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domestic virtual experiment data exchange virtual experiment component data metadata virtual experiment scene data metadata virtual experiment virtual experiment system ground gear ammonium chloride-ammonium acetate exchange method hot-rolled t section steel
GB/T 36349-2018 in English

GB/T 36349-2018 in English

VALID

Information technology--Learning, education and training--Virtual experiment--Data exchange

  • Issued on:2018-06-07
  • Implemented on:2019-01-01
  • File Format:PDF
  • Delivery:Via email within 5 business days
Price(USD): $250.00
$243.00
Standard No: GB/T 36349-2018
Document status: VALID
Title in English: Information technology--Learning, education and training--Virtual experiment--Data exchange
Title in Chinese: 信息技术 学习、教育和培训 虚拟实验 数据交换
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 5 business days
Issued on: 2018-06-07
Implemented on: 2019-01-01
ICS Classification: 35.240.99-IT applications in other fields
Chinese Classification: L67-Computer application
Professional Classification: GB-National Standard
Related Keywords: domestic virtual experiment data exchange
virtual experiment component data metadata
virtual experiment scene data metadata
virtual experiment
virtual experiment system
Related Topics: p3 lab training
Experimental Data Data
Laboratory Inspection Training
Experimental technology training
Number of experiments
Information Technology Learning, Education and Training Learning Management System
Experimental education and training
dummy experiment period
Information Technology Learning, Education and Training Virtual Experiment Data Exchange
Hammer experiment data
laboratory training
In-lab training
Years of Lab Training
GBT36349
GB/T 36349-2018

《GB/T 36349-2018信息技术 学习、教育和培训 虚拟实验 数据交换》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

Interpretation of the National Standard of the People's Republic of China GB/T 36349—2018

Background and Significance of Standard Formulation

As an important part of educational technology, the virtual experiment system has an increasingly urgent need for standardization. The formulation of GB/T 36349—2018 fills the gap in the field of domestic virtual experiment data exchange and provides a unified technical specification for data sharing and interoperability between different modules.

Comparison of standard frameworks

Standard DimensionsGB/T 36349—2018Comparison Standards
Metadata SpecificationsDetailed definition of metadata formats for virtual experiment components, scenarios, and results-
Data Exchange FormatAchieve standardized data exchange based on XMLPartially rely on other standards (such as GB/T 36097)
InteroperabilitySupport data sharing and calling between different modulesOnly standardize the functional interface of a single module

Interpretation of core content

1. Virtual experiment component data metadata format

One of the cores of GB/T 36349-2018 is the metadata specification of virtual experiment components. The following table compares the similarities and differences with relevant standards in detail:

Field nameData typeLength limit
Component IDinteger-
Namestring50 bytes
Function descriptionstring1000 bytes
Version numberstring20 bytes

2. Virtual experiment scene data metadata format

The standardization of virtual experiment scenes involves multiple dimensions, including component lists, connection relationships, and run settings. The table comparison can help you understand the specifications more clearly:

Field nameData typeApplication scenario
Experiment scenario IDintegerUniquely identify the scenario
Connection list-Describe the relationship between components
Running timeintegerDuration of virtual experiment

Implementation Recommendations

To ensure the effective implementation of the standard, it is recommended:

  • System integrator: Strictly follow the metadata format and interface specifications during the development process.
  • Educational institutions: Incorporate the upgrade of the virtual experiment platform into the information construction plan.
  • Technical service providers: Provide standard data conversion services to promote the migration of existing systems.

Case analysis: Implementation of data exchange on virtual experiment platform

When a certain university introduced a virtual physics laboratory system, it achieved seamless connection between multiple modules by following the GB/T 36349-2018 standard. The following is a typical application case:

Background: The Department of Physics plans to upgrade the experimental teaching system.

Implementation: Adopt data exchange standards that comply with GB/T 36349 to build a unified virtual experiment platform.

Achievements: Resource sharing between different subject modules has been achieved, improving the efficiency of experimental teaching.

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