Complexity

Control and Stability Analysis of Complex Dynamical Systems involved in Finance, Ecology and Engineering


Publishing date
01 Dec 2020
Status
Closed
Submission deadline
31 Jul 2020

Lead Editor

1Hunan Normal University, Hunan, China

2Politecnico di Milano, Milan, Italy

3Shandong Normal University, Shandong, China

4Universitat Politècnica de València, València, Spain

5Chengdu Normal University, Chengdu, China

This issue is now closed for submissions.
More articles will be published in the near future.

Control and Stability Analysis of Complex Dynamical Systems involved in Finance, Ecology and Engineering

This issue is now closed for submissions.
More articles will be published in the near future.

Description

In today's globalized economic market, the prosperity and stability of each country's economy often involves each country's politics, the import and export of funds, and population ecological dynamics. Preventing and controlling the outbreak of economic crises is a complex problem of cybernetics for nonlinear dynamical systems. Among them, the stabilization of complex nonlinear delayed feedback economic systems is one of the most challenging problems in cybernetics, which is of great theoretical significance to real societies.

Impulse control is one of the important means for financial management to control the economic system, and delayed feedback is one of the common problems in managing such systems. On the other hand, pulse interference and stochastic noise often increase the difficulty of macro-control.

The aim of this Special Issue is to collate original research and review articles with a focus on control and stability analysis of complex dynamical systems. Submissions focused on stabilization control of impulsive time-delay systems or stochastic systems are particularly welcome, as well as the robust stability of complex systems, stochastic systems, and stochastic stabilization of complex nonlinear dynamical systems with impulse perturbations.

Potential topics include but are not limited to the following:

  • Stabilization and synchronization for financial and engineering systems
  • Stability and boundedness control on open economy system stochastic systems or ecology systems
  • Impulse control on open economy, ecology, and engineering systems
  • Robust stability analysis of complex chaotic systems with time delays
  • Novel stochastic stabilization of complex nonlinear dynamical systems with impulse perturbations
  • Stability analysis for stochastic complex systems
  • Discrete-time stochastic systems
  • Stochastic delayed systems
  • Hybrid/Markov jumping systems
  • Switching systems
Complexity
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Acceptance rate43%
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Article of the Year Award: Outstanding research contributions of 2020, as selected by our Chief Editors. Read the winning articles.