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

By Cornelius T. Leondes

ISBN-10: 0120127415

ISBN-13: 9780120127412

It is a 4 quantity series dedicated to the numerous subject matter of advances in electrical strength structures research and keep watch over ideas. The extensive components concerned comprise tranmission line and transformer modelling. The 4 quantity series will specialise in advances in parts together with energy circulate research, fiscal operation of energy platforms, generator modelling, energy method balance, voltage and gear keep an eye on options, and procedure security

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Additional resources for Analysis and Control System Techniques for Electric Power Systems

Example text

All indications point in this direction, but it is not easy to prove this thinking rigorously, more research is needed to support the idea. Some other analytical results and newly introduced definitions relevant for MARIJA ILIC 54 understanding the voltage transfer problem [119] seem to indicate the same results. However, to achieve a similar behavior for voltage propagation as for real power propagation, it is clear that reactive power support will be needed to compensate directly for large reactive power losses and that it would have to be electrically close to the causes of most reactive power losses, like very long transmission lines.

Variables of the D A E model [83-85] can be grouped into four categories: (i) Truly dynamic state variables 39 MODELING AND CONTROL (16) Ν where jc, is portion of the subsystem state coupled to the rest of the system via algebraic constraints (14), while £ is noncoupled; (ii) (iii) Input variables u{; (iv) Coupling variables φ{; Control variables r i5 i = 1 , . . ,N. The unique structure of the interconnected model of Eqs. (13)-(14) comes from the fact that the dynamics of each subsystem / e l , .

In general, the complexity of deriving a linearized model that reflects voltage dynamics depends on the assumptions made [80, 86, 88]. We are not aware of a standardized linearized model of form (12) used for studies of both frequency and voltage dynamics. Thus, generalizing theoretical results that were originally obtained using the classical model is not straightforward. It will be necessary to further pursue rigorous singular perturbation [43-45, 47, 48] and selective modal analysis techniques [46] for systematic model reduction and establish conditions under which simplified models relevant for voltage dynamics only are useful.

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


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