Vicent M. Rodrigo-Peñarrocha

Orcid: 0000-0002-8075-4851

Affiliations:
  • Universitat Politècnica de València, Electromagnetic Radiation Group, Institute of Telecommunications and Multimedia Applications, Spain


According to our database1, Vicent M. Rodrigo-Peñarrocha authored at least 18 papers between 2006 and 2024.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of five.

Timeline

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Bibliography

2024
Dual-Slope Path Loss Model for Integrating Vehicular Sensing Applications in Urban and Suburban Environments.
Sensors, July, 2024

Narrowband Power Spectral Density Estimation Using a 40 MHz Channel Sounder on SDR Platform for UAV Applications.
Proceedings of the 100th IEEE Vehicular Technology Conference, 2024

2023
Path Loss Characterization in an Outdoor Corridor Environment for IoT-5G in a Smart Campus University at 850 MHz and 3.5 GHz Frequency Bands.
Sensors, November, 2023

2022
Wireless Channel Analysis Between 25 and 40 GHz in an Intra-Wagon Environment for 5G Using a Ray-Tracing Tool.
IEEE Trans. Intell. Transp. Syst., 2022

A Comparison Between Concentrated and Distributed Massive MIMO Channels at 26 GHz in a Large Indoor Environment Using Ray-Tracing.
IEEE Access, 2022

2021
Millimeter Wave MISO-OFDM Transmissions in an Intra-Wagon Environment.
IEEE Trans. Intell. Transp. Syst., 2021

Fading Evaluation in Standardized 5G Millimeter-Wave Band.
IEEE Access, 2021

2019
Millimeter Wave Channel Measurements in an Intra-Wagon Environment.
IEEE Trans. Veh. Technol., 2019

Fading Evaluation in the mm-Wave Band.
IEEE Trans. Commun., 2019

Log-moment estimators of the Nakagami-lognormal distribution.
EURASIP J. Wirel. Commun. Netw., 2019

The Folded Normal Distribution: A New Model for the Small-Scale Fading in Line-of-Sight (LOS) Condition.
IEEE Access, 2019

Empirical Characterization of the Indoor Radio Channel for Array Antenna Systems in the 3 to 4 GHz Frequency Band.
IEEE Access, 2019

Higher Order Statistics in a mmWave Propagation Environment.
IEEE Access, 2019

2017
Small-Scale Fading Analysis of the Vehicular-to-Vehicular Channel inside Tunnels.
Wirel. Commun. Mob. Comput., 2017

2016
Analysis of Small-Scale Fading Distributions in Vehicle-to-Vehicle Communications.
Mob. Inf. Syst., 2016

2013
Path Loss Modeling for Vehicular System Performance and Communication Protocols Evaluation.
Mob. Networks Appl., 2013

2007
Experimental Analysis of the Spectral Efficiency Between 2 and 12 GHz for Indoor MIMO Channels.
Proceedings of the IEEE 18th International Symposium on Personal, 2007

2006
Performance of Dual Selection Combiners Over Correlated Nakagami-mFading With Different Fading Parameters.
IEEE Trans. Commun., 2006


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