Ramón Lecuna Tolosa

RAMÓN LECUNA TOLOSA

 

Ramón Lecuna was born in Torrelavega, on 14 July 1967. He received the M.Sc. degree in Industrial Engineering in 2000 and he received his Ph.D. in Industrial Engineering from the University of Cantabria (UC) in 2017 with a work about a non contact temperature measurement method. Currently, he is an Assistant Professor in the Electrical and Energy Engineering Department of the UC. He has published 6 works in international conferences and he is already working about new contactless temperature measurement systems for real time monitoring on electrical conductors.


icono-mail ramon.lecuna@unican.es

molumen_phone_icon+34 942 846537

474487-icono-ubicacion School of Engineering of Mines and Energy. Office: 134

PROJECTS

  • Dynamic Management in Lines, Fail Analysis and Quality of Supply in Distribution Viesgo Network

PUBLICATIONS

  • Study of Different Mathematical Approaches in Determining the Dynamic Rating of Overhead Power Lines and a Comparison with Real Time Monitoring Data

  • The Use of Computational Fluid Dynamics to Study Furnace Effects in ITS-90 Fixed Points Realizations

  • Comparison between IEEE and CIGRE Thermal Behaviour Standards and Measured Temperature on a 132-kV Overhead Power Line

  • Thermal-Fluid Characterization of Alternative Liquids of Power Transformers: A Numerical Approach

  • Methodology for the Low-Cost Optimisation of Small-Wind Turbines

  • Operational Aspects of Dynamic Line Rating. Application to a Real Case of Grid Integration of Wind Farms

  • A Comparison of Mechanical and Ultrasonic Anemometers for Ampacity Thermal Rating in Overhead Lines

  • A Comparison of Different Methodologies for Rating Definition in Overhead Lines

  • Dynamic Calibration of Overhead Power Networks Based on Environmental Parameters

  • Dynamic Calibration of Overhead Power Networks Based on Environmental Parameters

  • Analysis of a Real Case of Ampacity Management in a 132 kV Network Integrating High Rates of Wind Energy

  • Preliminary Results of a Power Quality Survey in a Distribution Network Based on No-Gap PQ Meters

  • The Use of Computational Fluid Dynamics (CFD) to Improve the ITS-90 Defining Fixed Points Realizations

  • Indirect Estimation of Overhead Line Ampacity in Overhead Lines Integrating Wind Farms

  • Ampacity Forecasting Using Neural Networks

  • Increasing Grid Integration of Wind Energy by using Ampacity Techniques

PATENTS

  • Methodology for the Calculation and Prediction of Ampacity on Overhead Power Lines According to the Choice of Crtitical Sites

  • Method and System for Direct Measurement and no Contact of Surface Temperature in a Cable