Complexity

Advanced Control and Optimization for Complex Energy Systems 2021


Publishing date
01 Oct 2021
Status
Closed
Submission deadline
21 May 2021

Lead Editor

1Zhejiang University of Technology, Hangzhou, China

2Guangxi University, Nanning, China

3Texas A&M University-Kingsville, Kingsville, USA

4Minnesota State University, Mankato, USA

5Harbin Institute of Technology (Shenzhen), Shenzhen, China

This issue is now closed for submissions.

Advanced Control and Optimization for Complex Energy Systems 2021

This issue is now closed for submissions.

Description

The application of renewable energies such as wind and solar has become an inevitable choice for many countries in order to achieve sustainable and healthy economic development. However, due to the intermittent characteristics of renewable energy, the issue with integrating a larger proportion of renewable energy into the grid becomes prominent. Currently, an energy system with weak coordination capability seriously affects the flexibility of power system operation. As a result, this has led to the development of an effective way to integrate high-proportion renewable energy by developing multienergy systems including wind, solar, thermal, and energy storage to allow for the integration and coordination of different energy resources.

The major challenge of the multienergy system is its complexity with multispatial and multitemporal scales. Compared with the traditional power system, control and optimization of the complex energy system become more difficult in terms of modeling, operation, and planning. The main purpose of the complex energy system is to coordinate the operation with various distributed energy resources (DERs), energy storage systems, and power grids to ensure its reliability, while reducing the operating costs and achieving the optimal economic benefits. Therefore, research on the advanced control and optimization of complex energy systems becomes indispensable.

The purpose of this Special Issue is to provide a timely opportunity for researchers to share their latest discoveries in the area of advanced control and optimization of complex energy systems. Particularly, authors are encouraged to submit their original research and review articles in theoretical, methodological, or practical focuses, such as simulation models, algorithms, experiments, and applications about advanced control and optimization techniques for complex energy systems.

Potential topics include but are not limited to the following:

  • Advanced control and optimization for complex energy systems with multiple energy storage systems, generators, and motors
  • Advanced control and optimization for complex energy systems including multiple renewable energy systems, such as wind and solar energy
  • Advanced control and optimization for complex energy systems with a large number of DERs
  • Modeling, simulation, and analysis for resilience of complex energy systems
  • Nonlinear dynamics and robustness for complex energy systems
  • Coordination between transmission network and distribution system under complex energy systems in the presence of DERs
  • Techniques for accelerating multiscale dynamic simulations of complex energy systems
  • Optimal operation, protection, and planning for complex energy systems
  • Field test and measurements of complex energy systems for model validation

Articles

  • Special Issue
  • - Volume 2021
  • - Article ID 1863855
  • - Research Article

Distributed Energy Management of the Hybrid AC/DC Microgrid with High Penetration of Distributed Energy Resources Based on ADMM

Yaling Chen | Luxi Hao | Gaowen Yin
  • Special Issue
  • - Volume 2021
  • - Article ID 9695452
  • - Research Article

Numerical Simulation and Computational Flow Characterization Analyses of Centrifugal Pump Operating as Turbine

Du Jianguo | Guanghui Chang | ... | Eric O. Antwi
  • Special Issue
  • - Volume 2021
  • - Article ID 2073332
  • - Research Article

Optimal Power Flow Algorithm Based on Second-Order Cone Relaxation Method for Electricity-Gas Integrated Energy Microgrid

Fan Zhang | Zhuzheng Shen | ... | Biyi Yi
  • Special Issue
  • - Volume 2021
  • - Article ID 9636383
  • - Research Article

On-Site Engineering Test of Active Support Control for the PV Station and Wind Farm in the AC-DC Hybrid Power Grid under Extreme Fault Conditions

Xiao-ling Su | Lai-jun Chen | ... | Hui Chen
  • Special Issue
  • - Volume 2021
  • - Article ID 4014362
  • - Research Article

Economic Feasibility Analysis of PVAC and TAC of Three Typical Application Cases in China

Dan Zhou | Haoran Wang | ... | Yaojie Hu
  • Special Issue
  • - Volume 2021
  • - Article ID 7069193
  • - Research Article

Research on the Influence of Volatility of International Energy Commodity Futures Market on CPI in China

Keyao Lin | Chao Xun | ... | Zhenyu Du
  • Special Issue
  • - Volume 2021
  • - Article ID 9564583
  • - Research Article

Optimal Setting Method of Inverse Time Overcurrent Protection for the Distribution Networks Based on the Improved Grey Wolf Optimization

Bo Yang | Jun Tang | ... | Xiaofeng Dong
  • Special Issue
  • - Volume 2021
  • - Article ID 2396929
  • - Research Article

Modeling and Control Strategy for Multiterminal Flexible DC Distribution Network with Echelon Utilization Power Battery

Min Mou | Yuhao Zhou | ... | Chengzhi Wei
  • Special Issue
  • - Volume 2021
  • - Article ID 9967577
  • - Research Article

A Study of a DC/AC Conversion Structure for Photovoltaic System Connected to the Grid with Active and Reactive Power Control

Houda Brahmi | Rachid Dhifaoui
  • Special Issue
  • - Volume 2021
  • - Article ID 3459427
  • - Research Article

A Causal and Correlation Analysis between China Energy Futures and China Energy-Related Companies Stock Market

Yufang Liu | Chi Zhang | Wang Zhang
Complexity
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Acceptance rate11%
Submission to final decision120 days
Acceptance to publication21 days
CiteScore4.400
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Impact Factor2.3
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