INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS

Scope & Guideline

Connecting Scholars in Electrical Power Excellence

Introduction

Explore the comprehensive scope of INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS 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 INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS in depth and align your research initiatives with current academic trends.
LanguageEnglish
ISSN0142-0615
PublisherELSEVIER SCI LTD
Support Open AccessYes
CountryUnited Kingdom
TypeJournal
Converge1970, from 1979 to 2024
AbbreviationINT J ELEC POWER / Int. J. Electr. Power Energy Syst.
Frequency10 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address125 London Wall, London EC2Y 5AS, ENGLAND

Aims and Scopes

The INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS focuses on innovative research and developments in electrical power and energy systems. It aims to publish high-quality papers that address various aspects of electrical power systems, energy management, and renewable energy integration, contributing to the advancement of knowledge in these fields.
  1. Renewable Energy Integration:
    Research papers focusing on the integration of renewable energy sources such as solar, wind, and hydroelectric power into existing electrical grids, exploring technical challenges and solutions.
  2. Smart Grid Technologies:
    Studies on the development and implementation of smart grid technologies that enhance the efficiency, reliability, and sustainability of electrical systems.
  3. Energy Management Systems:
    Innovations in energy management strategies that optimize the use of energy resources, including demand response, energy storage, and microgrid operations.
  4. Fault Detection and Protection Schemes:
    Research addressing advanced techniques for fault detection, diagnosis, and protection in electrical power systems, particularly in the context of distributed generation.
  5. Control Strategies for Power Systems:
    Development of novel control mechanisms for stable operation of power systems, including voltage and frequency control, and the application of advanced control theories.
  6. Cybersecurity in Power Systems:
    Investigations into the cybersecurity aspects of power systems, focusing on protecting critical infrastructure from cyber threats and ensuring secure operations.
  7. Economic and Environmental Impact Studies:
    Analysis of the economic and environmental impacts of energy policies, technologies, and market structures, promoting sustainable energy practices.
Recent publications in the journal indicate a strong trend towards innovative and interdisciplinary approaches to electrical power and energy systems. The following themes have emerged as significant areas of focus.
  1. Artificial Intelligence and Machine Learning in Energy Systems:
    The integration of AI and machine learning techniques for predictive maintenance, load forecasting, and optimization of energy systems is gaining traction, reflecting a growing interest in data-driven methodologies.
  2. Decentralized Energy Management:
    Research on decentralized energy management approaches, including peer-to-peer energy trading and community-based energy systems, is on the rise, highlighting a shift towards localized energy solutions.
  3. Resilience and Security in Power Systems:
    Increased emphasis on the resilience and security of electrical power systems, particularly in response to climate change and cyber threats, is evident in recent publications.
  4. Hybrid Energy Systems:
    Research focusing on hybrid systems that combine multiple energy sources, such as solar, wind, and storage technologies, to enhance reliability and efficiency is trending.
  5. Dynamic Modeling and Real-Time Control:
    Emerging interest in dynamic modeling techniques and real-time control strategies for managing complex energy systems, allowing for more responsive and adaptive operations.
  6. Energy Storage Innovations:
    Significant advancements in energy storage technologies, including battery systems and hybrid configurations, are becoming a focal point in enhancing the stability and flexibility of power systems.

Declining or Waning

While the journal maintains a strong focus on various emerging topics, some areas have seen a decline in published research. This may reflect shifts in research priorities or advancements in technology rendering previous topics less relevant.
  1. Traditional Power Generation Technologies:
    Research on conventional power generation methods, such as coal and natural gas, has decreased as the focus shifts toward renewable energy solutions and sustainable practices.
  2. Legacy Power System Analysis:
    Studies centered around older methodologies for power system analysis may be waning as more advanced and computationally efficient techniques gain prominence.
  3. Static Voltage Regulation Techniques:
    Interest in basic static voltage regulation methods is declining in favor of more dynamic and adaptable solutions that can respond to real-time changes in power systems.
  4. Conventional Transmission Systems:
    Research on conventional high-voltage transmission systems is decreasing as integration with smart grid technologies and flexible AC/DC transmission systems becomes more prevalent.

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