ARTICLES

Design of Macro-ecological Environment Remote Sensing Monitoring System and the Key Technologies

Expand
  • State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China

Received date: 2011-05-01

  Revised date: 2011-09-01

  Online published: 2011-10-25

Abstract

As global environmental issues become more and more prominent, remote sensing technology with large amount of information to monitor global environmental change has become an important manner. Macro-ecological environment remote sensing monitoring system is implementation of environment remote sensing applied technologies. The architecture of the system and the transaction flow diagram and its core functions are introduced. At the same time, the model transformation and implementation of technology, real-time projection conversion technology, a combination of file-based data and database management technologies, XML-based real-time data exchange technology, automated production technology are expatiated. The prototype system is constructed using .NET and IDL mixing programming language and its application examples are presented. System application results show that this system meets the remote sensing monitoring requirements using macro-ecological environment business applications model to improve the environmental protection department level under the normal mode and emergency capability under the emergency mode. This system can play an important role in the macro-environment remote sensing monitoring and evaluation.

Cite this article

WANG Yong, ZHUANG Dafang, XU Xinliang, JIANG Dong . Design of Macro-ecological Environment Remote Sensing Monitoring System and the Key Technologies[J]. Journal of Geo-information Science, 2011 , 13(5) : 672 -678 . DOI: 10.3724/SP.J.1047.2011.00672

References

[1] 王桥,郑丙辉.环境遥感技术研究与应用进展[J].卫星应用,2006, 14(1):35-40.

[2] MDA Specifications . http://www.omg.org/mda/specs.htm,2011.

[3] 戚铁林,李亚芬,王普. MDA模型转换平台中模型转换方法的研究[J].计算机工程与设计,2011,32(1): 202-205.

[4] Milicev D.Automatic Model Transformations Using Extended UML Object Diagrams in Modeling Environments[J]. IEEE Transaction on Software Engineering, 2004,28(4):413-431.

[5] Sendall S. Model Transformation: The Heart and Soul of Model-driven Software Development[J]. IEEE Software,2003,33(7):42-25.

[6] Braun P, Marschall F. Transforming Object Oriented Models with BOTL[J]. Electronic Notes in Theoretical Computer Science, 2003, 72(3):214-231.

[7] 胡志勇,何建邦.分布式地理信息共享形式及技术策略[J].计算机工程与应用,2000, 36(12):51-54.

[8] 汪承义,赵忠明,杨健.可视化遥感影像库系统设计与实现[J].计算机工程, 2008, 34(2):283-285.

[9] http://www.w3.org/tr/.

[10] 肖如林, 苏奋振,等. 三维虚拟地球的海洋信息适用性分析及原型研究[J]. 地球信息科学学报, 2010, 12(4): 555-561.

[11] http://www.ittvis.com/language/en-US/ProductsServices/IDL.aspx.

[12] 程传周, 杨小唤,等. 农业生产潜力计算与分析系统的设计与实现[J]. 地球信息科学学报, 2011, 13(2):205-212.
Outlines

/