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Titlebook: Stability and Control Processes; Proceedings of the 4 Nikolay Smirnov,Anna Golovkina Conference proceedings 2022 The Editor(s) (if applicab

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书目名称Stability and Control Processes
副标题Proceedings of the 4
编辑Nikolay Smirnov,Anna Golovkina
视频video
概述Dedicated to Vladimir Ivanovich Zubov in recognition of his work in the field of control engineering.Presents the latest research on stability theory and control processes.Explores applications of con
丛书名称Lecture Notes in Control and Information Sciences - Proceedings
图书封面Titlebook: Stability and Control Processes; Proceedings of the 4 Nikolay Smirnov,Anna Golovkina Conference proceedings 2022 The Editor(s) (if applicab
描述.The proceedings of the 4.th. .Stability and Control Processes Conference. are focused on modern applied mathematics, stability theory, and control processes. The conference was held in recognition of the 90.th. birthday of Professor Vladimir Ivanovich Zubov (1930–2000)..This selection of papers reflects the wide-ranging nature of V. I. Zubov’s work, which included contributions to the development of the qualitative theory of differential equations, the theory of rigid body motion, optimal control theory, and the theory of electromagnetic fields. It helps to advance many aspects of the theory of control systems, including questions of motion stability, nonlinear oscillations in control systems, navigation and reliability of control devices, vibration theory, and quantization of orbits. The disparate applications covered by the book – in mechanical systems, game theory, solid-state physics, socio-economic systems and medical and biological systems, control automata and navigation – are developments from Professor Zubov’s in-depth studies on the theory of stability of motion, the theory of automatic control and the theory of the motions of optimal processes...St.ability and Control P
出版日期Conference proceedings 2022
关键词Stability Theory; Lyapunov Functions; Conference Proceedings; Dynamic Systems Control; Mechanical System
版次1
doihttps://doi.org/10.1007/978-3-030-87966-2
isbn_softcover978-3-030-87968-6
isbn_ebook978-3-030-87966-2Series ISSN 2522-5383 Series E-ISSN 2522-5391
issn_series 2522-5383
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
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Mixed Feedback–Feedforward Frequency Control in Power Systemsse in both feedback and feedforward modes. Linear power system model is analyzed. Second-order turbine governor dynamics is considered in order to ensure high quality of the model. Proof of global asymptotic stability is given. Faster frequency stabilization in comparison with the existing frequency control is shown by numerical simulations.
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Optimal Damping Problem for Diffusion-Wave Equation infinite-dimensional .-problem of moments. We also derived the finite-dimensional .-problem of moments using an approximate solution of the diffusion-wave equation. For this problem, the correctness and solvability are analyzed.
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2522-5383 ty theory and control processes.Explores applications of con.The proceedings of the 4.th. .Stability and Control Processes Conference. are focused on modern applied mathematics, stability theory, and control processes. The conference was held in recognition of the 90.th. birthday of Professor Vladim
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From Control Invariant Sets to an Inverse Optimality Perspective on the Constrained Control Designntrol design. We will trace the path (mainly within a linear time-invariant framework) from vertex controllers, to model-based predictive control and ultimately to interpolation-based control. Interestingly, we will point to the relationship between these techniques and the performance indexes in op
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On the Stability of Nonlinear Mechanical Systems with Time-Varying Discontinuous Coefficients, dissipative, and gyroscopic forces. Moreover, we suppose that there is a time-depending coefficient at potential forces. The case where this coefficient is piecewise continuous and piecewise monotonous on any finite-time interval is investigated. Thus, the system can be considered as a non-station
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