the method includes:
[0030] S102: receiving a first scene switching instruction during the presentation process; wherein the first switching instruction is used to instruct to switch the presentation scene from the current scene to a target scene, the relevance of the target scene to the theme of the presentation process not meeting a preset condition, and different scenes are bound to different presentation contents;
[0031] S104: According to the first switching instruction, the displayed scene is switched to the target scene, and after the content bound to the target scene is displayed, the displayed scene is switched to the main scene of the display process; wherein the relevance between the main scene and the theme of the display process meets the preset conditions.
[0032] Specifically, in complex presentation environments such as video production tutorials, live video broadcasts, and online conferences, there are often multiple different types of content to be presented, including teaching explanations, product demonstrations, and audience interactions, and each type of content often corresponds to a specific scenario. In this embodiment, the content to be presented includes, for example, content 1 to n. The user can create n scenarios and, when creating a scenario, bind different presentation content to different scenarios. For example, scene 1 is bound to content 1, scene 2 is bound to content 2, and so on, scene n is bound to content n. Typically, each presentation has its own theme, and the degree of affinity between scenarios bound to different content and the theme will inevitably vary. For example, if a user wishes to stay in a certain scene for a long time during the presentation, the affinity between that scene and the theme will be higher, while the affinity between scenarios bound to temporary or auxiliary content and the theme will be lower. Therefore, the user can distinguish the n created scenarios based on actual needs (such as, but not limited to, business needs) and determine the relevance of each scenario to the presented theme.
[0033] During the presentation, when the user (e.g. Figure 2 When the user 110 in the process needs to switch the displayed scene from the current scene to the target scene whose relevance to the theme of the display process does not meet the preset conditions, the corresponding switching instruction (corresponding to the first switching instruction) can be sent to the terminal device 210 by means of, for example but not limited to, a keyboard, a director APP, a voice instruction, etc., and the terminal device 210 receives the first switching instruction of the scene (corresponding to step S102). Among them, the user 110 can customize the preset conditions or use the default conditions configured by the platform. The preset conditions are, for example but not limited to, that the relevance of a certain scene to the theme of the display process is greater than or equal to a preset threshold. Alternatively, when a certain scene belongs to the first category of scenes, the relevance of the scene to the theme of the display process meets the preset conditions, and when a certain scene belongs to the second category of scenes, the relevance of the scene to the theme of the display process does not meet the preset conditions.
[0034] In scenes 1 to n created by user 110, assuming that the relevance of scenes 1, 2, and 3 to the theme of the display process meets the preset conditions, and the relevance of scenes 4 to n to the theme of the display process does not meet the preset conditions, then the current scene displayed can be any one of scenes 1 to n, the target scene can be any one of scenes 4 to n, and the current scene and the target scene are different scenes.
[0035] Then, considering that the content bound to the target scene whose relevance to the theme of the display process does not meet the preset conditions is usually temporary or auxiliary content, when the content bound to the target scene is displayed, the user hopes to switch the scene back to the core content to maintain the continuity and focus of the displayed content. Based on this, the terminal device 210 switches the displayed scene to the target scene (for example, scene 4) according to the first switching instruction, and then sends the content corresponding to the target scene to the server 300, and the server 300 sends the content to the terminal devices 220 and 230 of the users 120 and 130. After the content bound to the target scene is displayed, the terminal device 210 automatically switches the displayed scene to the main scene, that is, switches to the scene whose relevance to the theme of the display process meets the preset conditions (corresponding to step S104).
[0036] It should be noted that in this embodiment, the theme of the presentation process refers to the theme of the entire presentation scenario, rather than the theme of a single user-created scenario. For example, in a video production tutorial scenario, the theme of the presentation process refers to the theme of the video production tutorial. In a live video broadcast scenario, the theme of the presentation process refers to the theme of the live video broadcast. In an online conference scenario, the theme of the presentation process refers to the theme of the online conference.
[0037] As described in the above background technology, in complex display environments, there is usually a need to switch between multiple scenes. For example, in display environments such as video production teaching, video live broadcast, and online conferences, there may be a variety of content displays of different natures, such as teaching explanations, product demonstrations, and audience interactions. Each content often corresponds to a specific scene. In the traditional mode, operators such as hosts, anchors, or staff need to remember the position and switching order of each scene. In particular, after inserting temporary or auxiliary content (such as product demonstrations, audience interactions, etc.) for display, they need to manually and accurately switch to the core display content (such as teaching explanations). This reliance on manual memory increases the possibility of errors and also increases the psychological burden on operators. If the operator makes a mistake, it not only interrupts the continuity of the display, but also affects the audience's immersion and participation, thereby affecting the display effect. In addition, each scene conversion requires manual intervention, which is not only time-consuming, but also may cause poor content connection in a complex display environment, affecting the audience experience.
[0038] In order to solve this technical problem, an embodiment of the present application receives a scene switching instruction during the display process, and the switching instruction indicates that the displayed scene needs to be switched from the current scene to a target scene whose relevance to the theme of the display process does not meet the preset conditions. According to the received switching instruction, the display screen is switched from the current scene to the target scene, and after the content bound to the target scene is displayed, the displayed scene can be autonomously switched to the main scene bound to the core content without external intervention, and the relevance of the main scene to the theme of the display process meets the preset conditions. In this way, it is ensured that even after a complex scene change, it can automatically and accurately return to the core display content to maintain the continuity of the display content and the focus. Thus, not only is seamless connection between multiple display scenes guaranteed, but also the operation process is simplified, the switching efficiency is improved, and manual intervention is effectively reduced. This solves the technical problems of high switching complexity, low efficiency and high risk of human error in multiple display scenes in the prior art.
[0039] Optionally, a scene whose relevance to the theme of the display process meets the preset conditions is a first-category scene, and a scene whose relevance to the theme of the display process does not meet the preset conditions is a second-category scene. In addition, when the user sets a main scene, the main scene of the display process is the main scene set by the user. In addition, when the user does not set a main scene and there is only one first-category scene, the main scene of the display process is the first-category scene. In addition, when the user does not set a main scene and there is multiple first-category scenes, one scene is determined from multiple first-category scenes as the main scene of the display process.
[0040] Specifically, in this embodiment, scenes whose relevance to the presentation theme meets preset conditions can be predefined as the first category of scenes, while scenes whose relevance to the presentation theme does not meet preset conditions can be predefined as the second category of scenes. In other words, user-created scenes are subdivided into two categories based on their relevance to the presentation theme: the first category of scenes is bound to core content that is highly relevant to the presentation theme, while the second category of scenes is bound to auxiliary or supplementary content that is less relevant to the theme. Both categories of scenes may contain video material, thus laying the theoretical foundation for subsequent automated scene switching.
[0041] When creating a scene or displaying a scene, users can set their desired main scene based on their needs. Therefore, if the user has set a main scene, the main scene during the display process will be the user-set main scene. This method can effectively improve the user experience and enhance the flexibility of the platform.
[0042] If the user has not set a main scene and there is only one first-category scene, the main scene of the presentation process is the first-category scene. If the user has not set a main scene and there are multiple first-category scenes, one scene is determined from the multiple first-category scenes as the main scene of the presentation process.
[0043] Specifically, taking live video as an example, the theme of the live video presentation process is course teaching through live video. The content to be presented includes, but is not limited to, teaching explanation screens, product demonstration screens, audience interaction screens, guest speech screens and advertising materials. The terminal device 210 is, for example, the computer terminal of user 110 or a live broadcast all-in-one machine.
[0044] like Figure 4 As shown, user 110 can create scenes 1 to 5 on terminal device 210, where the teaching and explanation screen is bound to scene 1, the product demonstration screen is bound to scene 2, the audience interaction screen is bound to scene 3, the guest speech screen is bound to scene 4, and the advertising material is bound to scene 5. For example, the user-defined preset condition is that the relevance of a scene to the theme of the presentation process is greater than or equal to a preset threshold. Assuming that the relevance of scenes 1 to 5 to the presented theme is 0.6, 0.2, 0.1, 0.05, and 0.05, respectively, and the user-defined relevance threshold (corresponding to the preset threshold) is 0.4, scenes 1 to 5 are divided into two categories based on their relevance to the presented theme. The first category includes only scene 1 with a relevance greater than or equal to the preset threshold (corresponding to meeting the preset condition), and the second category includes scenes 2 to 5 with a relevance less than the preset threshold (corresponding to not meeting the preset condition). In this case, the main scene of the presentation process is scene 1. Terminal device 210 does not need to perform any judgment operations, which improves efficiency and effectively saves computing resources.
[0045] like Figure 5As shown, user 110 can also create scenes 1 to 6 on terminal device 210, where the teaching explanation screen is bound to scene 1, the product demonstration screen is bound to scene 2, the audience interaction screen is bound to scene 3, the guest speech screen is bound to scene 4, advertising material 1 is bound to scene 5, and advertising material 2 is bound to scene 6. The user-defined preset condition is, for example, that the relevance of a certain scene to the theme of the display process is greater than or equal to a preset threshold. Assuming that the relevance of scenes 1 to 6 to the displayed theme is 0.3, 0.3, 0.3, 0.05, 0.03, and 0.02 respectively, and the user-defined relevance threshold (corresponding to the preset threshold) is 0.3, then scenes 1 to 6 are divided into two categories according to their relevance to the displayed theme. The first category includes scenes 1, 2, and 3 whose relevance is greater than or equal to the preset threshold (corresponding to meeting the preset condition), and the second category includes scenes 4, 5, and 6 whose relevance is less than the preset threshold (corresponding to not meeting the preset condition). At this time, the terminal device 210 needs to determine a scene from scene 1, scene 3 as the main scene of the presentation process.
[0046] In this way, the currently dominant main scene can be accurately determined, providing support for automatically returning to the core display content later.
[0047] Optionally, determining a scene from multiple first-category scenes as the main scene of the presentation process includes: judging whether the relevance of the current scene to the theme of the presentation process meets preset conditions; when the relevance of the current scene to the theme of the presentation process meets the preset conditions, determining the current scene as the main scene of the presentation process; when the relevance of the current scene to the theme of the presentation process does not meet the preset conditions, determining a scene from multiple first-category scenes as the main scene of the presentation process.
[0048] Specifically, continue to use the example of live video teaching above, such as Figure 5 As shown, the first type of scene includes scene 1, scene 2, and scene 3 whose relevance is greater than or equal to a preset threshold (corresponding to meeting the preset conditions). During the live video teaching process, the current scene being displayed is, for example, scene 1. The user 110 wants to switch to advertising material 1 (including but not limited to video, stickers, GIFs, etc.), so the corresponding target scene is scene 5. At this time, the first switching instruction sent by the user 110 to the terminal device 210 is to switch the displayed scene from scene 1 to scene 5. In response to the received first switching instruction, the terminal device 210 first determines whether the relevance of the current scene (i.e., scene 1) to the displayed subject meets the preset conditions. Since the relevance of scene 1 to the displayed subject is 0.3, which is greater than the preset threshold (i.e., 0.3), the terminal device 210 determines the current scene (i.e., scene 1) as the main scene of this live video teaching.
[0049] As another specific embodiment, the current scene being displayed is, for example, scene 4, and the user 110 wants to switch to advertising material 1, so the corresponding target scene is scene 5. At this time, the first switching instruction sent by the user 110 to the terminal device 210 is to switch the displayed scene from scene 4 to scene 5. In response to the received first switching instruction, the terminal device 210 first determines whether the relevance of the current scene (i.e., scene 4) to the displayed theme meets the preset conditions. Since the relevance of scene 4 to the displayed theme is 0.005, which is less than the preset threshold (i.e., 0.3), it means that the content bound to the current scene is not the core content, and is likely to be temporary or auxiliary content. Therefore, the terminal device 210 needs to determine a scene from multiple first-category scenes (including scene 1, scene 2, and scene 3) as the main scene of this live video teaching.
[0050] In this way, the main scene of the entire display process can be quickly and accurately determined, providing support for the subsequent precise return to the core display content.
[0051] Optionally, when the relevance of the current scene to the theme of the presentation process does not meet preset conditions, a scene is determined from multiple first-category scenes as the main scene of the presentation process, including: obtaining a second switching instruction received before the first switching instruction; and according to the second switching instruction, determining a scene from multiple first-category scenes as the main scene of the presentation process.
[0052] Specifically, if Figure 5 As shown, the scenes created by the user include 3 first-category scenes (including scene 1, scene 2, and scene 3) and 3 second-category scenes (including scene 4, scene 5, and scene 6). When the terminal device 210 determines a scene from scene 1, scene 2, and scene 3 as the main scene of the presentation process, it is necessary to first obtain the second switching instruction received before the first switching instruction, that is, obtain the historical switching instruction, and then determine a scene from scene 1, scene 2, and scene 3 as the main scene of the presentation process according to the historical switching instruction. For example, the historical switching instruction obtained by the terminal device 210 is to switch from scene 1 to scene 3. According to the historical switching instruction, it is proved that the user 110 has chosen to switch the main scene of the presentation process from scene 1 to scene 3 before sending the first switching instruction. Then, the terminal device 210 determines scene 3 from scenes 1 to 3 as the main scene of the presentation process according to the historical switching instruction. For another example, the historical switching instruction obtained by the terminal device 210 is to switch from scene 2 to scene 1. According to the historical switching instruction, it is proved that the user 110 chose to change the main scene of the display process from scene 2 to scene 1 before sending the first switching instruction. Then the terminal device 210 determines scene 1 from scenes 1 to 3 as the main scene currently displayed based on the historical switching instruction.
[0053] Therefore, through the user's historical switching instructions, a scene that highly matches the user's needs can be accurately determined from multiple first-category scenes as the main scene of the display process.
[0054] Optionally, according to the second switching instruction, a scene is determined from multiple first-category scenes as the main scene of the display process, including: obtaining the last second switching instruction received before the first switching instruction; when the last second switching instruction is used to indicate that the displayed scene is switched from the first historical scene belonging to the first category of scenes to the current scene, the first historical scene is determined as the main scene of the display process; when the last second switching instruction is used to indicate that the displayed scene is switched from the second historical scene belonging to the second category of scenes to the current scene, other second switching instructions other than the last second switching instruction received before the first switching instruction are obtained, and the main scene of the display process is determined according to the other second switching instructions.
[0055] Specifically, in complex display scenarios, users' switching operations are relatively frequent, and the terminal device 210 receives relatively more historical switching instructions (i.e., second switching instructions). Considering that the relevance of the current scene to the displayed subject does not meet the preset conditions, the last second switching instruction received before the first switching instruction is often more able to express the user's historical display needs. Therefore, when the terminal device 210 determines the main scene currently being displayed based on the second switching instruction, it gives priority to obtaining the last second switching instruction received before the first switching instruction. When the last second switching instruction is used to indicate that the displayed scene is switched from the first historical scene (e.g., scene 1) belonging to the first category of scenes to the current scene belonging to the second category of scenes, it means that the core content that the user currently wants to display still belongs to the content bound to the first historical scene. Therefore, the terminal device 210 can directly determine the first historical scene as the main scene currently being displayed.
[0056] When the last second switching instruction is used to instruct to switch the displayed scene from the second historical scene belonging to the second category of scenes to the current scene belonging to the second category of scenes, it means that the core content that the user currently wants to display cannot be determined from the last second switching instruction alone. Therefore, the terminal device 210 also needs to obtain other second switching instructions other than the last second switching instruction received before the first switching instruction, and determine the main scene of the display process according to the other second switching instructions. For example, referring to Figure 5As shown, the current time node is t, the current scene displayed at time node t is scene 4, the switching instruction received at time node t-1 is to switch from scene 5 to scene 4, the switching instruction received at time node t-2 is to switch from scene 3 to scene 5, the switching instruction received at time node t-3 is to switch from scene 2 to scene 3, and the switching instruction received at time node t-4 is to switch from scene 1 to scene 2. At this time, the terminal device 210 determines that the main scene that the user wants to display in the historical stage has switched from scene 1 to scene 2, and then to scene 3, based on the switching instructions received at time nodes t-2, t-3, and t-4. In other words, the core content that the user currently wants to display is the content bound to scene 3, so the terminal device 210 determines scene 3 as the main scene currently displayed.
[0057] In this way, a scene that highly matches the user's needs can be accurately determined from all first-category scenes as the main scene of the display process, thereby achieving the purpose of automatically switching back to the first-category scene that the user has most recently used.
[0058] Optionally, according to the first switching instruction, the displayed scene is switched to the target scene, including: obtaining the scene transition method set by the user; according to the first switching instruction, switching the displayed scene to the target scene according to the scene transition method. Specifically, the platform supports scene transition methods such as gradient, blinds, gradual approach, and gradual distance. The user can set the transition method between scene switches (transitions) according to needs. After the terminal device 210 receives the first switching instruction, it can obtain the scene transition method set by the user, and then switch the displayed scene to the target scene according to the scene transition method. In this way, the user experience can be effectively improved.
[0059] In addition, according to this embodiment, a storage medium is also provided, which includes a stored program, wherein when the program is run, a processor executes any one of the above methods.
[0060] The present application receives a scene switching instruction during the display process, and the switching instruction indicates that the displayed scene needs to be switched from the current scene to a target scene whose relevance to the theme of the display process does not meet the preset conditions. According to the received switching instruction, the display screen is switched from the current scene to the target scene, and after the content bound to the target scene is displayed, the displayed scene can be autonomously switched to the main scene bound to the core content without external intervention, and the relevance of the main scene to the theme of the display process meets the preset conditions. In this way, it is ensured that even after a complex scene change, it can automatically and accurately return to the core display content to maintain the continuity of the display content and the focus. Thus, it not only ensures the seamless connection between multiple display scenes, but also simplifies the operation process, improves the switching efficiency and effectively reduces manual intervention. This solves the technical problems of high switching complexity, low efficiency and high risk of human error in multiple display scenes in the prior art.
[0061] It should be noted that for the aforementioned method embodiments, for simplicity of description, they are all expressed as a series of action combinations. However, those skilled in the art should be aware that the present invention is not limited by the order of the actions described, because according to the present invention, certain steps can be performed in other orders or simultaneously. Secondly, those skilled in the art should also be aware that the embodiments described in this specification are all preferred embodiments, and the actions and modules involved are not necessarily required by the present invention.
[0062] Example 2
[0063] Figure 6 A schematic diagram of the structure of a control device 600 for multiple display scenes according to this embodiment is shown. The constant temperature wind control device 600 includes: a receiving module 610 for receiving a first scene switching instruction during a display process; wherein the first switching instruction is used to instruct to switch the display scene from the current scene to a target scene, the relevance of the target scene to the theme of the display process not meeting a preset condition, and different scenes are bound to different display content; and a switching module 620 for switching the display scene to the target scene according to the first switching instruction, and after the content bound to the target scene is displayed, switching the display scene to the main scene of the display process; wherein the relevance of the main scene to the theme of the display process meets a preset condition.
[0064] Optionally, a scene whose relevance to the theme of the display process meets the preset conditions is a first-category scene, and a scene whose relevance to the theme of the display process does not meet the preset conditions is a second-category scene. In addition, when the user sets a main scene, the main scene of the display process is the main scene set by the user. In addition, when the user does not set a main scene and there is only one first-category scene, the main scene of the display process is the first-category scene. In addition, when the user does not set a main scene and there is multiple first-category scenes, one scene is determined from multiple first-category scenes as the main scene of the display process.
[0065] Optionally, determining a scene from multiple first-category scenes as the main scene of the presentation process includes: judging whether the relevance of the current scene to the theme of the presentation process meets preset conditions; when the relevance of the current scene to the theme of the presentation process meets the preset conditions, determining the current scene as the main scene of the presentation process; when the relevance of the current scene to the theme of the presentation process does not meet the preset conditions, determining a scene from multiple first-category scenes as the main scene of the presentation process.
[0066] Optionally, when the relevance of the current scene to the theme of the presentation process does not meet preset conditions, a scene is determined from multiple first-category scenes as the main scene of the presentation process, including: obtaining a second switching instruction received before the first switching instruction; and according to the second switching instruction, determining a scene from multiple first-category scenes as the main scene of the presentation process.
[0067] Optionally, according to the second switching instruction, a scene is determined from multiple first-category scenes as the main scene of the display process, including: obtaining the last second switching instruction received before the first switching instruction; when the last second switching instruction is used to indicate that the displayed scene is switched from the first historical scene belonging to the first category of scenes to the current scene, the first historical scene is determined as the main scene of the display process; when the last second switching instruction is used to indicate that the displayed scene is switched from the second historical scene belonging to the second category of scenes to the current scene, other second switching instructions other than the last second switching instruction received before the first switching instruction are obtained, and the main scene of the display process is determined according to the other second switching instructions.
[0068] Optionally, the switching module 620 is specifically configured to: obtain a scene transition method set by the user; and switch the displayed scene to a target scene according to the scene transition method according to the first switching instruction.
[0069] Thus, according to this embodiment, a scene switching instruction is received during the display process, and the switching instruction indicates that the displayed scene needs to be switched from the current scene to a target scene whose relevance to the theme of the display process does not meet the preset conditions. According to the received switching instruction, the display screen is switched from the current scene to the target scene, and after the content bound to the target scene is displayed, the displayed scene can be autonomously switched to the main scene bound to the core content without external intervention, and the relevance of the main scene to the theme of the display process meets the preset conditions. In this way, it is ensured that even after a complex scene change, it can automatically and accurately return to the core display content to maintain the continuity of the display content and the focus. Thus, not only is seamless connection between multiple display scenes guaranteed, but also the operation process is simplified, the switching efficiency is improved, and manual intervention is effectively reduced. This solves the technical problems of high switching complexity, low efficiency and high risk of human error in multiple display scenes in the prior art.
[0070] Example 3
[0071] Figure 7 A control system 700 for multiple display scenes according to this embodiment is shown, including: a processor 710; and a memory 720, connected to the processor 710, for providing instructions for the processor 710 to process the following processing steps: receiving a first scene switching instruction during a display process; wherein the first switching instruction is used to instruct to switch the displayed scene from the current scene to the target scene, the relevance of the target scene to the theme of the display process does not meet the preset conditions, and different scenes are bound to different display contents; and according to the first switching instruction, switching the displayed scene to the target scene, and after the content bound to the target scene is completed, switching the displayed scene to the main scene of the display process; wherein the relevance of the main scene to the theme of the display process meets the preset conditions.
[0072] Optionally, a scene whose relevance to the theme of the display process meets the preset conditions is a first-category scene, and a scene whose relevance to the theme of the display process does not meet the preset conditions is a second-category scene. In addition, when the user sets a main scene, the main scene of the display process is the main scene set by the user. In addition, when the user does not set a main scene and there is only one first-category scene, the main scene of the display process is the first-category scene. In addition, when the user does not set a main scene and there is multiple first-category scenes, one scene is determined from multiple first-category scenes as the main scene of the display process.
[0073] Optionally, determining a scene from multiple first-category scenes as the main scene of the presentation process includes: judging whether the relevance of the current scene to the theme of the presentation process meets preset conditions; when the relevance of the current scene to the theme of the presentation process meets the preset conditions, determining the current scene as the main scene of the presentation process; when the relevance of the current scene to the theme of the presentation process does not meet the preset conditions, determining a scene from multiple first-category scenes as the main scene of the presentation process.
[0074] Optionally, when the relevance of the current scene to the theme of the presentation process does not meet preset conditions, a scene is determined from multiple first-category scenes as the main scene of the presentation process, including: obtaining a second switching instruction received before the first switching instruction; and according to the second switching instruction, determining a scene from multiple first-category scenes as the main scene of the presentation process.
[0075] Optionally, according to the second switching instruction, a scene is determined from multiple first-category scenes as the main scene of the display process, including: obtaining the last second switching instruction received before the first switching instruction; when the last second switching instruction is used to indicate that the displayed scene is switched from the first historical scene belonging to the first category of scenes to the current scene, the first historical scene is determined as the main scene of the display process; when the last second switching instruction is used to indicate that the displayed scene is switched from the second historical scene belonging to the second category of scenes to the current scene, other second switching instructions other than the last second switching instruction received before the first switching instruction are obtained, and the main scene of the display process is determined according to the other second switching instructions.
[0076] Optionally, according to the first switching instruction, switching the displayed scene to the target scene includes: obtaining a scene transition method set by the user; according to the first switching instruction, switching the displayed scene to the target scene according to the scene transition method.
[0077] Thus, according to this embodiment, a scene switching instruction is received during the display process, and the switching instruction indicates that the displayed scene needs to be switched from the current scene to a target scene whose relevance to the theme of the display process does not meet the preset conditions. According to the received switching instruction, the display screen is switched from the current scene to the target scene, and after the content bound to the target scene is displayed, the displayed scene can be autonomously switched to the main scene bound to the core content without external intervention, and the relevance of the main scene to the theme of the display process meets the preset conditions. In this way, it is ensured that even after a complex scene change, it can automatically and accurately return to the core display content to maintain the continuity of the display content and the focus. Thus, not only is seamless connection between multiple display scenes guaranteed, but also the operation process is simplified, the switching efficiency is improved, and manual intervention is effectively reduced. This solves the technical problems of high switching complexity, low efficiency and high risk of human error in multiple display scenes in the prior art.
[0078] The serial numbers of the above embodiments of the present invention are for description only and do not represent the advantages or disadvantages of the embodiments.
[0079] In the above embodiments of the present invention, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0080] In the several embodiments provided in this application, it should be understood that the disclosed technical content can be implemented in other ways. Among them, the device embodiments described above are only schematic. For example, the division of the units is only a logical function division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of units or modules, which can be electrical or other forms.
[0081] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.
[0082] In addition, the functional units in the various embodiments of the present invention may be integrated into a single processing unit, each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.
[0083] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for enabling a computer device (which can be a personal computer, server or network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present invention. The aforementioned storage medium includes: U disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk, etc. Various media that can store program codes.
[0084] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A method for controlling multiple display scenes, characterized in that: A control platform for multiple display scenarios includes a first terminal device of a first user with a display requirement, a second terminal device of a second user as the display target, and a server. When the first user wants to display or share content related to a certain topic with the second user, multiple scenes related to the displayed topic are created through the first terminal device, and different scenes are bound to different display content. The control method includes: The first terminal device receives a first scene switching instruction generated by the first user during the presentation process; wherein a scene whose relevance to the theme of the presentation process meets a preset condition is a first type of scene, and a scene whose relevance to the theme of the presentation process does not meet the preset condition is a second type of scene, and the first switching instruction is used to instruct to switch the presented scene from the current scene to a target scene of the second type; the type of the current scene is any one of the first type of scene and the second type of scene; and The first terminal device switches the displayed scene to the target scene according to the first switching instruction, and sends the content corresponding to the target scene to the second terminal device through the server; After the first terminal device completes display of the content bound to the target scene, the first terminal device switches the displayed scene to the main scene of the display process, and sends the content corresponding to the main scene to the second terminal device through the server; wherein the type of the main scene is the first type of scene; when the first user sets a main scene, the main scene of the display process is the main scene set by the first user; when the first user does not set a main scene and there is only one scene of the first type, the main scene of the display process is the first type of scene; and when the first user does not set a main scene and there are multiple scenes of the first type, the following operations are performed: The first terminal device determines whether the relevance between the current scene and the theme of the presentation process meets a preset condition; When the relevance of the current scene to the theme of the display process meets the preset conditions, the first terminal device determines the current scene as the main scene of the display process; when the relevance of the current scene to the theme of the display process does not meet the preset conditions, the first terminal device obtains the last second switching instruction received before the first switching instruction; when the last second switching instruction is used to instruct the displayed scene to be switched from the first historical scene belonging to the first category of scenes to the current scene, the first terminal device determines the first historical scene as the main scene of the display process; when the last second switching instruction is used to instruct the displayed scene to be switched from the second historical scene belonging to the second category of scenes to the current scene, the first terminal device obtains other second switching instructions received before the first switching instruction except the last second switching instruction, and determines the main scene of the display process according to the other second switching instructions.
2. The method according to claim 1, characterized in that The first terminal device switches the displayed scene to the target scene according to the first switching instruction, including: The first terminal device obtains the scene transition mode set by the first user; The first terminal device switches the displayed scene to the target scene according to the first switching instruction and the scene transition method.
3. A storage medium, characterized in that: The storage medium includes a stored program, wherein when the program is run, the processor executes the method according to any one of claims 1 to 2.
4. A control device for multiple display scenes, characterized in that: include: a receiving module, configured to receive a first scene switching instruction generated by a first user during a presentation process; wherein a scene whose relevance to the theme of the presentation process meets a preset condition is a first-category scene, and a scene whose relevance to the theme of the presentation process does not meet the preset condition is a second-category scene, and the first switching instruction is used to instruct to switch the presented scene from the current scene to a target scene of the second-category scene; the type of the current scene is any one of the first-category scene and the second-category scene; and a switching module, configured to switch the displayed scene to the target scene according to the first switching instruction, send the content corresponding to the target scene to the terminal device of the display object through the server, and after the content bound to the target scene is displayed, switch the displayed scene to the main scene of the display process, and send the content corresponding to the main scene to the terminal device of the display object through the server; wherein the type of the main scene is the first type of scene; when the first user sets a main scene, the main scene of the display process is the main scene set by the first user; when the first user does not set a main scene and there is only one scene of the first type, the main scene of the display process is the first type of scene; and when the first user does not set a main scene and there is multiple scenes of the first type, perform the following operations: The first terminal device determines whether the relevance between the current scene and the theme of the display process meets a preset condition; When the relevance of the current scene to the theme of the display process meets the preset conditions, the first terminal device determines the current scene as the main scene of the display process; when the relevance of the current scene to the theme of the display process does not meet the preset conditions, the first terminal device obtains the last second switching instruction received before the first switching instruction; when the last second switching instruction is used to instruct the displayed scene to be switched from the first historical scene belonging to the first category of scenes to the current scene, the first terminal device determines the first historical scene as the main scene of the display process; when the last second switching instruction is used to instruct the displayed scene to be switched from the second historical scene belonging to the second category of scenes to the current scene, the first terminal device obtains other second switching instructions received before the first switching instruction except the last second switching instruction, and determines the main scene of the display process according to the other second switching instructions.
5. A control system for multiple display scenes, characterized in that: include: processor; as well as A memory, connected to the processor, configured to provide the processor with instructions for processing the following processing steps: receiving, during the presentation process, a first scene switching instruction generated by a first user; wherein a scene whose relevance to the subject of the presentation process meets a preset condition is a first-category scene, and a scene whose relevance to the subject of the presentation process does not meet the preset condition is a second-category scene, the first switching instruction being used to instruct the presentation scene to be switched from the current scene to a target scene of the second-category scene; the current scene being of either the first or second-category scene; and According to the first switching instruction, the displayed scene is switched to the target scene, the content corresponding to the target scene is sent to the terminal device of the display object through the server, and after the content bound to the target scene is displayed, the displayed scene is switched to the main scene of the display process, and the content corresponding to the main scene is sent to the terminal device of the display object through the server; wherein the type of the main scene is the first type of scene; when the first user sets a main scene, the main scene of the display process is the main scene set by the first user; when the first user does not set a main scene and there is only one scene of the first type, the main scene of the display process is the first type of scene; and when the first user does not set a main scene and there is multiple scenes of the first type, the following operations are performed: The first terminal device determines whether the relevance between the current scene and the theme of the display process meets a preset condition; When the relevance of the current scene to the theme of the display process meets the preset conditions, the first terminal device determines the current scene as the main scene of the display process; when the relevance of the current scene to the theme of the display process does not meet the preset conditions, the first terminal device obtains the last second switching instruction received before the first switching instruction; when the last second switching instruction is used to instruct the displayed scene to be switched from the first historical scene belonging to the first category of scenes to the current scene, the first terminal device determines the first historical scene as the main scene of the display process; when the last second switching instruction is used to instruct the displayed scene to be switched from the second historical scene belonging to the second category of scenes to the current scene, the first terminal device obtains other second switching instructions received before the first switching instruction except the last second switching instruction, and determines the main scene of the display process according to the other second switching instructions.
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