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However, its applications in power systems, especially in Smart Grid are still in infancy stage. Besides, while there were a lot of researches working on visualizing data in transmission power system, the study on displaying distribution power system data was limited.

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Therefore, in this paper, author proposed some techniques to visualize the Smart Grid data at distribution. They are classified in three categories, which are low dimensional techniques, multivariate high dimensional techniques and Geographical Information System GIS techniques. Cite this paper D. Nga, O. See, D. Quang, C.

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Graphs, Digraphs and Electrical Networks. An interesting aspect of the literature that addresses this topic is the fact that, depending upon the theoretical orientation of the author, the graph theory appears to be seen differently by the mathematician, the electrical engineer or the economist. Indeed, the applications of this branch of mathematics, which entered the stage in when the pioneering Swiss mathematician and physicist Leonhard Euler solved the now famous problem of the seven bridges from Konigsberg, are quite diverse, but the theoretical core is the same.

Accordingly, the book starts from the basic concepts, theoretical fundamentals and classical algorithms, and proceeds with a consistently unified discussion of key applications in electrical networks and operations research. The text is primarily geared toward graduate students and professors in electrical engineering, and can be used as a desktop reference by professionals responsible for developing innovative optimization and network connectivity applications. Part II: Glenn W. Stability Assessment Requires Much More Than Just Load-Flow Calculations -- According to a relatively widespread belief in the utility industry, it would be possible to assess "voltage stability" with load-flows, continuation load-flows and other tools that allow drawing "PV-Nose Curves" without representing the internal reactances of the generators.