International Journal of Emerging Electric Power Systems

Scope & Guideline

Driving Research in Electric Power Advancements

Introduction

Welcome to your portal for understanding International Journal of Emerging Electric Power Systems, 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
ISSN2194-5756
PublisherWALTER DE GRUYTER GMBH
Support Open AccessNo
CountryGermany
TypeJournal
Convergefrom 2004 to 2024
AbbreviationINT J EMERG ELECTR P / Int. J. Emerg. Electr. Power Syst.
Frequency6 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressGENTHINER STRASSE 13, D-10785 BERLIN, GERMANY

Aims and Scopes

The International Journal of Emerging Electric Power Systems focuses on advancing the field of electric power systems by publishing innovative research that addresses contemporary challenges and solutions in the power sector. The journal emphasizes the integration of renewable energy sources, smart grid technologies, and energy management strategies.
  1. Integration of Renewable Energy Sources:
    The journal emphasizes research on the integration of various renewable energy sources such as solar, wind, and hybrid systems into existing power grids, focusing on the challenges and solutions for stability, efficiency, and sustainability.
  2. Smart Grid Technologies:
    It covers advancements in smart grid technologies, including the use of IoT, machine learning, and AI for optimizing energy management, enhancing grid reliability, and improving demand response mechanisms.
  3. Power Quality and Control Strategies:
    Research on novel control strategies for power quality enhancement, including the development and application of advanced controllers and filtering techniques to manage harmonics, voltage sags, and other disturbances.
  4. Distributed Generation and Microgrid Systems:
    The journal explores the design, operation, and management of distributed generation systems and microgrids, including their economic, environmental, and technical implications.
  5. Energy Storage Systems:
    It includes studies on various energy storage technologies, their integration into power systems, and their role in enhancing grid stability and reliability.
  6. Economic and Policy Analysis:
    The journal also addresses the economic aspects of electric power systems, including cost-benefit analyses, market mechanisms, and policy implications concerning renewable energy integration and grid modernization.
Recent publications in the journal indicate several trending and emerging themes that reflect current priorities and innovations in the electric power sector.
  1. Blockchain Applications in Energy Systems:
    There is a growing trend towards exploring blockchain technology for enhancing transparency, security, and efficiency in energy trading and management within power systems.
  2. Advanced Machine Learning Techniques:
    The application of machine learning and artificial intelligence for predictive analytics, fault detection, and optimization in power systems is increasingly prominent, reflecting the shift towards more automated and intelligent systems.
  3. Energy Management in Electric Vehicles:
    Research on energy management strategies specifically for electric vehicles, including charging infrastructure and integration with smart grids, is rapidly emerging as a critical area of study.
  4. Decentralized Energy Systems:
    The focus on decentralized energy systems and microgrids is rising, driven by the need for localized energy solutions and resilience against grid failures.
  5. Cybersecurity in Power Systems:
    With the increasing digitization of power systems, there is an emerging emphasis on cybersecurity measures to protect against vulnerabilities and ensure the integrity of energy systems.
  6. Hybrid Energy Storage Solutions:
    Research into hybrid energy storage systems that combine multiple technologies for enhanced performance and reliability is gaining traction, particularly in the context of renewable energy integration.

Declining or Waning

As the field of electric power systems evolves, certain themes within the journal's scope have shown a decline in prominence, reflecting shifts in research focus and technological advancements.
  1. Conventional Power Generation Techniques:
    Research centered on traditional fossil fuel-based power generation techniques has decreased, as the focus shifts towards renewable energy sources and sustainable practices.
  2. Basic Load Forecasting Techniques:
    There appears to be a waning interest in simpler load forecasting methods, as more complex and data-driven approaches such as machine learning and AI are gaining traction.
  3. Static Power System Analysis:
    Static analyses of power systems, which do not consider dynamic behaviors or real-time data, are becoming less relevant as the industry moves towards dynamic and real-time operational strategies.
  4. Single-Dimensional Energy Management Systems:
    Research focusing solely on single-dimensional energy management without considering multi-source or hybrid systems is declining, as integrated approaches become more prevalent.

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