Complexity

Advanced Topics in Modeling, Bifurcation Analysis, and Control Theory of Complex Systems


Status
Published

Lead Editor

1University of Carthage, Tunis, Tunisia

2Southeast University, Nanjing, China

3Amirkabir University of Technology, Tehran, Iran

4University of Thessaloniki, Thessaloniki, Greece

5Hanoi University of Science and Technology, Hanoi, Vietnam

6University of Tébessa, Tébessa, Algeria


Advanced Topics in Modeling, Bifurcation Analysis, and Control Theory of Complex Systems

Description

In the last five years, several complex systems have been investigated in nonlinear systems theory and have had a huge impact on the scientist research. Due to their complexities in the design, analysis, and control, innovative ideas, novel models, and techniques are still expected in the future in these expanding areas.

This special issue is intended to present and discuss advanced topics and their complexity in the nonlinear systems theory. It is expected that novel complex models, their bifurcation analysis, and their related control techniques will be established. Among others, applications in medical and biosciences disciplines are especially encouraged to be submitted to this special issue to present their related latest developments.

Potential topics include but are not limited to the following:

  • Mathematical modeling and analysis in medicine (hormone regulation, immune response, epidemiology, tumor growth, HIV infection, etc.)
  • Mathematical modeling and chaos analysis in biosciences (population dynamics, ecological system, cell kinetics, etc.)
  • Bifurcation analysis of spatiotemporal or delayed chaotic dynamical systems
  • Design, analysis, and implementation of new hyperchaotic systems
  • Bifurcation analysis and control of fractional-order complex systems
  • Advanced control and synchronization schemas of new hyperchaotic systems

Articles

  • Special Issue
  • - Volume 2017
  • - Article ID 1382689
  • - Research Article

Complexity Dynamic Character Analysis of Retailers Based on the Share of Stochastic Demand and Service

Junhai Ma | Weiya Di | Hao Ren
  • Special Issue
  • - Volume 2017
  • - Article ID 4978613
  • - Research Article

A Novel Clustering Method Based on Quasi-Consensus Motions of Dynamical Multiagent Systems

Ning Cai | Chen Diao | M. Junaid Khan
  • Special Issue
  • - Volume 2017
  • - Article ID 4324879
  • - Research Article

Stabilization of a Network of the FitzHugh–Nagumo Oscillators by Means of a Single Capacitor Based RC Filter Feedback Technique

Elena Adomaitienė | Skaidra Bumelienė | ... | Arūnas Tamaševičius
  • Special Issue
  • - Volume 2017
  • - Article ID 3848953
  • - Research Article

A New Nonlinear Chaotic Complex Model and Its Complex Antilag Synchronization

Emad E. Mahmoud | Fatimah S. Abood
  • Special Issue
  • - Volume 2017
  • - Article ID 5434680
  • - Research Article

Study on Triopoly Dynamic Game Model Based on Different Demand Forecast Methods in the Market

Junhai Ma | Lijian Sun | Xueli Zhan
  • Special Issue
  • - Volume 2017
  • - Article ID 4631602
  • - Research Article

Autaptic Modulation of Electrical Activity in a Network of Neuron-Coupled Astrocyte

Shengli Guo | Jun Tang | ... | Chunni Wang
  • Special Issue
  • - Volume 2017
  • - Article ID 3815146
  • - Research Article

Chaos Control in Fractional Order Smart Grid with Adaptive Sliding Mode Control and Genetically Optimized PID Control and Its FPGA Implementation

Anitha Karthikeyan | Karthikeyan Rajagopal
  • Special Issue
  • - Volume 2017
  • - Article ID 3465076
  • - Research Article

Leader-Follower Fixed-Time Group Consensus Control of Multiagent Systems under Directed Topology

Yilun Shang | Yamei Ye
  • Special Issue
  • - Volume 2017
  • - Article ID 6290646
  • - Research Article

Centralized and Decentralized Data-Sampling Principles for Outer-Synchronization of Fractional-Order Neural Networks

Jin-E Zhang
Complexity
Publishing Collaboration
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Acceptance rate11%
Submission to final decision120 days
Acceptance to publication21 days
CiteScore4.400
Journal Citation Indicator0.720
Impact Factor2.3
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