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Electronics and Electrical Engineering

D-Index
35
Citations
4546
World Ranking
5621
National Ranking
106

Overview

Paris Velez is affiliated with the Autonomous University of Barcelona in Spain. Their research primarily focuses on engineering, with a significant emphasis on electrical and electronic engineering as well as biomedical engineering.

The scientist's recent scholarly output includes papers published between 2020 and 2021 in peer-reviewed journals. Notable papers include:

  • Planar Microwave Resonant Sensors: A Review and Recent Developments, 2020, Applied Sciences
  • On the Sensitivity of Reflective-Mode Phase-Variation Sensors Based on Open-Ended Stepped-Impedance Transmission Lines: Theoretical Analysis and Experimental Validation, 2020, IEEE Transactions on Microwave Theory and Techniques
  • Single-Frequency Amplitude-Modulation Sensor for Dielectric Characterization of Solids and Microfluidics, 2021, IEEE Sensors Journal
  • Highly Sensitive Phase-Variation Dielectric Constant Sensor Based on a Capacitively-Loaded Slow-Wave Transmission Line, 2021, IEEE Transactions on Circuits and Systems I Regular Papers
  • Highly Sensitive Reflective-Mode Phase-Variation Permittivity Sensor Based on a Coplanar Waveguide Terminated With an Open Complementary Split Ring Resonator (OCSRR), 2021, IEEE Access

Key research topics covered in their work include microwave and dielectric measurement techniques, acoustic wave resonator technologies, and microwave engineering and waveguides. Other areas of research involve advanced fiber optic sensors, advanced antenna and metasurface technologies, advanced MEMS and NEMS technologies, and photonic and optical devices.

Paris Velez frequently publishes in several journals and conference proceedings. Their main publication venues are:

  • IEEE Sensors Journal
  • IEEE Transactions on Microwave Theory and Techniques
  • IEEE Access
  • Sensors
  • 2022 IEEE Sensors

The scientist collaborates regularly with several co-authors. Frequent collaborators include Ferran Martín, Pau Casacuberta, Lijuan Su, Jonathan Muñoz-Enano, and Marta Gil.

Their work spans various subfields, with a dominant focus on electrical and electronic engineering, biomedical engineering, aerospace engineering, atomic and molecular physics and optics, and media technology.

Best Publications

  • Microwave Microfluidic Sensor Based on a Microstrip Splitter/Combiner Configuration and Split Ring Resonators (SRRs) for Dielectric Characterization of Liquids

    Paris Velez;Lijuan Su;Katia Grenier;Javier Mata-Contreras

  • Split Ring Resonator-Based Microwave Fluidic Sensors for Electrolyte Concentration Measurements

    Paris Velez;Jonathan Munoz-Enano;Katia Grenier;Javier Mata-Contreras

  • Splitter/Combiner Microstrip Sections Loaded With Pairs of Complementary Split Ring Resonators (CSRRs): Modeling and Optimization for Differential Sensing Applications

    Lijuan Su;Javier Mata-Contreras;Paris Velez;Ferran Martin

  • Highly-Sensitive Microwave Sensors Based on Open Complementary Split Ring Resonators (OCSRRs) for Dielectric Characterization and Solute Concentration Measurement in Liquids

    Paris Velez;Katia Grenier;Javier Mata-Contreras;David Dubuc

  • Analytical Method to Estimate the Complex Permittivity of Oil Samples.

    Lijuan Su;Javier Mata-Contreras;Paris Vélez;Armando Fernández-Prieto

  • Planar Microwave Resonant Sensors: A Review and Recent Developments

    Jonathan Muñoz-Enano;Paris Vélez;Marta Gil;Ferran Martín

  • On the Sensitivity of Reflective-Mode Phase-Variation Sensors Based on Open-Ended Stepped-Impedance Transmission Lines: Theoretical Analysis and Experimental Validation

    Jonathan Munoz-Enano;Paris Velez;Lijuan Su;Marta Gil

  • Single-Frequency Amplitude-Modulation Sensor for Dielectric Characterization of Solids and Microfluidics

    Paris Velez;Jonathan Munoz-Enano;Amir Ebrahimi;Cristian Herrojo

  • Highly Sensitive Phase-Variation Dielectric Constant Sensor Based on a Capacitively-Loaded Slow-Wave Transmission Line

    Amir Ebrahimi;Jan Coromina;Jonathan Munoz-Enano;Paris Velez

  • An Analytical Method to Implement High-Sensitivity Transmission Line Differential Sensors for Dielectric Constant Measurements

    Jonathan Munoz-Enano;Paris Velez;Marta Gil Barba;Ferran Martin

  • Planar Microwave Sensors

    Unknown

  • Differential Sensor Based on Electroinductive Wave Transmission Lines for Dielectric Constant Measurements and Defect Detection

    Marta Gil;Paris Velez;Francisco Aznar-Ballesta;Jonathan Munoz-Enano

  • Frequency-Variation Sensors for Permittivity Measurements Based on Dumbbell-Shaped Defect Ground Structures (DB-DGS): Analytical Method and Sensitivity Analysis

    Unknown

  • Circuit Analysis of a Coplanar Waveguide (CPW) Terminated With a Step-Impedance Resonator (SIR) for Highly Sensitive One-Port Permittivity Sensing

    Unknown

  • Differential Bandpass Filter With Common-Mode Suppression Based on Open Split Ring Resonators and Open Complementary Split Ring Resonators

    P. Velez;J. Naqui;A. Fernandez-Prieto;M. Duran-Sindreu

  • Differential-Mode to Common-Mode Conversion Detector Based on Rat-Race Hybrid Couplers: Analysis and Application to Differential Sensors and Comparators

    Jonathan Munoz-Enano;Paris Velez;Marta Gil Barba;Javier Mata-Contreras

  • Highly Sensitive Reflective-Mode Phase-Variation Permittivity Sensor Based on a Coplanar Waveguide Terminated With an Open Complementary Split Ring Resonator (OCSRR)

    Lijuan Su;Jonathan Munoz-Enano;Paris Velez;Marta Gil-Barba

  • A Reflective-Mode Phase-Variation Displacement Sensor

    Jonathan Munoz-Enano;Paris Velez;Lijuan Su;Marta Gil-Barba

  • Highly Sensitive Phase Variation Sensors Based on Step-Impedance Coplanar Waveguide (CPW) Transmission Lines

    Lijuan Su;Jonathan Munoz-Enano;Paris Velez;Pau Casacuberta Orta

  • Highly Sensitive Reflective-Mode Phase-Variation Permittivity Sensors Using Coupled Line Sections

    Unknown

  • Differential Microfluidic Sensors Based on Dumbbell-Shaped Defect Ground Structures in Microstrip Technology: Analysis, Optimization, and Applications.

    Paris Vélez;Jonathan Muñoz-Enano;Marta Gil;Javier Mata-Contreras

  • Configurations of Splitter/Combiner Microstrip Sections Loaded with Stepped Impedance Resonators (SIRs) for Sensing Applications

    Lijuan Su;Javier Mata-Contreras;Paris Vélez;Ferran Martín

  • A Review of Sensing Strategies for Microwave Sensors Based on Metamaterial-Inspired Resonators: Dielectric Characterization, Displacement, and Angular Velocity Measurements for Health Diagnosis, Telecommunication, and Space Applications

    Lijuan Su;Javier Mata-Contreras;Paris Vélez;Ferran Martín

  • Automated Design of Common-Mode Suppressed Balanced Wideband Bandpass Filters by Means of Aggressive Space Mapping

    Marc Sans;Jordi Selga;Paris Velez;Ana Rodriguez

  • Composite Right‐/Left‐Handed Transmission Line Metamaterials

    Miguel Durán-Sindreu;Jordi Naqui;Jordi Selga;Paris Vélez

Frequent Co-Authors

Ferran Martin
Ferran Martin Autonomous University of Barcelona
Jordi Bonache
Jordi Bonache Autonomous University of Barcelona
Vicente E. Boria
Vicente E. Boria Universitat Politècnica de València
Christophe Fumeaux
Christophe Fumeaux University of Queensland
Jia-Sheng Hong
Jia-Sheng Hong Heriot-Watt University

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