학술논문

A Metrological Characterization Approximation for the New Torque Measurement System in Wind Turbines Test Benches
Document Type
Periodical
Source
IEEE Access Access, IEEE. 7:73469-73479 2019
Subject
Aerospace
Bioengineering
Communication, Networking and Broadcast Technologies
Components, Circuits, Devices and Systems
Computing and Processing
Engineered Materials, Dielectrics and Plasmas
Engineering Profession
Fields, Waves and Electromagnetics
General Topics for Engineers
Geoscience
Nuclear Engineering
Photonics and Electrooptics
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Transportation
Torque measurement
Force
Torque
Wind turbines
Standards
Uncertainty
Finite element analysis
Metrology
nacelle
test bench
torque measurement
uncertainty
wind turbine
Language
ISSN
2169-3536
Abstract
This paper presents the new transfer standard for torque measurements in the MN $\cdot \text{m}$ range and its metrological characterization through FEM analyses. Current methods used for torque measurements in such measuring range are not traceable to international standards; this situation has a deep impact in several industries, being especially important in wind energy generation. In order to improve the quality of torque measurements during wind turbine tests, the “EMPIR 14IND14—torque measurements in the MN $\cdot \text{m}$ range,” a new European funded project has been launched. This project aims to develop new transfer standards for obtaining accurate, reliable, and traceable torque measurements in the facilities used for testing wind turbine’s performance. Within this project, CEM (Spanish Center of Metrology) has designed a new transfer standard for torque measurements named “force lever system.” Modeling and simulation technologies have been used not only for designing and testing the proposed system but also for enabling the estimation of its future associated uncertainty even before it is being manufactured. The results have proven that the expected metrological behavior of the designed system will ameliorate the accuracy of current measuring methods while ensuring torque measurements’ traceability. The improvement of the torque measurements’ reliability will make it possible to better diagnose its behavior and to improve wind energy generation efficiency.