Journal of Systems Engineering and Electronics

Scope & Guideline

Advancing the Frontiers of Systems Engineering and Electronics

Introduction

Delve into the academic richness of Journal of Systems Engineering and Electronics with our guidelines, detailing its aims and scope. Our resource identifies emerging and trending topics paving the way for new academic progress. We also provide insights into declining or waning topics, helping you stay informed about changing research landscapes. Evaluate highly cited topics and recent publications within these guidelines to align your work with influential scholarly trends.
LanguageEnglish
ISSN1004-4132
PublisherSYSTEMS ENGINEERING & ELECTRONICS, EDITORIAL DEPT
Support Open AccessNo
Country-
Type-
Converge-
AbbreviationJ SYST ENG ELECTRON / J. Syst. Eng. Electron.
Frequency6 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressPO BOX 142-32, BEIJING 100854, PEOPLES R CHINA

Aims and Scopes

The Journal of Systems Engineering and Electronics focuses on interdisciplinary research that integrates systems engineering principles with advancements in electronics, communications, and computational methods. It aims to provide a platform for innovative solutions and methodologies in complex system design and analysis.
  1. Systems Engineering Methodologies:
    Research on methodologies for the design, analysis, and management of complex systems, including model-based systems engineering and simulation techniques.
  2. Electronics and Communication Systems:
    Studies focusing on the development and optimization of electronic systems, including radar, satellite communications, and sensor networks.
  3. Computational Intelligence and Optimization:
    Exploration of computational methods such as machine learning, optimization algorithms, and artificial intelligence applications in system performance enhancement.
  4. Autonomous Systems and Robotics:
    Research related to the design and operation of autonomous systems, including unmanned aerial vehicles (UAVs) and collaborative robotic systems.
  5. Signal Processing and Detection:
    Innovations in signal processing techniques for improved detection, tracking, and recognition in various applications, particularly in radar and remote sensing.
  6. Safety and Reliability Engineering:
    Studies addressing the reliability, safety, and risk management of systems, particularly in critical applications such as aerospace and defense.
The Journal of Systems Engineering and Electronics has identified several emerging themes that reflect current technological advancements and research interests. These trends highlight the evolving landscape of systems engineering and electronics.
  1. Satellite and Space Systems:
    An increasing number of studies focus on Low Earth Orbit (LEO) satellite networks and their applications, driven by advancements in satellite technology and the growing demand for global communications.
  2. Artificial Intelligence in System Optimization:
    There is a significant rise in the application of AI techniques, particularly deep learning and reinforcement learning, for optimizing complex systems and enhancing decision-making processes.
  3. Cyber-Physical Systems and IoT Integration:
    Research is trending towards the integration of cyber-physical systems with IoT technologies, emphasizing real-time data processing and collaborative system functionalities.
  4. Robustness and Resilience in System Design:
    Emerging studies focus on designing systems that are robust and resilient to uncertainties and external disturbances, particularly in critical applications like defense and aerospace.
  5. Energy-Efficient Systems:
    A notable trend is the emphasis on energy efficiency in system designs, particularly in communication systems and autonomous vehicles, reflecting global sustainability efforts.

Declining or Waning

While the journal continues to explore a broad range of topics, certain themes have shown a decline in research focus over recent years. These waning scopes indicate a shift in the interests of the research community.
  1. Traditional Control Systems:
    Research concerning classical control theory and methods has decreased as newer techniques, such as adaptive and robust control strategies, gain traction.
  2. Basic Theoretical Studies:
    There is a noticeable reduction in publications focused solely on theoretical frameworks without practical applications, as researchers increasingly emphasize applied research.
  3. Low-Dimensional Sensor Networks:
    Interest in simpler sensor network designs has waned in favor of more complex, integrated sensor systems that leverage advanced technologies like IoT.

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