GB/T 36096-2018 in English
VALIDInformation technology—Learning, education and training—Virtual experiment component service interface
- Issued on:2018-03-15
- Implemented on:2018-10-01
- File Format:PDF
- Delivery:Via email within 1~3 business days
$233.00
《GB/T 36096-2018信息技术 学习、教育和培训 虚拟实验构件服务接口》由TC28(全国信息技术标准化技术委员会)归口,TC28SC36(全国信息技术标准化技术委员会教育技术分会)执行,主管部门为国家标准化管理委员会。
Introduction
In-depth interpretation of virtual experiment component service interface standardization
1. Background of standard formulation and analysis of technological evolution
The formulation of GB/T 36096-2018 "Virtual Experiment Component Service Interface for Information Technology Learning, Education and Training" is based on the current widespread application of information technology in the field of education, especially the growing demand for virtual experiment teaching. With the development of modular educational technology, virtual experiment systems require unified service interface specifications to achieve cross-platform compatibility and data interoperability.
2. Comparative Analysis of Standard Frameworks
| Module Number | Function Overview | Core Interface Definition | Interaction Relationship |
|---|---|---|---|
| Module 1 | Virtual Experiment Teaching Visualization and Component Modeling | - saveElement - deleteElement - getScene | Provide data support for Module 2, support component creation and scene management |
| Module 2 | Multi-domain Modeling and Resource Management | - convertMoFile - saveLogicalInfo | Responsible for cross-disciplinary component calling, supporting logical processing of experimental data |
| Module 3 | Virtual experiment guidance and management | - sendExperimentContent - showHelpInfo | Provide users with real-time guidance and experiment status monitoring |
| Module 4 | Virtual experiment portal platform | - saveExperimentConfig - orderSimulation | Integrate the functions of each module to realize data exchange and task scheduling |
3. Implementation Suggestions
Case Study: Modular Implementation of Virtual Experiment Platform
- System Integration: Adopt a modular architecture to ensure the independent development and deployment of each functional module. For example, module 1 is responsible for component visualization modeling, and module 4 is used as a unified portal to coordinate task scheduling.
- Data interaction:It is recommended to use the SOAP protocol for service calls to ensure the security and reliability of data transmission. In particular, in the interface definition, the structure of the XML file must be strictly implemented in accordance with the standard specifications.
- Performance optimization:In view of the limitations of network bandwidth and rendering speed, it is recommended to implement an asynchronous communication mechanism between module 1 and module 4, such as using a message queue or event-driven mode.
4. Analysis of the advantages of standard application
The formulation of the GB/T 36096-2018 standard provides a unified technical specification for the development of virtual experiment systems, which has the following advantages:
- Cross-platform compatibility:Through standardized interface definition and modular design, it supports the interconnection and interoperability between systems of different manufacturers.
- Quick deployment:Each functional module is independently developed and deployed, which is convenient for educational institutions to flexibly configure the experimental environment according to their needs.
- Efficient maintenance: Unified service interface specifications simplify system upgrades and troubleshooting.

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