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Titlebook: Mathematical Control Theory I; Nonlinear and Hybrid M. Kanat Camlibel,A. Agung Julius,Jacquelien M.A. Conference proceedings 2015 Springer

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978-3-319-20987-6Springer International Publishing Switzerland 2015
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Control of HVDC Transmission Systems: From Theory to Practice and Back, also established. Third, to reveal the transient performance limitations of the proposed controller that, interestingly, is shown to be intrinsic to PI passivity-based control. The performances of the controller are verified via simulations on a three-terminal benchmark example.
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A Port-Hamiltonian Formulation of a Wireless Communication System,e to the characteristics of radio signal propagation. In this paper we study the type of Dirac structure used to model a communication element (a router), we analyze the stability properties of a router and finally we study the compositionality properties that evolve under lossy interconnections.
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Handling Biological Complexity Using Kron Reduction,ical integration of the state equations. The first one is based on the spectral clustering method and the second one is based on the eigenvalue interlacing property of Kron reduction on the graph. The efficacy of the proposed methods is evaluated on two biological models.
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Distributed Line Search for Multiagent Convex Optimization,otonic evolution of the objective function. We provide a distributed algorithmic solution to this problem based on the aggregation of agent stepsizes via adaptive convex combinations. Simulations illustrate our results.
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Modeling Perspectives of Hybrid Systems and Network Systems,ter discusses the most recent topic that both Arjan and the first author have common interest in. In particular, the clustering-based . and .-model reduction approaches of large-scale network systems, which have been independently developed by the authors, are represented in a unified way.
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Modeling and Analysis of Energy Distribution Networks Using Switched Differential Systems,y problems caused by devices with negative impedance characteristics such as constant power loads. Elements of the behavioral system theory such as linear differential behaviors and quadratic differential forms are crucial in our analysis.
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