Intelligent interaction method and system of metaverse digital exhibition hall
By dividing the browsing popularity zones in the Metaverse Digital Exhibition Hall and optimizing the construction of interactive objects for exhibits and the data interaction methods, the problem of excessive server pressure was solved, and the comprehensiveness of exhibit display and user experience were improved.
Patent Information
- Application Number
- CN202511366002.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-24
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2045-09-24
AI Technical Summary
In existing technologies, when determining interactive objects for exhibits based on browsing popularity, the server data processing pressure is too high, resulting in a deterioration in the exhibit display effect and an inability to effectively meet user needs.
The exhibits are divided into multiple browsing popularity intervals. The number of interactive objects to be built is determined based on the browsing popularity interval data. Server load is optimized through different data interaction methods and control schemes to ensure the comprehensive construction of interactive objects and the reasonable allocation of data interaction methods.
It enabled the comprehensive construction of interactive objects across various browsing popularity ranges, optimized the server's data processing load, and improved the comprehensiveness of exhibit display and user experience.
Smart Images

Figure CN120848772B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of image analysis, and particularly relates to an intelligent interaction method and system for a meta-universe digital exhibition hall. BACKGROUND
[0002] In order to improve the exposure of the exhibition hall, the construction of the digital exhibition hall is realized by combining the meta-universe technology, so that the visitors can realize the browsing of the exhibition hall without going out. However, at the same time, how to realize the intelligent interaction between the browsing personnel and the exhibits and improve the browsing effect becomes a technical problem to be solved.
[0003] Therefore, in order to realize the data interaction processing with the browsing personnel, in the existing technical solution, for example, in the digital exhibition hall of the Palace Museum, the 3D disassembly demonstration of the bronze casting process is used to make the user stay longer by 42%, which greatly improves the browsing experience of the user. However, the above technical solution has the following technical problems:
[0004] When interacting with the browsing personnel, the existing technical solution often determines the data interaction exhibits by using the browsing heat. However, due to the limitation of server resources, if the data interaction exhibits are determined by relying on the browsing heat, it is inevitable that the data processing pressure of the server will be too large, and thus the number of exhibits that can be processed for data interaction will be too small, thereby making the overall exhibition effect of the exhibits worse.
[0005] To solve the above technical problems, the application provides an intelligent interaction method and system for a meta-universe digital exhibition hall. SUMMARY
[0006] To achieve the purpose of the application, the application adopts the following technical solutions:
[0007] Specifically, the application provides an intelligent interaction method for a meta-universe digital exhibition hall, which specifically includes:
[0008] S1, based on the browsing data of the exhibits in the meta-universe digital exhibition hall, the exhibits are divided into a plurality of browsing heat intervals, according to the exhibit data of each browsing heat interval, the number of constructed objects of the exhibits is determined, and the number of constructed objects is determined in the browsing heat interval based on the number of constructed objects;
[0009] S2, according to the data interaction of the interactive objects in different browsing heat intervals, the data interaction mode of the interactive objects in the target browsing heat interval is determined, based on the data interaction mode of the interactive objects in the target browsing heat interval and the unconstructed exhibit data, the control scheme of the data interaction mode of the interactive objects in the user browsing process is determined, and the running data of the server is determined by using the control scheme;
[0010] S3 determines the construction target of the interactive object in the unconstructed exhibit in the target browsing heat interval based on the running data of the server in each browsing population interval.
[0011] The present application has the following beneficial effects:
[0012] Based on the construction quantity, the interactive object in the browsing heat interval is determined, so that the construction of the interactive object in each browsing heat interval is realized, and the technical problem of excessive data processing pressure of the server caused by the construction of the interactive object based on the browsing heat is avoided, and the comprehensiveness of the construction of the interactive object is improved.
[0013] Based on the data interaction mode of the interactive object in the target browsing heat interval and the unconstructed exhibit data, the control scheme of the data interaction mode of the interactive object in the user browsing process is determined, which realizes the comprehensive degree evaluation of the construction processing of the interactive object with high browsing heat from the data interaction mode and the large number of unconstructed exhibits, and further realizes the determination of the control scheme of the data interaction mode of the interactive object in the user browsing process from the comprehensive degree of the construction processing, which meets the browsing demand of the user and also ensures that the reliable evaluation of the data processing pressure of the server under the existing interactive object in different browsing population intervals can be realized as soon as possible.
[0014] Based on the running data of the server in each browsing population interval, the construction target of the interactive object in the unconstructed exhibit in the target browsing heat interval is determined, so that the remaining load rate space of the server in each browsing population interval and the comprehensiveness of the recognition processing are fully considered, and the comprehensiveness of the construction of the interactive object of the exhibit with high browsing heat is improved on the basis of meeting the interactive processing demand of the existing interactive object in each browsing population interval.
[0015] Further, the exhibit is divided into a plurality of browsing heat intervals, specifically including:
[0016] According to the daily average browsing population of the exhibit, the exhibit is divided into the same browsing heat interval.
[0017] Specifically, the exhibit with daily average browsing population in the same browsing population interval is divided into the same browsing heat interval, and in a possible embodiment, the browsing population interval is equally divided by 20 people as an interval.
[0018] Further, the method for determining the construction quantity of the interactive object of the exhibit is:
[0019] Determine the daily average number of visitors of each exhibit in each browsing heat interval based on the exhibit data in each browsing heat interval;
[0020] Take the average of the daily average number of visitors of different exhibits as the average number of visitors;
[0021] Determine the number of constructed interactive objects of the exhibits based on the average number of visitors and the total number of exhibits in the meta-universe digital exhibition hall.
[0022] Further, the method for determining the interactive objects in the browsing heat interval is:
[0023] Determine the proportion of the number of constructed interactive objects in the browsing heat interval based on the proportion of the number of exhibits in different browsing heat intervals;
[0024] Determine the number of constructed interactive objects in the browsing heat interval by multiplying the proportion of the number of constructed interactive objects and the number of constructed interactive objects;
[0025] Determine the interactive objects in the browsing heat interval based on the number of constructed interactive objects in the browsing heat interval.
[0026] Further, when the average of the running load rate in the target visitor number interval does not meet the requirement, i.e. greater than 0.9 or more, it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed into interactive objects.
[0027] In a second aspect, the present application provides a computer system, comprising a memory and a processor connected in communication, and a computer program stored on the memory and capable of running on the processor, wherein the processor executes the computer program to perform the above-mentioned intelligent interaction method of the meta-universe digital exhibition hall.
[0028] Other features and advantages will be set forth in the following description, and the objectives and other advantages of the present application will be achieved and obtained by the structures particularly pointed out in the description and the accompanying drawings.
[0029] In order to make the above-mentioned objectives, features and advantages of the present application more obvious and easy to understand, the following preferred embodiments are specifically described below, and the accompanying drawings are referred to for detailed description. BRIEF DESCRIPTION OF DRAWINGS
[0030] The above-mentioned and other features and advantages of the present application will become more apparent by describing example embodiments thereof with reference to the accompanying drawings.
[0031] Figure 1 A flowchart of an intelligent interaction method of a meta-universe digital exhibition hall;
[0032] Figure 2A flowchart of a method for determining the number of constructed interactive objects of an exhibit;
[0033] Figure 3 A flowchart of a method for determining the data interaction mode of an interactive object within a target browsing heat interval;
[0034] Figure 4 A framework diagram of a computer system. DETAILED DESCRIPTION
[0035] In order to enable personnel in the technical field to better understand the technical solutions in the specification, the technical solutions in the specification will be clearly and completely described below in conjunction with the drawings in the specification. Obviously, the described embodiments are only part of the embodiments of the specification, not all. Based on the embodiments of the specification, all other embodiments obtained by those of ordinary skill in the art without creative labor should fall within the scope of protection of the specification.
[0036] In the present application, by limiting the number of constructed interactive objects in different browsing heat intervals, the number of constructed interactive objects is increased, and the comprehensiveness of interactive objects in the exhibit is further improved.
[0037] Embodiment 1
[0038] As shown in Figure 1 , the present application provides an intelligent interaction method of a meta-universe digital exhibition hall, which specifically includes:
[0039] S1, based on the browsing data of the exhibits in the meta-universe digital exhibition hall, the exhibits are divided into a plurality of browsing heat intervals, according to the exhibit data of each browsing heat interval, the number of constructed interactive objects of the exhibits is determined, and the interactive objects within the browsing heat interval are determined based on the number of constructed interactive objects.
[0040] Further, the exhibits are divided into a plurality of browsing heat intervals, specifically including:
[0041] According to the daily average number of visitors of the exhibits, the exhibits are divided into the same browsing heat interval.
[0042] Specifically, the exhibits with daily average number of visitors within the same browsing person interval are divided into the same browsing heat interval, and in a possible embodiment, the browsing person interval is divided by equal intervals with an interval of 20 people.
[0043] Specifically, as shown in Figure 2 , the method for determining the number of constructed interactive objects of the exhibits is:
[0044] Determine the daily average number of visitors of the exhibits in each browsing heat interval based on the exhibit data in each browsing heat interval;
[0045] Take the average of the daily average number of visitors of different exhibits as the average number of visitors;
[0046] Determine the number of constructed interactive objects of the exhibits based on the average number of visitors and the total number of exhibits in the metaverse digital exhibition hall.
[0047] It can be understood that determining the number of constructed interactive objects of the exhibits based on the average number of visitors and the total number of exhibits in the metaverse digital exhibition hall specifically includes:
[0048] Determine a construction ratio based on the average number of visitors, and determine the number of constructed interactive objects of the exhibits based on the product of the construction ratio and the total number of exhibits in the metaverse digital exhibition hall.
[0049] In one possible embodiment, the construction ratio is related to the average number of visitors, wherein the more the average number of visitors, the larger the construction ratio. In one possible embodiment, when the average number of visitors is between 0 and 50, the ratio factor is 0.1, and when the average number of visitors is greater than 50, the ratio factor is 0.15.
[0050] Optionally, the method for determining the number of constructed interactive objects of the exhibits includes:
[0051] Determine the daily average number of visitors of the exhibits in each browsing heat interval based on the exhibit data in each browsing heat interval;
[0052] Take the average of the daily average number of visitors of different exhibits as the average number of visitors;
[0053] Determine the exhibits with the average number of visitors greater than a preset number of visitors threshold based on the average number of visitors, and determine the number of constructed interactive objects of the exhibits based on the exhibits with the average number of visitors greater than the preset number of visitors threshold and the total number of exhibits in the metaverse digital exhibition hall.
[0054] It can be understood that the number of constructed interactive objects of the exhibits is the number of exhibits with the average number of visitors greater than the preset number of visitors threshold.
[0055] Further, the method for determining the interactive objects in the browsing heat interval includes:
[0056] Determine the proportion of the number of constructed interactive objects of the exhibits in the browsing heat interval based on the proportion of the number of exhibits in different browsing heat intervals;
[0057] determine the number of the interactive objects in the different browsing heat intervals based on the interactive object data in the different browsing heat intervals;
[0058] determine the interactive objects in the browsing heat interval based on the number of the interactive objects in the browsing heat interval.
[0059] It can be understood that the interactive objects in the browsing heat interval are the exhibits with the largest number of daily average browsing people in the number of the interactive objects in the browsing heat interval, that is, the exhibits with the largest number of daily average browsing people are selected as the interactive objects in the browsing heat interval.
[0060] S2 determines the data interaction mode of the interactive objects in the target browsing heat interval based on the interactive object data in the different browsing heat intervals, determines the control scheme of the data interaction mode of the interactive objects in the user browsing process based on the data interaction mode of the interactive objects in the target browsing heat interval and the unconstructed exhibit data, and determines the running data of the server by using the control scheme;
[0061] Specifically, as shown in the figure, Figure 3 the method for determining the data interaction mode of the interactive objects in the target browsing heat interval is:
[0062] determine the number of the interactive objects in the different browsing heat intervals based on the interactive object data in the different browsing heat intervals;
[0063] determine the interactive objects using the real-time data interaction mode based on the number of the interactive objects and the daily average browsing people;
[0064] determine the data interaction mode of the interactive objects in the target browsing heat interval based on the interactive object data in the target browsing heat interval and the interactive object data using the real-time data interaction mode.
[0065] It should be noted that the target browsing heat interval is a browsing heat interval with a daily average browsing people greater than 100.
[0066] It can be understood that when the number ratio of the interactive objects in the target browsing heat interval is less than the preset ratio threshold, it means that most of the exhibits are not constructed as interactive objects, and therefore the data interaction mode of the interactive objects in the target browsing heat interval is determined to be the real-time data interaction mode.
[0067] In one possible embodiment, when the number ratio of the interactive objects in the target browsing heat interval is less than 0.1, the data interaction mode of the interactive objects in the target browsing heat interval is determined to be the real-time data interaction mode.
[0068] It can be understood that when the proportion of the number of the interaction objects in the target browsing heat interval is not less than the preset proportion threshold, it is further needed to determine the interaction object data using the real-time data interaction mode, wherein the interaction objects using the real-time data interaction mode are determined according to the proportion of the number of the interaction objects in the browsing heat interval where the interaction objects are located and the average of the daily average browsing persons, and specifically, the interaction objects in the browsing heat interval where the proportion of the number of the interaction objects is less than 0.05, the proportion of the number of the interaction objects is less than 0.1 and the average of the daily average browsing persons is greater than 50 are taken as the interaction objects using the real-time data interaction mode.
[0069] It should be noted that when the number of the interaction objects using the real-time data interaction mode does not meet the requirement, in a possible embodiment, greater than 50, if all the interaction objects in the target browsing heat interval use the real-time data interaction mode, the processing pressure of the server will be too large, therefore, on this basis, the determination of the interaction mode of the interaction objects in the target browsing heat interval is jointly performed by the real-time data interaction mode and the preset interaction mode.
[0070] In addition, it can be understood that when the number of the interaction objects using the real-time data interaction mode meets the requirement, the interaction mode of the interaction objects is determined according to the number of the interaction objects in the target browsing heat interval, specifically, when the number of the interaction objects in the target browsing heat interval and the total number of the interaction objects using the real-time data interaction mode meet the requirement, it is determined that the data interaction mode of the interaction objects in the target browsing heat interval is the real-time data interaction mode, and when the number of the interaction objects in the target browsing heat interval and the total number of the interaction objects using the real-time data interaction mode do not meet the requirement, the determination of the interaction mode of the interaction objects in the target browsing heat interval is jointly performed by the real-time data interaction mode and the preset interaction mode.
[0071] In a possible embodiment, the determination of the interaction mode of the interaction objects in the target browsing heat interval is jointly performed by the real-time data interaction mode and the preset interaction mode, specifically including:
[0072] On the basis of the preset construction number, the difference between the preset construction number and the number of the interaction objects using the real-time data interaction mode is taken as the construction number of the real-time data interaction mode;
[0073] In the target browsing heat interval, the interaction objects with the largest number of daily average browsing persons are selected as the interaction objects using the real-time data interaction mode, and the remaining interaction objects in the target browsing heat interval are constructed using the preset interaction mode.
[0074] It can be understood that the preset interaction mode is to perform real-time interaction processing of the interactive object when the number of simultaneous browsing personnel of the interactive object meets the requirement. In a possible embodiment, when the number of simultaneous browsing personnel of the interactive object is not less than 6, real-time interaction processing of the interactive object is performed.
[0075] It should be noted that the real-time data interaction mode is to perform real-time interaction processing of the interactive object when there are browsing personnel.
[0076] Specifically, the method for determining the control scheme of the data interaction mode of the interactive object in the user browsing process comprises the following steps:
[0077] Based on the data interaction mode of the interactive object in the target browsing heat interval, the interactive object in the target browsing heat interval that adopts the preset interaction mode is determined, and the interactive object is taken as a preset-mode interactive object.
[0078] According to the unconstructed exhibit data in the target browsing heat interval, the exhibits in the target browsing heat interval that do not belong to the interactive object are determined, and the exhibits are taken as uninteractive exhibits.
[0079] The control scheme of the data interaction mode of the interactive object in the user browsing process is determined by using the constituent data of the uninteractive exhibits and the preset-mode interactive objects.
[0080] It should be noted that whether the number of preset-mode interactive objects and the number of uninteractive exhibits meet the requirement is determined. When the number of preset-mode interactive objects does not meet the requirement and the number of uninteractive exhibits is greater than a preset exhibit quantity threshold value, at different time points, all interactive objects at the time point are controlled and processed by using the real-time data interaction mode, so that the real running state of the server can be determined.
[0081] It can be understood that when the proportion of the number of preset-mode interactive objects in the interactive objects in the target browsing heat interval is greater than 0.6 or the number of uninteractive exhibits in the target browsing heat interval is greater than 20, the reliability of the construction processing of the interactive objects of the exhibits in the target browsing heat interval is relatively low. In order to evaluate the running state of the server as soon as possible, the interaction mode of the uninteractive exhibits is constructed as soon as possible. Therefore, on this basis, at different time points, all interactive objects at the time point are controlled and processed by using the real-time data interaction mode, so that the real running state of the server can be determined.
[0082] It should be noted that when the number of preset mode interaction objects meets the requirement or the number of non-interactive exhibits is not greater than the preset exhibit number threshold, if the number of preset mode interaction objects does not meet the requirement or the number of non-interactive exhibits is greater than the preset exhibit number threshold, the interaction object data of the meta universe digital exhibition hall using the preset interaction mode is obtained, and if the proportion of the number of interaction objects using the preset interaction mode in the interaction objects of the meta universe digital exhibition hall is greater than the preset proportion threshold, in order to determine the running state of the server under the condition that all interaction objects are in real-time data interaction mode, on this basis, as long as the number of interaction objects in real-time data interaction processing at the moment meets the requirement, all interaction objects at the moment are controlled and processed using real-time data interaction mode.
[0083] In one possible embodiment, when the proportion of the number of interaction objects using the preset interaction mode in the interaction objects of the meta universe digital exhibition hall is greater than 0.6, in order to determine the running state of the server under the condition that all interaction objects are in real-time data interaction mode, as long as the proportion of the number of interaction objects in real-time data interaction processing at the moment is greater than 0.5, all interaction objects at the moment are controlled and processed using real-time data interaction mode, and when the proportion of the number of interaction objects in real-time data interaction processing at the moment is not greater than 0.5, the control processing of the interaction mode of the interaction objects at the moment is not required.
[0084] In addition, it can be understood that if the proportion of the number of interaction objects using the preset interaction mode in the interaction objects of the meta universe digital exhibition hall is not greater than the preset proportion threshold, the daily average number of views of interaction objects using the preset interaction mode is further determined, and when the average of the daily average number of views of interaction objects using the preset interaction mode is less than the preset view number threshold, i.e., 10, as long as the proportion of the number of interaction objects in real-time data interaction processing at the moment is greater than 0.5, all interaction objects at the moment are controlled and processed using real-time data interaction mode, and when the proportion of the number of interaction objects in real-time data interaction processing at the moment is not greater than 0.5, the control processing of the interaction mode of the interaction objects at the moment is not required.
[0085] When the average value of the daily average number of browsed people of the interaction objects using the preset interaction mode is not less than the preset number of browsed people threshold, i.e. 10, as long as the proportion of the number of the interaction objects in real-time data interaction processing in the time point is greater than 0.7, all the interaction objects in the time point are controlled and processed by using the real-time data interaction mode, and when the proportion of the number of the interaction objects in real-time data interaction processing in the time point is not greater than 0.7, the control processing of the interaction mode of the interaction objects in the time point is not needed.
[0086] Further, when the number of the preset mode interaction objects meets the requirement and the number of the non-interaction exhibits is not greater than the preset exhibit number threshold, as long as the proportion of the number of the interaction objects in real-time data interaction processing in the time point is greater than 0.7, all the interaction objects in the time point are controlled and processed by using the real-time data interaction mode, and when the proportion of the number of the interaction objects in real-time data interaction processing in the time point is not greater than 0.7, the control processing of the interaction mode of the interaction objects in the time point is not needed.
[0087] Optionally, the method for determining the control scheme of the data interaction mode of the interaction objects in the user browsing process comprises the following steps:
[0088] Based on the data interaction mode of the interaction objects in the target browsing heat interval, the interaction objects using the preset interaction mode in the target browsing heat interval are determined and taken as the preset mode interaction objects;
[0089] Based on the non-constructed exhibit data in the target browsing heat interval, the exhibits in the target browsing heat interval which do not belong to the interaction objects are determined and taken as the non-interaction exhibits;
[0090] The monitoring deviation value is determined by using the average value of the proportion of the number of the non-interaction exhibits and the proportion of the number of the preset mode interaction objects, and the control scheme of the data interaction mode of the interaction objects in the user browsing process is determined based on the monitoring deviation value.
[0091] It should be noted that the proportion of the number of the non-interaction exhibits is the proportion of the number of the non-interaction exhibits in the non-interaction exhibits in the target browsing heat interval, and the proportion of the number of the preset mode interaction objects is the proportion of the number of the interaction objects in the target browsing heat interval.
[0092] It should be noted that when the monitoring deviation value is greater than the preset deviation threshold, in order to realize the evaluation of the running state of the server as soon as possible, and to realize the construction of the interaction mode of the non-interacted exhibits as soon as possible, therefore, at different moments, all the interaction objects are controlled to interact in real-time data interaction mode at the moment, so as to determine the real running state of the server.
[0093] In addition, it can be understood that when the monitoring deviation value is not greater than the preset deviation threshold, if the proportion of the number of interaction objects using the preset interaction mode in the interaction objects of the meta-universe digital exhibition hall is greater than the preset proportion threshold, at this time, in order to determine the running state of the server under the condition that all interaction objects are in real-time data interaction mode, therefore, as long as the number of interaction objects in real-time data interaction processing at the moment meets the requirements, all the interaction objects are controlled to interact in real-time data interaction mode at the moment.
[0094] In addition, it can be understood that if the proportion of the number of interaction objects using the preset interaction mode in the interaction objects of the meta-universe digital exhibition hall is not greater than the preset proportion threshold, at this time, the average daily browsing number of interaction objects using the preset interaction mode is further determined, and when the average value of the average daily browsing number of interaction objects using the preset interaction mode is less than the preset browsing number threshold, i.e. 10, as long as the proportion of the number of interaction objects in real-time data interaction processing at the moment is greater than 0.5, all the interaction objects are controlled to interact in real-time data interaction mode at the moment, and when the proportion of the number of interaction objects in real-time data interaction processing at the moment is not greater than 0.5, the control processing of the interaction mode of the interaction objects at the moment is not required.
[0095] When the average value of the average daily browsing number of interaction objects using the preset interaction mode is not less than the preset browsing number threshold, i.e. 10, as long as the proportion of the number of interaction objects in real-time data interaction processing at the moment is greater than 0.7, all the interaction objects are controlled to interact in real-time data interaction mode at the moment, and when the proportion of the number of interaction objects in real-time data interaction processing at the moment is not greater than 0.7, the control processing of the interaction mode of the interaction objects at the moment is not required.
[0096] It should be noted that when the real-time data interaction mode is used for interaction control processing at the moment, the real-time data interaction mode is used for interaction control processing within a preset time length in the future at the moment, specifically, the real-time data interaction mode is used for interaction control processing within 10 minutes in the future.
[0097] S3 determines the construction target of the interactive object in the unconstructed exhibit within the target browsing heat interval based on the running data of the server in each browsing population interval.
[0098] Further, the method for determining the construction target of the interactive object in the unconstructed exhibit within the target browsing heat interval is:
[0099] Based on the control scheme, determine the control time of real-time interaction mode under the control scheme, and take it as the control time;
[0100] Based on the running data of the server under the control scheme, determine the running load rate of the server in the control period corresponding to the control time;
[0101] Determine the construction target of the interactive object in the unconstructed exhibit within the target browsing heat interval by using the control time in each browsing population interval and the running load rate of the server in the control period corresponding to the control time.
[0102] It should be noted that the control period corresponding to the control time is the period within the preset time length in the future of the control time.
[0103] Specifically, the browsing population interval is divided according to the number of browsing personnel of the metaverse digital exhibition hall. In one possible embodiment, the number of browsing personnel of the metaverse digital exhibition hall is divided into intervals with equal intervals of 100 people.
[0104] It can be understood that the number of control times in each browsing population interval is obtained, and the browsing population interval whose number of control times does not meet the requirement, i.e. the browsing population interval whose number of control times is less than 40, when the proportion of browsing time corresponding to the browsing population interval whose number of control times does not meet the requirement does not meet the requirement, the real running state of the server does not need to be accurately determined, so it is determined that the unconstructed exhibit within the target browsing heat interval does not need to be constructed. Interactive object.
[0105] In one embodiment, if the total proportion of the browsing time corresponding to the browsing population interval whose number of control times does not meet the requirement is greater than 0.2, it is determined that the unconstructed exhibit within the target browsing heat interval does not need to be constructed. Interactive object.
[0106] In addition, when the number of control time points does not meet the requirement of the browsing time length proportion corresponding to the required browsing person interval, the average value of the server running load rate in the control period of the control time point in different browsing person intervals is determined as the load rate average value, and when the load rate average value in different browsing person intervals does not meet the requirement, i.e. greater than 0.9, it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed.
[0107] In addition, it can be understood that when the load rate average value in different browsing person intervals meets the requirement, the average value of the running load rate in the target browsing person interval is obtained, and when the average value of the running load rate in the target browsing person interval does not meet the requirement, i.e. greater than 0.9, it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed.
[0108] It should be noted that the target browsing person interval is an interval in which the number of browsing persons in the meta universe digital exhibition hall is greater than 0.1 in the proportion of the browsing time length in the historical browsing time length of the meta universe digital exhibition hall.
[0109] Specifically, when the average value of the running load rate in the target browsing person interval meets the requirement, the control time point data in the target browsing person interval is also determined, and when the number of control time points in different target browsing person intervals meets the requirement, the construction target of the interactive object of the unconstructed exhibit in the target browsing heat interval is determined according to the average value of the average value of the running load rate in different target browsing person intervals.
[0110] In addition, it can be understood that when the number of control time points in different target browsing person intervals does not meet the requirement, the real running state of the server cannot be effectively evaluated, and therefore it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed.
[0111] It should be noted that the construction target of the interactive object of the unconstructed exhibit in the target browsing heat interval is determined according to the average value of the average value of the running load rate in different target browsing person intervals, which specifically includes:
[0112] Based on the average value of the running load rate, the residual load rate interval of the server is determined, and based on the preset construction number of the interactive object corresponding to the residual load rate interval, the construction target of the interactive object of the unconstructed exhibit in the target browsing heat interval is determined.
[0113] It can be understood that the remaining load rate interval is determined according to the difference between 1 and the average of the average values of the operating load rates, the preset construction quantity is 5 when the remaining load rate interval is greater than 50%, the preset construction quantity is 3 when the remaining load rate interval is between 20% and 50% if the remaining load rate interval is not greater than 50%, and the preset construction quantity is 1 in other cases, and the unconstructed exhibits in the target browsing heat interval are selected as the construction target of the interactive object.
[0114] Optionally, the method for determining the construction target of the interactive object in the unconstructed exhibits in the target browsing heat interval is:
[0115] Based on the control scheme, the time for controlling the real-time interaction mode under the control scheme is determined as the control time;
[0116] Based on the operating data of the server under the control scheme, the operating load rate of the server in the control period corresponding to the control time is determined, and the average of the operating load rates in each browsing population interval is determined based on the operating load rate;
[0117] The construction target of the interactive object in the unconstructed exhibits in the target browsing heat interval is determined by using the operating load rate in the target browsing population interval, the control time data, and the average of the operating load rates in each browsing population interval.
[0118] It can be understood that when the average of the operating load rates in each browsing population interval is greater than the preset load rate threshold, it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed as interactive objects.
[0119] Further, when the average of the operating load rates in the target browsing population interval does not meet the requirement, i.e., greater than 0.9 or more, it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed as interactive objects.
[0120] Specifically, when the average of the operating load rates in each browsing population interval is not greater than the preset load rate threshold, when the number of control times in different target browsing population intervals meets the requirement, the construction target of the interactive object in the unconstructed exhibits in the target browsing heat interval is determined according to the average of the average values of the operating load rates in different target browsing population intervals.
[0121] In addition, it can be understood that when the number of control times in different target browsing population intervals does not meet the requirement, the real operating state of the server cannot be effectively evaluated, and therefore it is determined that the unconstructed exhibits in the target browsing heat interval do not need to be constructed as interactive objects.
[0122] Example 2
[0123] Secondly, such as Figure 4 As shown, the present invention provides a computer system comprising: a memory and a processor connected in communication, and a computer program stored in the memory and capable of running on the processor, wherein the processor executes the above-described intelligent interactive method for a metaverse digital exhibition hall when running the computer program.
[0124] The various embodiments in this specification are described in a progressive manner. Similar or identical parts between embodiments can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments. In particular, the embodiments of apparatus, devices, and non-volatile computer storage media are basically similar to the method embodiments, so the descriptions are relatively simple; relevant parts can be referred to the descriptions of the method embodiments.
[0125] The foregoing has described specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims may be performed in a different order than that shown in the embodiments and may still achieve the desired result. Furthermore, the processes depicted in the drawings do not necessarily require the specific or sequential order shown to achieve the desired result. In some embodiments, multitasking and parallel processing are possible or may be advantageous.
[0126] The above description is merely one or more embodiments of this specification and is not intended to limit this specification. Various modifications and variations can be made to the one or more embodiments of this specification by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of one or more embodiments of this specification should be included within the scope of the claims of this specification.
Claims
1. A method for intelligent interaction of a meta-universe digital exhibition hall, characterized in that, Specifically comprising: Based on the browsing data of the exhibits in the meta-universe digital exhibition hall, the exhibits are divided into a plurality of browsing heat intervals, the construction quantity of the interactive objects in the exhibits is determined according to the exhibit data of each browsing heat interval, and the interactive objects in the browsing heat interval are determined based on the construction quantity; According to the interactive object data in different browsing heat intervals, the data interaction mode of the interactive objects in the target browsing heat interval is determined, the control scheme of the data interaction mode of the interactive objects in the user browsing process is determined based on the data interaction mode of the interactive objects in the target browsing heat interval and the unconstructed exhibit data, and the running data of the server is determined by using the control scheme; The construction target of the interactive objects in the unconstructed exhibits in the target browsing heat interval is determined by using the running data of the server in each browsing population interval. The method for determining the construction quantity of the interactive objects in the exhibits comprises: Based on the exhibit data of each browsing heat interval, the daily average browsing population of the exhibits in each browsing heat interval is determined; The average value of the daily average browsing population of different exhibits is taken as the average browsing population; Based on the average browsing population and the total quantity of the exhibits in the meta-universe digital exhibition hall, the construction quantity of the interactive objects in the exhibits is determined; Based on the average browsing population and the total quantity of the exhibits in the meta-universe digital exhibition hall, the construction quantity of the interactive objects in the exhibits is determined, specifically comprising: Based on the average browsing population, a construction proportion is determined, and the construction quantity of the interactive objects in the exhibits is determined based on the product of the construction proportion and the total quantity of the exhibits in the meta-universe digital exhibition hall; The data interaction mode includes a real-time data interaction mode and an interactive mode combining the real-time data interaction mode and a preset interaction mode, and the preset interaction mode is to perform real-time interaction processing of the interactive objects when the number of simultaneous browsing personnel of the interactive objects meets the requirements; The method for determining the construction target of the interactive objects in the unconstructed exhibits in the target browsing heat interval comprises: Based on the control scheme, the time for controlling the real-time interaction mode under the control scheme is determined and taken as the control time; Based on the running data of the server under the control scheme, the running load rate of the server in the control period corresponding to the control time is determined; The construction target of the interactive objects in the unconstructed exhibits in the target browsing heat interval is determined by using the control time in each browsing population interval and the running load rate of the server in the control period corresponding to the control time.
2. The method for intelligent interaction of the meta-universe digital exhibition hall according to claim 1, characterized in that, The exhibits are divided into a plurality of browsing heat intervals, specifically comprising: According to the daily average browsing population of the exhibits, the exhibits are divided into the same browsing heat interval.
3. The method of claim 1, wherein the method is performed by the server. The exhibits with the daily average browsing population in the same browsing population interval are divided into the same browsing heat interval.
4. The method of claim 1, wherein the method is performed by the server. The method for determining the interactive objects in the browsing heat interval comprises: According to the quantity proportion of the exhibits in different browsing heat intervals, the construction quantity proportion of the exhibits in the browsing heat interval is determined; Determine the number of constructions of the interactive object in the browsing heat interval based on the product of the proportion of the number of constructions and the number of constructions. Determine the number of constructions of the interactive object in the browsing heat interval based on the product of the proportion of the number of constructions and the number of constructions.
5. The method of claim 4, wherein the method further comprises: The interactive object in the browsing heat interval is the exhibit with the most daily average browsing people in the number of constructions in the browsing heat interval.
6. The method of claim 1, wherein the method is a method of intelligent interaction of a meta-universe digital exhibition hall, characterized in that, The control period corresponding to the control time is a period within a preset time length in the future of the control time.
7. A computer system comprising: The memory and the processor connected in communication, and the computer program stored on the memory and capable of running on the processor, characterized in that the processor executes the computer program to perform the intelligent interaction method of the meta-universe digital exhibition hall according to any one of claims 1-6.
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