FREQUENZ

Scope & Guideline

Illuminating the Path of Engineering Discoveries

Introduction

Welcome to your portal for understanding FREQUENZ, 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
ISSN0016-1136
PublisherWALTER DE GRUYTER GMBH
Support Open AccessNo
CountryGermany
TypeJournal
Convergefrom 1949 to 2024
AbbreviationFREQUENZ / Frequenz
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 journal 'FREQUENZ' primarily focuses on research in the field of antenna design, electromagnetic compatibility, and wireless communication technologies. It aims to publish innovative studies that contribute to the development of advanced communication systems and devices.
  1. Antenna Design and Characterization:
    Research articles on novel antenna designs, including compact, flexible, and multi-band antennas for various applications such as biomedical, wearable technologies, and wireless communications.
  2. Electromagnetic Wave Propagation and Scattering:
    Studies that explore the behavior of electromagnetic waves in different environments, including complex materials and structures, and their implications for communication systems.
  3. Metamaterials and Advanced Materials:
    Innovative applications of metamaterials in antenna and sensor design, focusing on enhancing performance characteristics such as bandwidth, gain, and polarization.
  4. Wireless Communication Technologies:
    Papers that delve into advancements in wireless communication protocols, including 5G, B5G, and IoT applications, emphasizing system integration and performance optimization.
  5. Biomedical Applications of Antennas:
    Research exploring the integration of antennas in medical devices for diagnostics and treatment, particularly in areas such as tumor detection and health monitoring.
Recent publications in 'FREQUENZ' have highlighted several emerging themes that reflect the evolving landscape of antenna technology and wireless communication. These trends indicate the journal's responsiveness to contemporary research needs.
  1. 5G and Beyond Communication Systems:
    An increasing number of studies are focused on developing antennas and systems tailored for 5G and future communication technologies, emphasizing high data rates and low latency.
  2. Machine Learning and AI in Antenna Design:
    Research utilizing machine learning algorithms for optimizing antenna designs and performance analysis is gaining traction, indicating a shift towards data-driven methodologies.
  3. Wearable and Implantable Technologies:
    There is a growing emphasis on the design of antennas for wearable and implantable medical devices, reflecting the rising interest in health monitoring and telemedicine applications.
  4. Metasurface and Reconfigurable Antennas:
    Innovations in metasurface technology and reconfigurable antennas are increasingly prevalent, showcasing advances in adaptability and performance across various frequency bands.
  5. Environmental and Sustainability Considerations:
    Emerging studies are addressing the environmental impacts of antenna technology and exploring sustainable materials and practices in antenna design and deployment.

Declining or Waning

While 'FREQUENZ' continues to thrive in several core areas, certain themes appear to be declining in prominence as the focus of research evolves. This section highlights those waning topics.
  1. Conventional RF Components:
    There is a noticeable decrease in publications focusing on traditional RF components, such as standard filters and amplifiers, as the field shifts towards more integrated and innovative solutions.
  2. Basic Antenna Theory:
    Research centered on foundational antenna theories seems to be declining, with more emphasis now placed on practical applications and advanced designs that leverage modern computational techniques.
  3. Single-Mode Antennas:
    The focus on single-mode antennas is diminishing as the demand for multifunctional and multi-band antennas increases, driven by the need for devices to support multiple communication standards.

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