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Titlebook: Control and Optimization Methods for Complex System Resilience; Chao Zhai Book 2023 The Editor(s) (if applicable) and The Author(s), under

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https://doi.org/10.1007/978-3-658-24968-7ucture systems. Due to the evolving nature of system parameters and the complicated coupling relationship of different components, it has been a great challenge to identify the contingencies that could trigger cascading blackouts of power systems. This chapter aims to develop a generic approach for
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https://doi.org/10.1007/978-3-658-24968-7stable state trajectories of system dynamics. Most existing works on estimating ROA rely on analytical Lyapunov functions, which are subject to two limitations: the analytic Lyapunov functions may not be always readily available, and the resulting ROA may be overly conservative. This work overcomes
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Schlussfolgerungen, Fazit und Ausblick,s. An optimal control approach is proposed to determine the most disruptive disturbances on the branch of power transmission system by regarding the disturbances as the control inputs. Moreover, protective actions such as load shedding and generation dispatch are taken into account in a convex optim
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Formulierung und Einhaltung der Ziele, occur. This makes it challenging to achieve the effective power system protection against cascading blackouts. By incorporating uncertainties and stochastic factors of the cascades, a Markov chain model is developed in this chapter to predict the cascading failure paths of power systems. The transi
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Wissen und Lernen in Unternehmenoblem of power systems subject to disruptive disturbances caused by contingencies. A novel distributed optimization algorithm for flexible alternate current transmission systems devices is proposed to adjust the branch impedance and voltage phase angle with the aid of thyristor-controlled series com
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