Complexity

Dynamic Analysis, Learning, and Robust Control of Complex Systems


Publishing date
01 Sep 2021
Status
Published
Submission deadline
23 Apr 2021

Lead Editor

1Guangxi University for Nationalities, Nanning, China

2Al-Azhar University, Cairo, Egypt

3University of Bisha, Bisha, Saudi Arabia

4Shaanxi Normal University, Xi'an, China


Dynamic Analysis, Learning, and Robust Control of Complex Systems

Description

Complex systems are composed of interconnected parts, and the whole system shows one or more properties that are not much different from those of a single part. The complexity of the system can be one of the following: disordered complexity or grouped complexity. Essentially, an unordered complexity system contains a large number of parts; an organized complex system is the nature of a subject system (probably with only a limited number of parts). Examples of models for the complexity of complex systems include ant colonies, human economics, social structures, climate, the nervous system, cells and living organisms, modern energy, or communication infrastructure. In fact, many systems of interest to humans are complex systems.

Many fields of natural sciences, mathematics, and social sciences study complex systems. The special fields of interdisciplinary research on complex systems include system theory, complexity theory, system ecology, and cybernetics. It can be seen that studying complex systems is of great significance to all aspects of human beings. Learning is a basic feature of all intelligent behaviours. Recently, various learning methods have been used for the control of complex dynamical systems, for example, composite learning, concurrent learning, and quantization interval learning. It is well known that system uncertainties usually exist in most real-world systems. Thus, exploring robust control methods for complex systems is of interest.

The aim of this Special Issue is to collect the latest research results on the relevant topics of dynamic analysis, learning, and robust control for complex systems. Authors are invited to present new complex systems, learning or control of complex chaotic systems, complex circuits, and complex networks that can bring new information about relevant theories and techniques of complex systems. This Issue encourages scholars to submit their original research or reviews, including simulation studies, algorithm design, experiments, and applications of advanced control and learning techniques for complex systems.

Potential topics include but are not limited to the following:

  • Dynamics analysis of complex systems
  • Design of new complex systems
  • Adaptive control of complex systems
  • Learning from complex systems
  • Composite learning control of complex dynamical systems
  • Adaptive fuzzy control of complex dynamical systems
  • Stability analysis of complex systems
  • Fractional-order complex systems
  • Fractional-order control of complex systems

Articles

  • Special Issue
  • - Volume 2021
  • - Article ID 6690237
  • - Research Article

Improved Hierarchical Convolutional Features for Robust Visual Object Tracking

Jinping Sun
  • Special Issue
  • - Volume 2021
  • - Article ID 6657172
  • - Research Article

A New Lifetime Distribution: Properties, Copulas, Applications, and Different Classical Estimation Methods

Naif Alotaibi
  • Special Issue
  • - Volume 2021
  • - Article ID 6664750
  • - Research Article

Robust Fixed-Time Inverse Dynamic Control for Uncertain Robot Manipulator System

Yang Wang | Mingshu Chen | Yu Song
  • Special Issue
  • - Volume 2021
  • - Article ID 6624142
  • - Research Article

Method and Realization of Efficient Extraction of Basic Geological Data from Two-Dimensional Mine Drawings

Xiaobo Lin
  • Special Issue
  • - Volume 2021
  • - Article ID 6665043
  • - Research Article

Systematic Monitoring and Evaluating the Wear of Alumina Wheel When Grinding the Workpiece of Cr12

Fangyi You | Wang Zhou | ... | Qiulian Dai
  • Special Issue
  • - Volume 2021
  • - Article ID 6692369
  • - Research Article

Dynamics and Robust Control of a New Realizable Chaotic Nonlinear Model

M. Higazy | Emad E. Mahmoud | ... | Hammad Alotaibi
  • Special Issue
  • - Volume 2021
  • - Article ID 6671499
  • - Research Article

Complex Dynamics of a Stochastic Two-Patch Predator-Prey Population Model with Ratio-Dependent Functional Responses

Rong Liu | Guirong Liu
  • Special Issue
  • - Volume 2020
  • - Article ID 6690955
  • - Research Article

An Innovative Way to Generate Hamiltonian Energy of a New Hyperchaotic Complex Nonlinear Model and Its Control

Kholod M. Abualnaja
  • Special Issue
  • - Volume 2020
  • - Article ID 6688912
  • - Research Article

Predicting Coronavirus Pandemic in Real-Time Using Machine Learning and Big Data Streaming System

Xiongwei Zhang | Hager Saleh | ... | Abdelmgeid A. Ali
  • Special Issue
  • - Volume 2020
  • - Article ID 8859328
  • - Research Article

Observer-Based Adaptive Fuzzy Predefined Performance Control of a Class of Nonlinear Pure-Feedback Systems with Input Delay

Xin Li | Qiang Zhang | Dakuo He
Complexity
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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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