tm-Technisches Messen

Scope & Guideline

Fostering Collaboration in Engineering Excellence

Introduction

Delve into the academic richness of tm-Technisches Messen 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.
LanguageGerman
ISSN0171-8096
PublisherWALTER DE GRUYTER GMBH
Support Open AccessNo
CountryGermany
TypeJournal
Convergefrom 1931 to 1939, from 1941 to 1943, 1948, from 1950 to 1953, from 1956 to 2024
AbbreviationTM-TECH MESS / tm-Tech. Mess.
Frequency12 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 'tm-Technisches Messen' focuses on the advancement of measurement technologies and methodologies across various scientific and engineering disciplines. It aims to provide a platform for researchers and practitioners to share innovative approaches, techniques, and applications in metrology and sensor technology.
  1. Metrology and Measurement Techniques:
    The journal emphasizes the development and application of measurement techniques, focusing on precision, accuracy, and reliability in various fields such as mechanical, electrical, and thermal measurements.
  2. Sensor Technology and Innovations:
    Research on advanced sensor technologies, including the design, calibration, and application of sensors in industrial and laboratory settings, is a core area of focus.
  3. Data Analysis and Modeling in Measurement:
    The journal promotes the use of data-driven methods and modeling techniques to enhance measurement processes, including machine learning and statistical analysis.
  4. Environmental and Industrial Applications:
    It covers the application of measurement technologies in environmental monitoring, industrial processes, and quality assurance, highlighting real-world implications and advancements.
  5. Interdisciplinary Approaches to Measurement Science:
    The journal encourages interdisciplinary research that combines principles from various fields to innovate measurement techniques and improve accuracy and reliability.
In recent years, 'tm-Technisches Messen' has witnessed a notable shift towards several emerging themes that reflect contemporary challenges and technological advancements in the field of measurement science. These trends indicate a growing interest in innovative methodologies and applications.
  1. Machine Learning and AI in Measurement:
    The integration of machine learning and artificial intelligence in measurement processes is gaining traction, demonstrating potential for enhancing data analysis, predictive modeling, and automation in measurement systems.
  2. Smart Sensors and IoT Applications:
    Research on smart sensors and the Internet of Things (IoT) is on the rise, focusing on how connected devices can improve data collection, monitoring, and efficiency in various applications.
  3. Real-Time Measurement Technologies:
    There is an increasing emphasis on real-time measurement and monitoring technologies, particularly in industrial applications where immediate feedback is critical for operational efficiency.
  4. Environmental Measurement and Sustainability:
    The journal is seeing a growing trend in research related to environmental measurements, including air quality, water quality, and sustainability metrics, reflecting global priorities.
  5. Advanced Imaging and Visualization Techniques:
    Emerging imaging techniques that enhance measurement accuracy and visualization capabilities are trending, such as optical and laser-based methods, which allow for more detailed analysis.

Declining or Waning

While 'tm-Technisches Messen' consistently explores a variety of themes, certain areas have shown a decline in publication frequency or interest over recent years. This may reflect changing priorities within the field of measurement science or a shift towards more contemporary topics.
  1. Traditional Calibration Methods:
    There appears to be a waning interest in conventional calibration methods as newer, more efficient techniques and technologies emerge, reducing the relevance of traditional practices.
  2. Static Measurement Techniques:
    Static measurement methods are being overshadowed by dynamic and real-time measurement techniques that offer more practical applications in fast-paced industrial environments.
  3. Basic Measurement Theory:
    The foundational theories of measurement are receiving less attention as applied research and innovative methodologies take precedence, indicating a shift towards practical applications rather than theoretical discussions.
  4. Single-Sensor Systems:
    Research focused solely on single-sensor systems is declining as the field moves towards integrated and multi-sensor systems that provide more comprehensive data and insights.
  5. Lower Priority on Historical Measurement Techniques:
    Historical methods and their analysis are becoming less prominent, as there is a stronger demand for cutting-edge technologies that meet modern measurement needs.

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