AUTOMATICA

Scope & Guideline

Leading the Charge in Electrical and Electronic Engineering.

Introduction

Welcome to your portal for understanding AUTOMATICA, featuring guidelines for its aims and scope. Our guidelines cover trending and emerging topics, identifying the forefront of research. Additionally, we track declining topics, offering insights into areas experiencing reduced scholarly attention. Key highlights include highly cited topics and recently published papers, curated within these guidelines to assist you in navigating influential academic dialogues.
LanguageEnglish
ISSN0005-1098
PublisherPERGAMON-ELSEVIER SCIENCE LTD
Support Open AccessNo
CountryUnited Kingdom
TypeJournal
Convergefrom 1963 to 2024
AbbreviationAUTOMATICA / Automatica
Frequency12 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressTHE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND

Aims and Scopes

The journal 'AUTOMATICA' focuses on the advancement of automation and control engineering, emphasizing the integration of theoretical research with practical applications. It aims to publish high-quality research that contributes to the understanding and development of automated systems across various domains.
  1. Control Theory and Applications:
    Papers often explore advanced control strategies, including PID controllers, fuzzy logic, and adaptive control systems, aimed at improving system performance in robotics, manufacturing, and process control.
  2. Robotics and Automation:
    The journal covers innovative methodologies in robotics, including motion planning, control systems, and the application of automation in industrial settings.
  3. Thermal and Fluid Dynamics:
    Research frequently addresses thermal properties, fluid dynamics, and magnetohydrodynamics (MHD), investigating their applications in engineering processes and systems.
  4. Numerical and Analytical Methods:
    Strong emphasis is placed on the development and application of numerical and analytical techniques for solving complex engineering problems across various domains, including structural analysis and fluid flow.
  5. Biomechanics and Mechanical Properties:
    The journal publishes studies on the mechanical properties of materials and biological systems, focusing on experimental and numerical analyses that inform engineering practices.
  6. Energy Systems and Sustainability:
    Research on energy systems, including renewable energy technologies and energy efficiency, is a key area, reflecting the growing importance of sustainability in engineering.
The journal 'AUTOMATICA' has shown a clear evolution in its research themes, with certain areas gaining prominence in recent publications. This section identifies these trending and emerging scopes, reflecting the journal's responsiveness to contemporary challenges and technological advancements.
  1. Fractional Order Systems:
    An increase in research on fractional order systems indicates a growing interest in complex dynamic systems that require advanced mathematical modeling techniques, highlighting their significance in control theory.
  2. Machine Learning and AI in Control Systems:
    There is a noticeable trend towards integrating machine learning and artificial intelligence in automation and control, showcasing the journal's commitment to incorporating modern computational techniques into traditional engineering problems.
  3. Nanofluid Dynamics and Heat Transfer:
    Research on nanofluids and their applications in heat transfer processes has gained traction, reflecting the emerging importance of advanced materials in engineering applications.
  4. Biomechanical Engineering:
    The rise in studies focused on biomechanics indicates a growing intersection between engineering and health sciences, emphasizing the importance of human factors in system design and safety.
  5. Sustainability and Energy Efficiency:
    A significant increase in research addressing energy efficiency and sustainable practices in engineering reflects the global shift towards environmentally conscious engineering solutions.

Declining or Waning

In the rapidly evolving field of automation and control, certain themes have seen a decline in focus within the recent publications of 'AUTOMATICA'. This section highlights these waning areas, indicating shifts in research priorities.
  1. Traditional Mechanical Systems Analysis:
    There has been a notable decrease in studies focused solely on traditional mechanical systems without integration of modern computational methods or automation techniques, suggesting a shift towards more complex, automated systems.
  2. Basic Control Systems with Limited Complexity:
    Papers that explore basic control systems without the incorporation of advanced techniques or applications have become less prominent, reflecting a move towards more sophisticated control strategies.
  3. Static Structural Analysis:
    Research concentrating solely on static structural analysis without dynamic considerations has diminished, as dynamic interactions and real-time responses are prioritized in current studies.

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