Analysis and Control System Techniques for Electric Power by Cornelius T. Leondes PDF

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By Cornelius T. Leondes

This can be a 4 quantity series dedicated to the numerous subject of advances in electrical strength structures research and regulate recommendations. The extensive parts concerned contain tranmission line and transformer modelling. The 4 quantity series will concentrate on advances in parts together with energy move research, monetary operation of strength structures, generator modelling, energy process balance, voltage and gear keep an eye on suggestions, and procedure security

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Interconnected power grid. The need to operate the system in a more dynamic mode than in the past is assessed from the viewpoint of making new FACTS devices truly useful in meeting this need. The role of adequate modeling and control is emphasized. Although advances in communications are not discussed in this chapter, their importance should not be underestimated, in particular their impact through fiber optics technology on implementing more information-exchange-intensive control schemes. l. Modeling It is intriguing to stop in the middle of talking about changing operating modes on the interconnected power system and, while being tempted by more sophisticated FACTS hardware, to assess the adequacy of current modeling and control practices on this system.

Although it is recognized how important this is, the process of obtaining realistic load models for the transmission level network is very complex, because of the need to aggregate loads from the distribution level, which could be identified with specific customers and therefore modeled more realistically. Although some progress has been made in this direction [92], much work remains to be done. Inadequate load models are one of the chief hindrances to the automation of computer-based analysis and control techniques as applied to large-scale electric power systems, and one should take this into consideration when considering technology transfer from theory into practice.

For this reason, modeling has become an art in its own right in the power systems community. Excellent references are available on systematic model reduction, for example [43-45, 81]. It is recognized that models applicable for short-term modeling are qualitatively different from the models applicable for mid- and long-term dynamics. Historically, only very short-term dynamics have been studied to assess if the system maintains its synchronism. Since voltage (magnitudes) did not change much because of a conservative design and the provision of sufficient reactive power support, a typical modeling assumption led to employing the so-called classical model for machines [42].

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