虚拟天文台

  • 网络virtual observatory
虚拟天文台虚拟天文台
  1. 我们已经开始了2.4m望远镜远程观测系统的开发工作,以后将逐步完善各个子系统,并将其融合到虚拟天文台中。

    Development of the remote observing system for the 2.4m telescope is underway . Meanwhile , the remote observation will be merged into virtual observatory .

  2. 虚拟天文台教育门户建设构想

    Astronomy Education Resource Gateway Design Based on the Virtual Observatory

  3. 集成网格服务的中国虚拟天文台工作流系统研究与设计

    Workflow Model of China Virtual Observatory Based on Data Grid

  4. 中国虚拟天文台研发策略与重点

    Research and Development Strategy and Focuses of Chinese Virtual Observatory

  5. 现代天文教育和研究平台&虚拟天文台

    A platform for modern astronomical research and EDUCATION-VIRTUAL Astronomical Observatory

  6. 虚拟天文台的科学意义

    Lanzhou observatory station The Science of the Virtual Observatory

  7. 虚拟天文台:科学、工具及应用

    Science , Tools and Applications of the Virtual Observatory

  8. 虚拟天文台天文教育平台研究

    The Study of Astronomical Education Platform about Virtual Observatory

  9. 虚拟天文台建设刍议

    A Tentative Suggestion of Building the Virtual Observatory

  10. 中国虚拟天文台数据访问服务

    Data Access Service of China - VO

  11. 虚拟天文台中星表数据访问网格服务的设计与实现

    Design and Implementation of Star Catalog Data Accessing Grid Service of Virtual Observatory of China

  12. 中国虚拟天文台软件集成

    Integrating Legacy Software Toolkits into China-VO System

  13. 中国虚拟天文台可视化服务

    Visualization Service of Chinese Virtual Observatory

  14. 虚拟天文台的技术进展

    Technology Progress of Virtual Observatory

  15. 我们对现有中国虚拟天文台体系结构底层进行设计与实现,并完成了其核心部分-天文数据结点。

    Moreover the important part of the China-VO , named as the astronomical Sky Node is implemented .

  16. 中国虚拟天文台体系结构

    Architecture of Chinese Virtual Observatory

  17. 重点讨论了虚拟天文台建设的重要性,以及如何利用虚拟天文台这一平台进行天文教育和研究的设想。

    How to use a virtual observatory in public astronomy education and research is stressed in the paper .

  18. 根据天文数据的广域分布、异构性以及共享性的特点,将网格技术应用于虚拟天文台项目中,并与工作流技术相结合,提出了集成网格技术的虚拟天文台的工作流体系结构。

    Grid technique and workflow technique are applied to Virtual Observatory because of the trait of the numerous distributed , heterogeneous and shared data of Virtual Observatory .

  19. 中国虚拟天文台项目基于目前的网格技术,设计和实现网格环境下天文数据的查询访问服务,并为客户应用提供统一的访问接口。

    China Virtual Observatory ( China-VO ) project designs and implements astronomical data access services based on Grid technology , and provides uniform interface to Grid client application .

  20. 网格环境下银河系化学演化研究是中国虚拟天文台应用系统的一个重要部分.详细描述了该演化研究的设计和实现。

    This paper describes the design and implementation of the chemical evolving research of the Galaxy under Grid environment , which is an important part of China Virtual Observatory application system .

  21. 教育科研论文是教师教育科研成果的展示。重点讨论了虚拟天文台建设的重要性,以及如何利用虚拟天文台这一平台进行天文教育和研究的设想。

    Theses on education and research show teachers ' achievements in their work . How to use a virtual observatory in public astronomy education and research is stressed in the paper .

  22. 本文从天文教育的重要性及现状出发,探讨了基于虚拟天文台建设天文教育门户的必要性和可行性;

    Beginning with the importance and current status of astronomy education , the paper sets forth the necessity and feasibility of building an astronomy education resource gateway based on the Virtual Observatory .

  23. 对虚拟天文台技术的研究,从单个数据库存取扩展到了基于网络的分布在世界范围的多个数据库交叉存取、网格计算,该文介绍了虚拟天文台技术发展的各个方面内容。

    The research of the virtual observatory technologies extends to across access numbers of databases which is based on network and distributed over the world from single database , continues to extend to grid computing .

  24. 初步设想了结合元数据描述方法,利用虚拟天文台的资源注册和发现机制、元数据记录自动生成机制、元数据集管理机制以及对元数据所标记的资源的查询机制来建设天文教育门户;

    Using technologies about metadata in the Virtual Observatory , a reasonable mechanism for building the gateway is discussed , including resource registry and discovery , metadata record creating , metadata database managing , resources querying , etc.

  25. 从虚拟天文台技术的研究中,可以看到一个分布式系统的例子及在网格发展历程中一个数据网格例子,从中可看到新一代计算环境的发展趋势。

    From the research of the VSO technologies , an example of distributed system , an example of data grid can be learnt from the research . A development trend of next generation computing environment can also be learnt .

  26. 介绍了虚拟天文台的由来和工作原理,阐述了建设虚拟天文台的关键技术,提出了我国国家虚拟天文台建设的发展战略和对策建议。

    This paper describes the origination and the work rule of the virtual observatory , the key techniques are elaborated to construct the virtual observatory , the developmental strategies and the proposals in China are put forward and so forth .

  27. 铁元素丰度梯度统计分析是网格环境下银河系化学演化研究的一个重要内容,作为虚拟天文台应用系统中在大量数据资源的基础上开展深层次的分析和处理的一个示例。

    Statistical analysis of Fe abundances gradients is one of the important parts of chemical evolving research of the Galaxy under grid environment and is one of exemplifications of deep-going analysis and process based on physical data resources for virtual observatory application system .

  28. 这就是虚拟太阳天文台(VSO)项目被提出后得到有关天文台、研究所和大学积极响应并迅速投入运作的原因所在。

    That is why the project of the virtual solar observatory ( VSO ) gained active replies and operations from observatories , institutes and universities in the world .

  29. 虚拟太阳天文台及其发展

    The Virtual Solar Observatory and its Development

  30. 介绍了虚拟太阳天文台的由来、作用、采用的技术和发展状况等。

    In this article , the origins , function , adopted technique and the current status on the virtual solar observatory are introduced .