Complexity

Solving Engineering and Science Problems Using Complex Bio-inspired Computation Approaches


Publishing date
01 Jan 2021
Status
Closed
Submission deadline
21 Aug 2020

Lead Editor

1Shenzhen Institutes of Advanced Technology - Chinese Academy of Sciences, Shenzhen, China

2University of Warwick, Coventry, UK

3Gachon University, Seongnam-si, Republic of Korea

4Annamalai University, Chidambaram, India

This issue is now closed for submissions.

Solving Engineering and Science Problems Using Complex Bio-inspired Computation Approaches

This issue is now closed for submissions.

Description

Bio-inspired computing (BIC) focuses on the design and development of computer algorithms and models based on complex biological mechanisms and living phenomena. BIC methods such as neural networks, genetic algorithms, and artificial immune systems are canonical complexity approaches and have proven powerful in solving science and engineering problems. However, emerging problems in complex systems such as energy, transportation, and logistic systems are large-scale, strongly non-linear, and highly coupling, and significantly challenge the current computational tools.

This Special Issue aims at soliciting both high-quality original research and review articles from the recently emerging and cross-disciplinary field of utilizing bio-inspired computation approaches in the complexity area to solve science and engineering problems. It will bring together researchers in relevant areas to present the latest progress, new computation approaches, and potential research applications. All original papers related to bio-inspired computation approaches and their application for modeling, control, and optimization of complex science and engineering problems are welcome.

Potential topics include but are not limited to the following:

  • Genetic algorithms, harmony search and other evolutionary algorithms
  • Neural networks, and other machine learning algorithms
  • Adaptive control
  • State estimation, fault diagnosis
  • Bio-inspired robot design
  • Bio-inspired computing in complexity for solving power and energy problems
  • Bio-inspired computing in complexity for solving transportation problems
  • Bio-inspired computing in complexity for solving manufacturing problems
  • Bio-inspired computing in complexity for solving financial problems
  • Bio-inspired computing in complexity for solving smart vehicles

Articles

  • Special Issue
  • - Volume 2020
  • - Article ID 8864315
  • - Research Article

A Binary Superior Tracking Artificial Bee Colony with Dynamic Cauchy Mutation for Feature Selection

Xianghua Chu | Shuxiang Li | ... | Linya Huang
  • Special Issue
  • - Volume 2020
  • - Article ID 6939328
  • - Research Article

Integrating Semantic Zoning Information with the Prediction of Road Link Speed Based on Taxi GPS Data

He Bing | Xu Zhifeng | ... | Ma Zhanwu
  • Special Issue
  • - Volume 2020
  • - Article ID 8872348
  • - Research Article

Bio-Inspired Structure Representation Based Cross-View Discriminative Subspace Learning via Simultaneous Local and Global Alignment

Ao Li | Yu Ding | ... | Kezheng Lin
  • Special Issue
  • - Volume 2020
  • - Article ID 1329692
  • - Research Article

Hybrid Ensemble Pruning Using Coevolution Binary Glowworm Swarm Optimization and Reduce-Error

Xuhui Zhu | Zhiwei Ni | ... | Liping Ni
  • Special Issue
  • - Volume 2020
  • - Article ID 6084917
  • - Research Article

An Adaptive Chaotic Sine Cosine Algorithm for Constrained and Unconstrained Optimization

Yetao Ji | Jiaze Tu | ... | Mingjing Wang
  • Special Issue
  • - Volume 2020
  • - Article ID 8880730
  • - Research Article

Self-Administered Information Sharing Framework Using Bioinspired Mechanisms

Huibo Bi | Yanyan Chen | ... | Wenbo Huang
  • Special Issue
  • - Volume 2020
  • - Article ID 8852186
  • - Research Article

Real-Time Optimal Control Strategy for Multienergy Complementary Microgrid System Based on Double-Layer Nondominated Sorting Genetic Algorithm

Min Mou | Yuhao Zhou | ... | Dongdong Ke
  • Special Issue
  • - Volume 2020
  • - Article ID 5463893
  • - Research Article

On the Use of an Improved Artificial Fish Swarm Algorithm-Backpropagation Neural Network for Predicting Dam Deformation Behavior

Bo Dai | Hao Gu | ... | E. Fernandez Rodriguez
  • Special Issue
  • - Volume 2020
  • - Article ID 8822835
  • - Research Article

Temperature Control for a Proton-Exchange Membrane Fuel Cell System with Unknown Dynamic Compensations

Yashan Xing | Ramon Costa-Castelló | Jing Na
  • Special Issue
  • - Volume 2020
  • - Article ID 8820500
  • - Research Article

Symmetry-Aware 6D Object Pose Estimation via Multitask Learning

Hongjia Zhang | Junwen Huang | ... | Yifei Shi
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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