IEEE Open Journal of Circuits and Systems

Scope & Guideline

Empowering engineers with open access to research.

Introduction

Welcome to the IEEE Open Journal of Circuits and Systems information hub, where our guidelines provide a wealth of knowledge about the journal’s focus and academic contributions. This page includes an extensive look at the aims and scope of IEEE Open Journal of Circuits and Systems, highlighting trending and emerging areas of study. We also examine declining topics to offer insight into academic interest shifts. Our curated list of highly cited topics and recent publications is part of our effort to guide scholars, using these guidelines to stay ahead in their research endeavors.
LanguageEnglish
ISSN-
PublisherIEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Support Open AccessNo
Country-
Type-
Converge-
AbbreviationIEEE OPEN J CIRCUITS / IEEE Open J. Circuits Syst.
Frequency1 issue/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address445 HOES LANE, PISCATAWAY, NJ 08855-4141

Aims and Scopes

The IEEE Open Journal of Circuits and Systems is dedicated to presenting high-quality research in the field of circuits and systems. The journal emphasizes innovative methodologies, theoretical advancements, and practical applications, showcasing a variety of topics relevant to both academia and industry.
  1. Advanced Circuit Design and Analysis:
    The journal covers cutting-edge circuit design techniques, including analog, digital, and mixed-signal circuits, with a focus on performance optimization and innovative architectures.
  2. Signal Processing Techniques:
    Research on signal processing methods, including hardware implementations, algorithm development, and applications in communications, imaging, and biomedical fields, is a key area of focus.
  3. Low-Power and Energy-Efficient Systems:
    The journal highlights advancements in low-power circuit design and energy-efficient systems, crucial for applications in IoT, wearables, and portable devices.
  4. Machine Learning and AI in Circuits and Systems:
    There is a growing emphasis on the integration of machine learning techniques in circuit design and analysis, aiming to enhance system performance and adaptability.
  5. Emerging Technologies and Applications:
    Research on novel technologies, such as quantum computing, flexible electronics, and energy harvesting, is presented, highlighting their implications in circuits and systems.
The journal has seen a rise in several key themes that reflect the evolving landscape of circuits and systems research. These trending areas highlight innovative approaches and the integration of new technologies.
  1. Machine Learning and AI Applications:
    The integration of machine learning and artificial intelligence into circuit design and optimization is gaining traction, showcasing the potential for improved performance and efficiency.
  2. Energy Harvesting and Sustainable Technologies:
    Research on energy harvesting techniques and sustainable circuit designs is emerging, driven by the increasing demand for low-power and environmentally friendly solutions.
  3. Flexible and Wearable Electronics:
    The development of flexible electronics and wearable technologies is trending, with a focus on circuit design that accommodates the unique challenges of these applications.
  4. High-Speed and High-Frequency Communication Systems:
    Advancements in high-speed wireline and wireless communication systems are a growing focus, driven by the need for faster data transmission and improved connectivity.
  5. Quantum Computing and Advanced Materials:
    There is an increasing interest in the application of quantum computing principles and advanced materials in circuit design, indicating a forward-looking approach to emerging technologies.

Declining or Waning

While the journal has maintained a broad focus on various topics, some areas have shown a decline in recent publications. These waning themes may reflect shifts in research priorities or advancements in technology that render certain approaches less relevant.
  1. Traditional Analog Circuit Techniques:
    There has been a noticeable decrease in papers focused on conventional analog circuit design, possibly due to the shift towards more integrated and digital solutions.
  2. Basic Circuit Theory and Fundamentals:
    Research centered around basic circuit theory and foundational concepts appears to be less frequent, as the journal emphasizes more complex and applied research.
  3. Linear Signal Processing Methods:
    Linear processing techniques are being overshadowed by more advanced, non-linear methods and machine learning approaches, which are capturing greater interest in the field.

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