INTERNATIONAL JOURNAL OF ELECTRONICS

Scope & Guideline

Pioneering Insights in Circuit Design and Communications

Introduction

Welcome to your portal for understanding INTERNATIONAL JOURNAL OF ELECTRONICS, 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.
LanguageMulti-Language
ISSN0020-7217
PublisherTAYLOR & FRANCIS LTD
Support Open AccessNo
CountryUnited Kingdom
TypeJournal
Convergefrom 1965 to 2024
AbbreviationINT J ELECTRON / Int. J. Electron.
Frequency12 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address2-4 PARK SQUARE, MILTON PARK, ABINGDON OR14 4RN, OXON, ENGLAND

Aims and Scopes

The International Journal of Electronics focuses on advancing the field of electronics through rigorous research and innovative applications. The journal encompasses a broad range of topics that aim to address contemporary challenges and technological advancements in electronics and electrical engineering.
  1. Power Electronics and Converters:
    Research on various types of power converters, including DC-DC converters, multilevel inverters, and their applications in renewable energy systems.
  2. Antenna Design and Wireless Communication:
    Innovative designs of antennas for various applications, including 5G, vehicular communication, and wearable devices, focusing on aspects like bandwidth, polarization, and miniaturization.
  3. Digital and Analog Circuit Design:
    Exploration of circuit designs, including SRAM, operational amplifiers, and logic gates, with emphasis on low power consumption and high performance.
  4. Control Systems and Automation:
    Development of control strategies for power systems, electric drives, and renewable energy integration, focusing on improving efficiency and performance.
  5. Signal Processing and Communication Systems:
    Techniques for enhancing signal processing capabilities in communication systems, including MIMO, OFDM, and adaptive filtering.
  6. Emerging Technologies in Electronics:
    Investigation of new materials and technologies, such as memristors and TFETs, and their implications for future electronic devices.
The International Journal of Electronics has identified several emerging and trending themes that reflect the current advancements and future directions in electronics research.
  1. 5G and Beyond Wireless Technologies:
    There is a growing focus on technologies supporting 5G communications, including MIMO systems, antennas, and signal processing techniques that enhance wireless communication capabilities.
  2. Integration of Renewable Energy Systems:
    Research on power electronics for integrating renewable energy sources, such as solar and wind, into the grid is gaining momentum, emphasizing efficiency and sustainability.
  3. Advanced Materials and Devices:
    The exploration of new materials, such as CNTFETs and memristors, is on the rise, highlighting their potential in developing next-generation electronic components.
  4. Machine Learning Applications in Electronics:
    The application of machine learning techniques to improve electronic systems, especially in areas like signal processing, control systems, and optimization, is becoming increasingly prevalent.
  5. Energy-Efficient Design Techniques:
    A significant trend is the emphasis on energy-efficient designs across various electronic applications, reflecting a global push towards sustainability and reduced power consumption.

Declining or Waning

Over the years, certain research themes within the International Journal of Electronics have shown a decline in prominence, suggesting a shift in focus towards more contemporary and relevant topics.
  1. Traditional Circuit Techniques:
    Research focusing on conventional circuit designs is becoming less prominent as newer, more efficient methodologies and technologies gain traction.
  2. Low-Frequency Applications:
    Studies related to low-frequency electronics and applications are decreasing, likely due to the increasing emphasis on high-frequency and RF applications.
  3. Basic Theoretical Models:
    Papers centered on purely theoretical models without practical application or integration into modern systems are becoming less common, reflecting a trend towards applied research.

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