Comparative Analysis of Visio Based and Programming Language Based CIM/SVG Graphics-Module Power Platform Developing Technology

Article Preview

Abstract:

Scalable Vector Graphics (SVG) and Common Information Model (CIM) are the graphics and module information sharing and format specification standard of power automation systems. The CIM/SVG graphics/module power platform integration technology is one of the key topics of graphics and data sharing and visualizing between various power application systems. Two main developing technologies, the underlying developing approach with programming language and the Visio based secondary development, are compared from aspects of primitives modeling, graphics system developing and topology analyzing. Cases study shows the merits and drawbacks of each approach.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1631-1635

Citation:

Online since:

November 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] F. Qian, G. Tang, Q. Gu. Composition of Decentralized Graphics and Model Based on CIM and SVG [J], Automation of Electric Power Systems, 2007, 31(5): 84-89.

Google Scholar

[2] Y. Li, J. Yao, H. Huang, et al. Application of SVG in the Dispatching Automation System of Power Network [J], Automation of Electric Power Systems, 2005, 29 (23): 80-82.

Google Scholar

[3] H. Sun, P. Li, B. Zhang, et al. Design of a Hierarchical Network Remodeling System Based on IEC61970 for Electrical Power Control Centers in China. IEEE Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008: 1-6.

DOI: 10.1109/pes.2008.4596746

Google Scholar

[4] Q. Ye, D. Zhang, Q. Gu, et al. Realization of Information Sharing in Intelligent Substation Based on IEC61850 and IEC61970 [C]/ Transmission and Distribution Conference and Exposition (T&D), IEEE PES, 2012: 1-6. Orlando, FL, USA.

DOI: 10.1109/tdc.2012.6281488

Google Scholar

[5] Y. Liu, W. Liu, L. H. Lei. Key technology for smart grid dispatching aided decision Industrial [C]/ 6th IEEE Conference on Digital Electronics and Applications (ICIEA), 2011: 2313-2317.

DOI: 10.1109/iciea.2011.5975978

Google Scholar

[6] C. Ten, E. Wuergler, H. -J. Diehl, et al. Extraction of Geospatial Topology and Graphics for Distribution Automation Framework [J]. IEEE Transactions on Power Systems, 2008, 23(4): 1776-1782.

DOI: 10.1109/tpwrs.2008.2004835

Google Scholar

[7] Energy management system application program interface (EMS-API) Part 301: Common Information Model (CIM) Base, (2003).

DOI: 10.3403/03020094

Google Scholar

[8] Energy management system application program interface (EMS-API) Part 453: Common Information Model (CIM) based graphics exchange, (2008).

DOI: 10.3403/30151503

Google Scholar

[9] The World Wide Web Consortium (W3C). Scalable vector graphics (SVG) 1. 1 specification 2003[EB/OL]. [2006-06-05]. http: /www. w3. org/Graphics/SVG/Overview. htm.

Google Scholar

[10] CCAPI Task Force. Common Graphics Exchange RPF V2. 0. http: / cimuser. org /W13/Documents. (2001).

Google Scholar