Yuexin Liu , Anna Feng , Jiahao Wu , Jie Zhong , Bowen Li
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引用次数: 0
Abstract
This paper examines robust set stabilization in Boolean control networks (BCNs) under a new edge removal perturbations framework. Edge removal perturbations are characterized by the random elimination of certain edges, thereby disrupting the interactive dynamics between nodes. To counteract these perturbations, an edge addition control strategy is proposed to achieve set stabilization in BCNs. This strategy involves selectively adding edges to restore and enhance the connections between nodes. Then, one necessary and sufficient condition is given in this paper, complemented by a practical criterion for verification. Additionally, the design of state feedback controllers that facilitate robust set stabilization under the proposed edge addition control is outlined. To demonstrate the efficacy of this approach proposed in this paper, a biological example is presented, validating the obtained main results.
期刊介绍:
The journal publishes original research findings on experimental observation, mathematical modeling, theoretical analysis and numerical simulation, for more accurate description, better prediction or novel application, of nonlinear phenomena in science and engineering. It offers a venue for researchers to make rapid exchange of ideas and techniques in nonlinear science and complexity.
The submission of manuscripts with cross-disciplinary approaches in nonlinear science and complexity is particularly encouraged.
Topics of interest:
Nonlinear differential or delay equations, Lie group analysis and asymptotic methods, Discontinuous systems, Fractals, Fractional calculus and dynamics, Nonlinear effects in quantum mechanics, Nonlinear stochastic processes, Experimental nonlinear science, Time-series and signal analysis, Computational methods and simulations in nonlinear science and engineering, Control of dynamical systems, Synchronization, Lyapunov analysis, High-dimensional chaos and turbulence, Chaos in Hamiltonian systems, Integrable systems and solitons, Collective behavior in many-body systems, Biological physics and networks, Nonlinear mechanical systems, Complex systems and complexity.
No length limitation for contributions is set, but only concisely written manuscripts are published. Brief papers are published on the basis of Rapid Communications. Discussions of previously published papers are welcome.