A virtual simulation laboratory building processing method and system for teaching
By monitoring the combined use data and verification deviations of simulation equipment in the virtual simulation laboratory, an active verification strategy for newly added equipment was determined. This solved the compatibility and efficiency issues during simulation equipment updates, improved the verification efficiency of simulation verification processing, enabled timely and effective verification of equipment, and reduced resource waste.
Patent Information
- Application Number
- CN202511574591.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2045-10-31
AI Technical Summary
The simulation equipment in existing virtual simulation laboratories needs to be updated regularly, which makes it difficult to dynamically adjust the simulation verification and processing strategies of newly added simulation equipment, affecting adaptability and efficiency.
By monitoring the combined use data and verification deviations of simulation equipment, we determine the proactive verification strategy for newly added equipment. Based on the verification strategy and updated data, we determine whether comprehensive verification processing is needed and optimize the simulation verification process.
This improved the efficiency of simulation verification, reduced system resource waste, ensured timely and effective verification of newly added equipment, and enhanced the flexibility and efficiency of verification processing.
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Figure CN121052013B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of data processing, and particularly relates to a virtual simulation laboratory building processing method and system for teaching. BACKGROUND
[0002] In order to improve the interest and authenticity of learning, and also to improve the convenience of experiments, in the invention patent application CN202410645908.1 "Biological scientific research training system and equipment based on virtual laboratory", the experimental flow is obtained by receiving the experimental element selection instruction and the experimental building instruction of the user and executing the building interface, and the training result is obtained by using the experimental data of the virtual experimental flow, so that the convenience of the student's experiment is greatly improved, but the following technical problems exist:
[0003] In order to improve the authenticity and timeliness of the virtual simulation laboratory, the simulation devices in the existing virtual simulation laboratory, such as various types of components, often need to be updated regularly, so that how to dynamically adjust the simulation verification processing strategy of the newly added simulation device and the simulation device to ensure the adaptability of the newly added simulation device becomes a technical problem to be solved.
[0004] Therefore, a virtual simulation laboratory building processing method and system for teaching are urgently needed. SUMMARY
[0005] To achieve the purpose of the present application, the present application adopts the following technical solutions:
[0006] Specifically, the present application provides a virtual simulation laboratory building processing method for teaching, which specifically comprises:
[0007] S1, based on the simulation devices in the virtual simulation laboratory, according to the joint use data of the simulation devices, the simulation verification processing strategy of the simulation devices after the simulation devices are updated is determined, the verification processing of the newly added simulation devices is carried out based on the simulation verification processing strategy, and according to the verification processing data, the verification deviation simulation device of the newly added simulation devices is determined;
[0008] S2, according to the monitoring result of the virtual simulation data of the verification deviation simulation device, the active verification strategy of the newly added simulation device when the verification deviation simulation device is in the virtual simulation processing is determined, and according to the active verification strategy and the update data of the newly added simulation device, it is determined whether the newly added simulation device needs to be verified comprehensively.
[0009] The present application has the following advantages:
[0010] According to the monitoring result of the virtual simulation data of the verification deviation simulation device, the active verification strategy of the newly added simulation device when the verification deviation simulation device performs virtual simulation processing is determined, so that the determination of the active verification strategy of the newly added simulation device when the verification deviation simulation device performs virtual simulation processing is realized from the number of verification deviation devices and the frequency of virtual simulation processing of the verification deviation simulation device, so that the simulation verification processing of the newly added simulation device is actively performed when the verification deviation simulation device performs virtual simulation processing, the efficiency of the verification processing is improved, and the waste of system server resources is reduced as much as possible.
[0011] According to the active verification strategy and the update data of the newly added simulation device, it is determined whether the newly added simulation device needs to be comprehensively verified, so as to avoid the technical problem that the simulation verification processing of the newly added simulation device in the future is slow due to the failure to perform comprehensive verification in the case that the number of newly added simulation devices in the future is large, and the active verification strategy of the newly added simulation device is combined, and the newly added devices with different verification processing efficiency are further considered, so that the newly added devices with low verification processing efficiency can be more timely and effectively verified in the face of the same number of simulation devices without simulation verification processing, and the influence of the simulation verification processing of the newly added simulation devices in the future is further reduced.
[0012] Further, the simulation device is a device for performing simulation test processing in the virtual simulation laboratory.
[0013] Further, the joint use data of the simulation device is determined according to the simultaneous use data of the simulation device and the simulation device combination in the same simulation test.
[0014] Further, the method for determining the simulation verification processing strategy of the simulation device is:
[0015] Determine the simultaneous use data of the simulation device and the simulation device combination in the same simulation test according to the joint use data of the simulation device;
[0016] Determine the number of simultaneous uses of the simulation device and the simulation device combination based on the simultaneous use data;
[0017] Determine the simulation verification processing strategy of the simulation device according to the number of simultaneous uses of the simulation device and the simulation device combination.
[0018] Further, determining whether the newly added simulation device needs to be comprehensively verified, specifically including:
[0019] Determine the active verification strategy of the new added simulation device based on the active verification strategy of the simulation device;
[0020] Determine the coincident simulation device of the new added simulation device in different verification deviation simulation devices according to the coincidence of the verification deviation simulation devices of the new added simulation device, and take the coincident simulation device as the associated simulation device;
[0021] Determine whether the new added simulation device needs to be subjected to comprehensive verification processing according to the update data of the new added simulation device, the active verification strategy of the new added simulation device, and the associated simulation device of the new added simulation device in different verification deviation simulation devices.
[0022] 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 virtual simulation laboratory building processing method for teaching.
[0023] Other features and advantages will be set forth in the following description of the application, and in part will be apparent from the description and the accompanying drawings, or can be learned by practice of the application as claimed in the claims.
[0024] In order to make the above-mentioned objects, features and advantages of the present application more obvious and easy to understand, the following preferred embodiments are specifically described in detail below, and the accompanying drawings are described as follows. BRIEF DESCRIPTION OF DRAWINGS
[0025] The above-mentioned and other features and advantages of the present application will become more apparent by describing in detail example embodiments thereof with reference to the attached drawings.
[0026] Figure 1 A flowchart of a virtual simulation laboratory building processing method for teaching;
[0027] Figure 2 A flowchart of a method for determining a simulation verification processing strategy of a simulation device;
[0028] Figure 3 A flowchart of a method for determining a verification deviation simulation device of a new added simulation device;
[0029] Figure 4 A flowchart of a method for determining an active verification strategy of a new added simulation device;
[0030] Figure 5 A framework diagram of a computer system. DETAILED DESCRIPTION
[0031] To enable those skilled in the art to better understand the technical solutions in this specification, the technical solutions in the embodiments of this specification will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this specification, and not all embodiments. Based on the embodiments of this specification, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this specification.
[0032] In this application, when updating the simulation equipment in the virtual simulation laboratory, the joint verification method of the updated simulation equipment and the existing simulation equipment in different other simulation equipment is determined based on the joint usage data of the existing simulation equipment and other simulation equipment. This reduces the technical problem of excessive server pressure caused by the verification processing in the virtual simulation laboratory, and enables timely and effective verification processing to meet the user's simulation needs.
[0033] Example 1
[0034] like Figure 1 As shown, this application provides a method for constructing a virtual simulation laboratory for teaching, specifically including:
[0035] S1 is based on the simulation equipment in the virtual simulation laboratory. Based on the joint use data of the simulation equipment, the simulation equipment is updated, the simulation verification processing strategy of the simulation equipment is determined, the newly added simulation equipment is verified based on the simulation verification processing strategy, and the verification deviation simulation equipment of the newly added simulation equipment is determined based on the verification processing data.
[0036] Furthermore, the simulation equipment is the equipment used for simulation experiments in the virtual simulation laboratory.
[0037] Furthermore, the combined use data of the simulation devices is determined based on the simultaneous use data of the simulation devices in the same simulation experiment.
[0038] Specifically, such as Figure 2 As shown, the method for determining the simulation verification processing strategy of the simulation equipment is as follows:
[0039] Based on the combined use data of the simulation devices, determine the simultaneous use data of the simulation devices and the simulation devices combined in the same simulation experiment;
[0040] Based on the simultaneous use data, determine the number of times the simulation device and the combination of simulation devices can be used simultaneously.
[0041] Determine the simulation verification processing strategy of the simulation device according to the use times of the simulation device and the simultaneous use times of the simulation device and the simulation device combination.
[0042] Specifically, when the use times of the simulation device are greater than a preset use times threshold, it is determined that the simulation device needs to perform simulation verification processing together with the newly added simulation device, at this time, according to a first use times threshold, the simulation verification processing strategy of the simulation device is determined, specifically, only when the simultaneous use times of the simulation device and the simulation device combination are greater than the first use times threshold, it is determined that the simulation device, the simulation device combination and the newly added simulation device need to perform simulation verification processing together.
[0043] Specifically, when the use times of the simulation device are not greater than a preset use times threshold, it is determined that the simulation device does not need to perform simulation verification processing together with the newly added simulation device, at this time, according to a second use times threshold, the simulation verification processing strategy of the simulation device is determined, specifically, only when the simultaneous use times of the simulation device and the simulation device combination are greater than the second use times threshold, it is determined that the simulation device, the simulation device combination and the newly added simulation device need to perform simulation verification processing together.
[0044] It should be noted that the first use times threshold is less than the second use times threshold.
[0045] Specifically, as shown in Figure 3 The method for determining the verification deviation simulation device of the newly added simulation device comprises the following steps:
[0046] According to the verification processing data, determine the simulation device combination of the simulation device and the newly added simulation device for performing simulation verification processing;
[0047] Determine the simulation device combination that exists simultaneous use with the simulation device based on the simultaneous use data of the simulation device and the simulation device combination;
[0048] According to the simulation device combination for performing simulation verification processing and the simulation device combination for simultaneous use, determine whether the simulation device is a verification deviation simulation device.
[0049] It can be understood that, according to the simulation device combination for performing simulation verification processing and the simulation device combination for simultaneous use, determining whether the simulation device is a verification deviation simulation device specifically comprises:
[0050] Determine a verification matching value based on the proportion of the simulation device combination for performing simulation verification processing in the simulation device combination for simultaneous use;
[0051] determine whether the simulation device is a verification bias simulation device based on the verification matching value.
[0052] It should be noted that when the verification matching value is greater than a preset matching threshold, for example, greater than 0.9, it is determined that the simulation device does not belong to a verification bias simulation device.
[0053] S2 determines the active verification strategy of the newly added simulation device when the verification bias simulation device performs virtual simulation processing according to the monitoring result of the virtual simulation data of the verification bias simulation device, and determines whether the newly added simulation device needs to perform comprehensive verification processing according to the active verification strategy and the update data of the newly added simulation device.
[0054] Specifically, as shown in the method for determining the active verification strategy of the newly added simulation device is: Figure 4
[0055] determine the combination of the verification bias simulation device and the simulation device that has not performed simulation verification processing as an unverified combination based on the monitoring result of the virtual simulation data of the verification bias simulation device.
[0056] determine the coincidence data of the simulation devices in different unverified combinations based on the coincidence of the simulation devices in the unverified combination, and determine the device coincidence factor of the verification bias simulation device based on the average value of the number of coincidences of the simulation devices in different unverified combinations in the verification bias simulation device.
[0057] determine the active verification strategy of the newly added simulation device based on the verification bias simulation device data and the device coincidence factor of the verification bias simulation device.
[0058] It can be understood that when the number of verification bias simulation devices of the newly added device is not within the preset device quantity interval, the active verification strategy of the newly added simulation device is directly determined to be the first preset verification strategy at this time because the number of verification bias simulation devices of the newly added device is large.
[0059] Further, when the number of verification bias simulation devices of the newly added device is not within the preset device quantity interval, the verification bias values of different verification bias simulation devices are determined based on the unverified combination data of different verification bias simulation devices, and the verification demand value is determined based on the verification bias values and the device coincidence factor of different verification bias simulation devices. When the verification demand value is greater than a preset demand threshold, the active verification strategy of the newly added simulation device is directly determined to be the first preset verification strategy.
[0060] In a possible embodiment, the verification demand value is determined according to a sum of ratios of verification bias values of different verification bias simulation devices to device coincidence factors.
[0061] It can be further understood that when the verification demand value is not greater than a preset demand threshold, the active verification strategy of the newly added simulation device is directly determined as the second preset verification strategy.
[0062] In a possible embodiment, the device coincidence factor is determined according to a product of an average of coincidence numbers of simulation devices in different unverified combinations of the verification bias simulation device and a preset proportion factor, and in a possible embodiment, the preset proportion factor is 0.1.
[0063] Further, it is determined whether the newly added simulation device needs to be subjected to comprehensive verification processing, and the determination specifically includes:
[0064] Based on the active verification strategy, the active verification strategy of different newly added simulation devices is determined.
[0065] According to coincidence of the newly added simulation device in different verification bias simulation devices, the newly added simulation device that coincides in different verification bias simulation devices is determined as an associated simulation device, and a coincidence influence factor of the newly added simulation device is determined according to the associated simulation device in different verification bias simulation devices.
[0066] According to the update data of the newly added simulation device, the active verification strategy of the newly added simulation device, and the coincidence influence factor of the newly added simulation device, it is determined whether the newly added simulation device needs to be subjected to comprehensive verification processing.
[0067] It should be noted that when the number of newly added simulation devices in a future preset time period is not less than a preset device number, in order to avoid frequent update processing of simulation devices in the future, the newly added simulation device coincides with the future newly added simulation device in simulation verification processing, and the reliability of simulation verification processing of the future newly added simulation device is improved, it is determined that all the newly added simulation devices need to be subjected to comprehensive verification processing.
[0068] Further, when the number of newly added simulation devices in a future preset time period is less than a preset device number, when the active verification strategy of the newly added simulation device is the second preset verification strategy, it is determined whether the newly added simulation device needs to be subjected to comprehensive verification processing according to unverified combination data of the newly added simulation device.
[0069] Additionally, it should be noted that when the active verification strategy of the newly added simulation device is the first preset verification strategy, if the overlap influence factor of the newly added simulation device is greater than the preset influence factor threshold, then it is determined whether the newly added simulation device needs to undergo comprehensive verification processing based on the unverified combination data of the newly added simulation device.
[0070] In one possible embodiment, the overlap influence factor of the newly added simulation device is determined based on the ratio of the average number of associated simulation devices in different verification deviation simulation devices to the number of reference devices. In one possible embodiment, the number of reference devices is 20.
[0071] It is also understood that when the overlap influence factor of the newly added simulation equipment is not greater than the preset influence factor threshold, it is determined that the newly added simulation equipment does not need to undergo comprehensive verification processing.
[0072] Example 2
[0073] Secondly, such as Figure 5 As shown, the present invention provides a computer system, including: 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 method for setting up a virtual simulation laboratory for teaching when running the computer program.
[0074] Optionally, the method for determining the simulation verification processing strategy of the simulation device is as follows:
[0075] Based on the combined use data of the simulation devices, determine the simultaneous use data of the simulation devices and the simulation devices combined in the same simulation experiment;
[0076] Based on the simultaneous use data, determine the number of times the simulation device and the combination of simulation devices can be used simultaneously.
[0077] The simulation verification processing strategy of the simulation equipment is determined based on the number of times the simulation equipment and the combination of simulation equipment are used simultaneously.
[0078] It is understood that the simulation verification processing strategy for the simulation equipment is determined based on the number of times the simulation equipment and its combination are used simultaneously, specifically including:
[0079] When the newly added simulation device will not be used simultaneously with the existing simulation device, it is determined that the existing simulation device does not need to undergo simulation verification processing together with the newly added simulation device.
[0080] If the new simulation device is to be used simultaneously with the simulation device, and if the number of times of simultaneous use of the simulation device and the simulation device combination meets the requirement, that is, if the simulation device and the simulation device combination are frequently used, it is determined that the simulation device, the simulation device combination, and the new simulation device are to be used together for simulation verification processing.
[0081] It can also be understood that if the number of times of simultaneous use of the simulation device and the simulation device combination does not meet the requirement, for example, the number of times of simultaneous use is less than 20, it is determined that the simulation device, the simulation device combination, and the new simulation device do not need to be used together for simulation verification processing.
[0082] Further, if the simulation device and the simulation device combination and the new simulation device are used together for simulation verification processing, and the number of simulation device combinations is within a preset number range, for example, greater than 10, the simulation device does not need to be used together with the new simulation device for simulation verification processing, and if it is not within the preset number range, it is determined that the simulation device needs to be used together with the new simulation device for simulation verification processing.
[0083] It should be noted that the simulation device combination is a simulation device combination generated by freely combining simulation devices other than the simulation device and the new simulation device.
[0084] Embodiment 3
[0085] Further, the method for determining the active verification strategy of the new simulation device is:
[0086] Based on the monitoring result of the virtual simulation data of the verification deviation simulation device, the simulation device combination of the verification deviation simulation device and the new simulation device which does not perform simulation verification processing is determined, and it is taken as an unverified combination.
[0087] Based on the coincidence of the simulation devices in the unverified combination, the coincidence data of the simulation devices in different unverified combinations is determined.
[0088] Based on the coincidence data of the simulation devices in different unverified combinations in the verification deviation simulation device and the verification deviation simulation device data, the active verification strategy of the new simulation device is determined.
[0089] It can be understood that when the number of verification deviation simulation devices of the new device is not within a preset device number range, at this time, due to the large number of verification deviation simulation devices of the new device, in a possible embodiment, when the number of verification deviation simulation devices of the new device is greater than 20, the active verification strategy of the new simulation device is directly determined as the first preset verification strategy.
[0090] Further, when the number of the newly added device is within the preset number interval, the unverified combination data of the different verification deviation simulation devices is determined, and the verification deviation values of the different verification deviation simulation devices are determined according to the unverified combination data. When the sum of the verification deviation values of the different verification deviation simulation devices does not meet the requirement, that is, when the sum of the verification deviation values of the different verification deviation simulation devices is greater than the preset deviation threshold, because the number of the simulation device combination that has not been verified is large at this time, the active verification strategy of the newly added simulation device is directly determined as the first preset verification strategy.
[0091] It should be noted that the verification deviation value is the difference between 1 and the verification matching value.
[0092] In addition, it can be understood that when the sum of the verification deviation values of the different verification deviation simulation devices meets the requirement, if the number of the verification deviation simulation devices is within the preset number interval, for example, the number of the verification deviation simulation devices is less than 3, the active verification strategy of the newly added simulation device is determined as the second preset verification strategy.
[0093] Further, if the number of the verification deviation simulation devices is not within the preset number interval, the average coincidence number of the different unverified combination simulation devices is determined based on the coincidence data of the different unverified combination simulation devices in the different verification deviation simulation devices. If the average value of the average coincidence number of the different unverified combination simulation devices is less than the preset coincidence number threshold, for example, less than 2, because the coincidence degree of the different unverified combination simulation devices is low at this time, the active verification strategy of the newly added simulation device is determined as the first preset verification strategy.
[0094] In addition, it can be understood that if the average value of the average coincidence number of the different unverified combination simulation devices is not less than the preset coincidence number threshold, because the coincidence degree of the different unverified combination simulation devices is high at this time, the active verification strategy of the newly added simulation device is determined as the second preset verification strategy.
[0095] It should be noted that the first preset verification strategy is that as long as the simulation devices currently performing simulation test processing are in the unverified combination of the newly added simulation device, the simulation devices currently performing simulation test processing perform simulation verification processing of the newly added simulation device in the unverified combination in which the simulation devices currently performing simulation test processing all fall, that is, the simulation verification processing of the newly added simulation device is performed together with the unverified combination, the simulation devices corresponding to the unverified combination, and the newly added simulation device.
[0096] Further, the second preset verification processing strategy is that if all the simulation devices currently performing simulation test processing are in the unverified combination of the newly added simulation device, and the difference between the number of simulation devices in the unverified combination and the number of simulation devices currently performing simulation test processing meets the requirement, for example, is not greater than 2, then the simulation verification processing is performed on the unverified combination, the simulation devices corresponding to the unverified combination, and the newly added simulation device together.
[0097] Embodiment 4
[0098] Further, determining whether the newly added simulation device needs to perform comprehensive verification processing, specifically including:
[0099] Based on the active verification strategy, different active verification strategies of the newly added simulation device are performed.
[0100] According to the coincidence of the verification bias simulation devices of the different newly added simulation devices, the coincident newly added simulation devices in the different verification bias simulation devices of the newly added simulation device are determined, and the coincident newly added simulation devices are taken as the associated simulation devices.
[0101] According to the update data of the newly added simulation device, the active verification strategy of the newly added simulation device, and the associated simulation devices of the newly added simulation device in the different verification bias simulation devices, it is determined whether the newly added simulation device needs to perform comprehensive verification processing.
[0102] It should be noted that when the number of newly added simulation devices in a future preset time period is not less than a preset device number, for example, the number of newly added simulation devices in a future week is not less than 10, then at this time, since the number of future newly added simulation devices is large, in order to avoid frequent update processing of simulation devices in the later period, the newly added simulation device and the future newly added simulation device coincide in the simulation verification processing, and the reliability of the simulation verification processing of the future newly added simulation device is improved, it is determined that all the newly added simulation devices need to perform comprehensive verification processing.
[0103] It can be understood that when comprehensive verification processing is needed, simulation verification processing is performed in all unverified combinations.
[0104] Further, when the number of newly added simulation devices in a future preset time period is less than a preset device number, and the active verification strategy of the newly added simulation device is a second preset verification strategy, then according to the unverified combination data of the newly added simulation device, it is determined whether the newly added simulation device needs to perform comprehensive verification processing.
[0105] In a possible embodiment, when the number of unverified combinations of the newly added simulation device is within a preset range, for example, less than 50, it is determined that the newly added simulation device needs to be subjected to a comprehensive verification process.
[0106] In addition, it can be understood that when the active verification strategy of the newly added simulation device is the first preset verification strategy, it is determined that the newly added simulation device is associated with a simulation device in different verification bias simulation devices, and if the associated simulation device data does not meet the requirement, that is, the number of associated simulation devices of the newly added simulation device is large, for example, the number of associated simulation devices is not less than 3, it is determined according to the unverified combination data of the newly added simulation device whether the newly added simulation device needs to be subjected to a comprehensive verification process.
[0107] Further, when the associated simulation device data meets the requirement, it is determined that the newly added simulation device does not need a comprehensive verification process.
[0108] Each of the embodiments in the specification is described in a progressive manner, and the same and similar parts of each embodiment can be referred to each other. Each embodiment mainly describes the difference from other embodiments. In particular, for the device, equipment, and non-volatile computer storage medium embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the related parts can be referred to the part of the method embodiment.
[0109] The above describes specific embodiments of the specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different than the order in the embodiments and still achieve the desired result. In addition, the processes depicted in the figures do not necessarily require the particular order shown or sequential order to achieve the desired results. In some embodiments, multitasking and parallel processing can be advantageous or possible.
[0110] The above only describes one or more embodiments of the specification and does not limit the specification. One or more embodiments of the specification can have various modifications and changes for those skilled in the art. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of one or more embodiments of the specification shall be included in the scope of the claims of the specification.
Claims
1. A virtual simulation laboratory building processing method for teaching, characterized in that, Specifically comprising: Based on the simulation equipment in the virtual simulation laboratory, according to the joint use data of the simulation equipment, the simulation verification processing strategy of the simulation equipment is determined after the simulation equipment is updated, the verification processing of the newly added simulation equipment is carried out based on the simulation verification processing strategy, and the verification deviation simulation equipment of the newly added simulation equipment is determined according to the verification processing data; According to the monitoring result of the virtual simulation data of the verification deviation simulation equipment, the active verification strategy of the newly added simulation equipment is determined when the verification deviation simulation equipment carries out virtual simulation processing, and whether the newly added simulation equipment needs to carry out comprehensive verification processing is determined according to the active verification strategy and the update data of the newly added simulation equipment; The method for determining the simulation verification processing strategy of the simulation equipment is: The simultaneous use data of the simulation equipment and the simulation equipment combination in the same simulation test is determined according to the joint use data of the simulation equipment; Based on the simultaneous use data, the simultaneous use times of the simulation equipment and the simulation equipment combination are determined; The simulation verification processing strategy of the simulation equipment is determined according to the simultaneous use times of the simulation equipment and the simulation equipment combination; Determine whether the newly added simulation equipment needs to carry out comprehensive verification processing, specifically including: Based on the active verification strategy, the active verification strategy of different newly added simulation equipment is carried out; According to the coincidence of the verification deviation simulation equipment of different newly added simulation equipment, the coincident newly added simulation equipment of the newly added simulation equipment in different verification deviation simulation equipment is determined, and it is taken as the associated simulation equipment; According to the update data of the newly added simulation equipment, the active verification strategy of the newly added simulation equipment and the associated simulation equipment of the newly added simulation equipment in different verification deviation simulation equipment, whether the newly added simulation equipment needs to carry out comprehensive verification processing is determined.
2. The virtual simulation laboratory building process for teaching according to claim 1, wherein, The simulation equipment is the equipment for carrying out simulation test processing in the virtual simulation laboratory.
3. The method of claim 1, wherein the virtual simulation laboratory building process for teaching is characterized by, The joint use data of the simulation equipment is determined according to the simultaneous use data of the simulation equipment and the simulation equipment combination in the same simulation test.
4. The virtual simulation laboratory building process for teaching of claim 1, wherein, The simulation verification processing strategy of the simulation equipment is determined according to the simultaneous use times of the simulation equipment and the simulation equipment combination, specifically including: When the newly added simulation equipment and the simulation equipment cannot be used at the same time, it is determined that the simulation equipment does not need to carry out simulation verification processing with the newly added simulation equipment.
5. The method of claim 1, wherein the virtual simulation laboratory building process for education is characterized by, The simulation equipment combination is the simulation equipment combination generated by free combination of simulation equipment except the simulation equipment and the newly added simulation equipment.
6. The method of claim 1, wherein the virtual simulation laboratory building process for education is characterized by, The method for determining the verification deviation simulation equipment of the newly added simulation equipment is: According to the verification processing data, the simulation equipment combination of the simulation equipment and the newly added simulation equipment for simulation verification processing is determined; Based on the simultaneous use data of the simulation equipment and the simulation equipment combination, the simulation equipment combination which exists simultaneous use with the simulation equipment is determined; According to the simulation device combination used for the simulation verification processing and the simulation device combination used simultaneously, it is determined whether the simulation device is a verification-biased simulation device.
7. The virtual simulation laboratory building process for teaching according to claim 6, wherein, According to the simulation device combination used for the simulation verification processing and the simulation device combination used simultaneously, it is determined whether the simulation device is a verification-biased simulation device, specifically including: A verification matching value is determined based on the proportion of the simulation device combination used for the simulation verification processing in the simulation device combination used simultaneously; Based on the verification matching value, it is determined whether the simulation device is a verification-biased simulation device.
8. 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 virtual simulation laboratory building processing method for teaching according to any one of claims 1-7.
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