ELECTRICAL ENGINEERING

Scope & Guideline

Empowering Innovations in Electrical Engineering

Introduction

Explore the comprehensive scope of ELECTRICAL ENGINEERING through our detailed guidelines, including its aims and scope. Stay updated with trending and emerging topics, and delve into declining areas to understand shifts in academic interest. Our guidelines also showcase highly cited topics, featuring influential research making a significant impact. Additionally, discover the latest published papers and those with high citation counts, offering a snapshot of current scholarly conversations. Use these guidelines to explore ELECTRICAL ENGINEERING in depth and align your research initiatives with current academic trends.
LanguageMulti-Language
ISSN0948-7921
PublisherSPRINGER
Support Open AccessNo
CountryGermany
TypeJournal
Convergefrom 1994 to 2024
AbbreviationELECTR ENG / Electr. Eng.
Frequency6 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressONE NEW YORK PLAZA, SUITE 4600 , NEW YORK, NY 10004, UNITED STATES

Aims and Scopes

The journal 'ELECTRICAL ENGINEERING' focuses on advancing the field of electrical engineering through innovative research and practical applications. Its primary aims include promoting the development of new technologies, enhancing existing systems, and addressing contemporary challenges in electrical engineering.
  1. Control Systems:
    Research on advanced control strategies for electrical systems, including fuzzy logic, sliding mode, and model predictive control techniques for various applications such as renewable energy systems and electric vehicles.
  2. Renewable Energy Technologies:
    Exploration of methods and technologies for optimizing the use of renewable energy sources, particularly solar and wind energy, including photovoltaic systems and hybrid energy solutions.
  3. Electrical Machine Design and Optimization:
    Study and development of electrical machines, including synchronous and induction motors, focusing on performance optimization, fault diagnosis, and innovative designs.
  4. Power Systems and Smart Grids:
    Investigation of power distribution systems, including smart grid technologies, energy management, and optimization of distributed generation.
  5. Electromagnetic Compatibility and Analysis:
    Research on electromagnetic phenomena, including transient analysis, electromagnetic interference, and the design of systems to mitigate these effects.
  6. Energy Storage and Management:
    Focus on energy storage technologies and their integration into electrical systems, including optimization strategies for battery management and energy efficiency.
  7. Power Electronics and Converters:
    Development and analysis of power electronic converters, including DC/DC, AC/DC converters, and their applications in various electrical systems.
The journal 'ELECTRICAL ENGINEERING' reflects emerging trends in the field, showcasing innovative research areas that are gaining traction among researchers and practitioners.
  1. Smart Grid and Energy Management Systems:
    There is a significant increase in research focused on smart grid technologies and energy management systems, addressing the need for efficient energy distribution and utilization in modern electrical networks.
  2. Integration of Artificial Intelligence:
    The application of AI techniques, including machine learning and optimization algorithms, in electrical engineering is rapidly growing, with researchers exploring their potential in various applications such as predictive maintenance and load forecasting.
  3. Electric Vehicle Technology:
    As electric vehicles become more prevalent, research focusing on electric vehicle systems, including charging infrastructure, battery management, and control strategies, is increasingly important.
  4. Renewable Energy Systems Optimization:
    Research on optimizing renewable energy systems, particularly in terms of efficiency and integration with existing infrastructure, is emerging as a critical area of focus.
  5. Cybersecurity in Power Systems:
    With the rise of smart grids and interconnected systems, the importance of cybersecurity measures in power systems is gaining attention, leading to new avenues of research.
  6. Advanced Materials for Electrical Engineering:
    Research into new materials, such as high-temperature superconductors and advanced composites, is emerging as a key area, focusing on their applications in improving electrical machine performance and efficiency.

Declining or Waning

Over recent years, certain themes within the journal 'ELECTRICAL ENGINEERING' have shown a decline in publication frequency or importance. This may indicate a shifting focus towards more contemporary issues or advancements in the field.
  1. Traditional Power Generation:
    Research related to conventional power generation methods has been increasingly overshadowed by renewable energy studies, leading to a decline in publications focused on fossil fuel-based power generation technologies.
  2. Basic Electrical Theory:
    Fundamental studies on basic electrical theories and principles are becoming less prominent as the journal shifts towards more application-driven and technology-oriented research.
  3. Mechanical Aspects of Electrical Machines:
    The focus on solely mechanical aspects of electrical machines is waning, as the journal emphasizes more on integrated design and performance optimization that incorporates advanced materials and control strategies.
  4. Low Voltage Applications:
    Research specifically targeting low voltage applications is appearing less frequently, with a growing emphasis on high voltage and smart grid technologies.
  5. Basic Signal Processing Techniques:
    Fundamental signal processing methods are being replaced by more advanced and complex algorithms in line with the increasing complexity of electrical systems.

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