Data-driven Modeling in Metrology -- A Short Introduction, Current Developments and Future Perspectives
Schneider, Linda-Sophie, Krauss, Patrick, Schiering, Nadine, Syben, Christopher, Schielein, Richard, Maier, Andreas
–arXiv.org Artificial Intelligence
Abstract: Mathematical models are vital to the field of metrology, playing a key role in the derivation of measurement results and the calculation of uncertainties from measurement data, informed by an understanding of the measurement process. These models generally represent the correlation between the quantity being measured and all other pertinent quantities. Such relationships are used to construct measurement systems that can interpret measurement data to generate conclusions and predictions about the measurement system itself. Classic models are typically analytical, built on fundamental physical principles. However, the rise of digital technology, expansive sensor networks, and high-performance computing hardware have led to a growing shift towards data-driven methodologies. This trend is especially prominent when dealing with large, intricate networked sensor systems in situations where there is limited expert understanding of the frequently changing real-world contexts. Here, we demonstrate the variety of opportunities that data-driven modeling presents, and how they have been already implemented in various real-world applications.
arXiv.org Artificial Intelligence
Jun-24-2024
- Country:
- North America > United States
- New Jersey (0.04)
- Europe
- United Kingdom > England
- Oxfordshire > Oxford (0.04)
- Cambridgeshire > Cambridge (0.04)
- Switzerland > Basel-City
- Basel (0.04)
- Russia > Central Federal District
- Moscow Oblast > Moscow (0.04)
- Germany
- Saarland > Saarbrücken (0.04)
- Bavaria > Middle Franconia
- Nuremberg (0.04)
- Baden-Württemberg > Karlsruhe Region
- Karlsruhe (0.04)
- United Kingdom > England
- North America > United States
- Genre:
- Research Report (1.00)
- Overview (1.00)
- Instructional Material > Course Syllabus & Notes (0.46)
- Industry:
- Energy (1.00)
- Education (1.00)
- Information Technology (0.68)
- Health & Medicine
- Diagnostic Medicine > Imaging (0.93)
- Therapeutic Area (0.93)
- Technology:
- Information Technology
- Sensing and Signal Processing > Image Processing (1.00)
- Modeling & Simulation (1.00)
- Internet of Things (1.00)
- Data Science > Data Mining (1.00)
- Information Management (0.92)
- Communications > Networks
- Sensor Networks (0.89)
- Artificial Intelligence
- Vision (1.00)
- Cognitive Science (1.00)
- Representation & Reasoning
- Uncertainty (1.00)
- Model-Based Reasoning (0.68)
- Machine Learning > Neural Networks
- Deep Learning (1.00)
- Information Technology