default search action
Francesc Rocadenbosch
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [c36]Andreu Salcedo-Bosch, Simone Lolli, Aina Escalera, Francesc Rocadenbosch, Carlos López-Martínez:
On the Feasibility of Radial Spatial Averaging to Improve Satellite Synthetic Aperture Radar Ocean Wind Retrievals. IGARSS 2024: 5748-5751 - [c35]Andreu Salcedo-Bosch, Francesc Rocadenbosch:
Analytical-Model Compensation of the Motion-Induced Turbulence in Floating Doppler-Wind Lidar Measurements. IGARSS 2024: 6246-6250 - 2023
- [j23]Andreu Salcedo-Bosch, Joan Farré-Guarné, Marcos Paulo Araújo da Silva, Francesc Rocadenbosch:
A Unified Formulation for the Computation of the Six-Degrees-of-Freedom-Motion-Induced Errors in Floating Doppler Wind LiDARs. Remote. Sens. 15(6): 1478 (2023) - [j22]Marcos Paulo Araújo da Silva, Andreu Salcedo-Bosch, Francesc Rocadenbosch, Alfredo Peña:
On the Retrieval of Surface-Layer Parameters from Lidar Wind-Profile Measurements. Remote. Sens. 15(10): 2660 (2023) - [c34]Marcos Paulo Araújo da Silva, Francesc Rocadenbosch, Andreu Salcedo-Bosch, Alfredo Peña:
Retrieving Monin-Obukhov Dimensionless Wind Shear And Stability From Floating Lidar Observations. IGARSS 2023: 3870-3873 - [c33]Andreu Salcedo-Bosch, Francesc Rocadenbosch:
On the Performance of the Unscented Kalman Filter for Floating Doppler Wind Lidar Motion Correction in an Open-Sea Scenario. IGARSS 2023: 3874-3877 - [c32]Andreu Salcedo-Bosch, Marcos Paulo Araújo da Silva, Francesc Rocadenbosch:
Atmospheric Stability Classification from Floating Doppler Wind Lidar Measurements: A Machine Learning Approach. IGARSS 2023: 3878-3881 - [c31]Marcos Paulo Araújo da Silva, Francesc Rocadenbosch, Andreu Salcedo-Bosch, Alfredo Peña:
On the Use of Wind Profiles to Assess Surface Boundary-Layer Parameters. IGARSS 2023: 4427-4430 - 2022
- [j21]Marcos Paulo Araújo da Silva, Francesc Rocadenbosch, Joan Farré-Guarné, Andreu Salcedo-Bosch, Daniel Gonzalez-Marco, Alfredo Peña:
Assessing Obukhov Length and Friction Velocity from Floating Lidar Observations: A Data Screening and Sensitivity Computation Approach. Remote. Sens. 14(6): 1394 (2022) - [j20]Andreu Salcedo-Bosch, Francesc Rocadenbosch, Joaquim Sospedra:
Enhanced Dual Filter for Floating Wind Lidar Motion Correction: The Impact of Wind and Initial Scan Phase Models. Remote. Sens. 14(19): 4704 (2022) - [j19]Marcos Paulo Araújo da Silva, Francesc Rocadenbosch, Robin Tanamachi, Umar Saeed:
Motivating a Synergistic Mixing-Layer Height Retrieval Method Using Backscatter Lidar Returns and Microwave-Radiometer Temperature Observations. IEEE Trans. Geosci. Remote. Sens. 60: 1-18 (2022) - [c30]Marcos Paulo Araújo da Silva, Francesc Rocadenbosch, Robin Tanamachi, Umar Saeed:
Synergistic Mixed-Layer Height Retrieval Method Using Microwave Radiometer and Lidar Ceilometer Observations. IGARSS 2022: 6566-6569 - [c29]Andreu Salcedo-Bosch, Francesc Rocadenbosch, Joaquim Sospedra:
On Adaptive Unscented Kalman Filtering for Floating Doppler Wind-Lidar Motion Correction: Effect of the Number of Lidar Measurement Heights. IGARSS 2022: 6578-6581 - [c28]Andreu Salcedo-Bosch, P. Domínguez-Pla, Francesc Rocadenbosch, Stephen J. Frasier:
Numerical Solver for Vertical Air Motion Estimation. IGARSS 2022: 7193-7196 - [c27]Marcos Paulo Araújo da Silva, Francesc Rocadenbosch, Joan Farré-Guarné, Andreu Salcedo-Bosch, Daniel González-Marco, Alfredo Peña:
Floating Lidar Assessment of Atmospheric Stability in the North Sea. IGARSS 2022: 7313-7316 - 2021
- [j18]Andreu Salcedo-Bosch, Francesc Rocadenbosch, Joaquim Sospedra:
A Robust Adaptive Unscented Kalman Filter for Floating Doppler Wind-LiDAR Motion Correction. Remote. Sens. 13(20): 4167 (2021) - [j17]Andreu Salcedo-Bosch, Francesc Rocadenbosch, Miguel Angel Gutiérrez-Antuñano, Jordi Tiana-Alsina:
Estimation of Wave Period from Pitch and Roll of a Lidar Buoy. Sensors 21(4): 1310 (2021) - [j16]Constantino Muñoz-Porcar, Michaël Sicard, María-José Granados-Muñoz, Rubén Barragán, Adolfo Comerón, Francesc Rocadenbosch, Alejandro Rodríguez-Gómez, David Garcia-Vizcaino:
Synergy of Raman Lidar and Modeled Temperature for Relative Humidity Profiling: Assessment and Uncertainty Analysis. IEEE Trans. Geosci. Remote. Sens. 59(10): 8841-8852 (2021) - [c26]Andreu Salcedo-Bosch, Joan Farré-Guarné, Josep Sala-Álvarez, Javier Villares-Piera, Robin Tanamachi, Francesc Rocadenbosch:
Floating Doppler Wind Lidar Motion Simulator for Horizontal Wind Speed Measurement Error Assessment. IGARSS 2021: 7716-7719 - [c25]Constantino Muñoz-Porcar, Marcos Paulo Araújo da Silva, Umar Saeed, Francesc Rey, Maria Teresa Pay, Francesc Rocadenbosch:
Variance Processing for Stable Boundary-Layer Height Estimation Using Backscatter Lidar Data: A Discussion. IGARSS 2021: 8045-8048 - 2020
- [j15]Francesc Rocadenbosch, Rubén Barragán, Stephen J. Frasier, Joseph Waldinger, David D. Turner, Robin Tanamachi, Daniel T. Dawson:
Ceilometer-Based Rain-Rate Estimation: A Case-Study Comparison With S-Band Radar and Disdrometer Retrievals in the Context of VORTEX-SE. IEEE Trans. Geosci. Remote. Sens. 58(12): 8268-8284 (2020) - [c24]Andreu Salcedo-Bosch, Francesc Rocadenbosch, Miguel Angel Gutiérrez-Antuñano, Jordi Tiana-Alsina:
Motional Behavior Estimation Using Simple Spectral Estimation: Application to The Off-Shore Wind Lidar. IGARSS 2020: 5682-5685 - [c23]Andreu Salcedo-Bosch, Miguel Angel Gutiérrez-Antuñano, Jordi Tiana-Alsina, Francesc Rocadenbosch:
Floating Doppler Wind Lidar Measurement of Wind Turbulence: A Cluster Analysis. IGARSS 2020: 6077-6080 - [c22]Marcos Paulo Araújo da Silva, Andreu Salcedo-Bosch, Miguel Angel Gutiérrez-Antuñano, Francesc Rocadenbosch:
Offshore Doppler Wind LiDAR Assessment of Atmospheric Stability. IGARSS 2020: 6081-6084
2010 – 2019
- 2018
- [j14]Eduard Gregorio-Lopez, Jordi Gené, Ricardo Sanz-Cortiella, Francesc Rocadenbosch, Patricia Chueca, Jaume Arnó, Francesc Solanelles, Joan Ramón Rosell Polo:
Polarization Lidar Detection of Agricultural Aerosol Emissions. J. Sensors 2018: 1864106:1-1864106:9 (2018) - [j13]Miguel Angel Gutiérrez-Antuñano, Jordi Tiana-Alsina, Andreu Salcedo, Francesc Rocadenbosch:
Estimation of the Motion-Induced Horizontal-Wind-Speed Standard Deviation in an Offshore Doppler Lidar. Remote. Sens. 10(12): 2037 (2018) - [j12]Adolfo Comerón, Alejandro Rodríguez-Gómez, Michaël Sicard, Rubén Barragán, Constantino Muñoz, Francesc Rocadenbosch, María-José Granados-Muñoz:
Considerations about the Determination of the Depolarization Calibration Profile of a Two-Telescope Lidar and Its Implications for Volume Depolarization Ratio Retrieval. Sensors 18(6): 1807 (2018) - [j11]Constantino Muñoz-Porcar, Adolfo Comerón, Michaël Sicard, Rubén Barragán, David Garcia-Vizcaino, Alejandro Rodríguez-Gómez, Francesc Rocadenbosch, María-José Granados-Muñoz:
Calibration of Raman Lidar Water Vapor Mixing Ratio Measurements Using Zenithal Measurements of Diffuse Sunlight and a Radiative Transfer Model. IEEE Trans. Geosci. Remote. Sens. 56(12): 7405-7414 (2018) - 2017
- [j10]Adolfo Comerón, Constantino Muñoz, Francesc Rocadenbosch, Alejandro Rodríguez-Gómez, Michaël Sicard:
Current Research in Lidar Technology Used for the Remote Sensing of Atmospheric Aerosols. Sensors 17(6): 1450 (2017) - [j9]Alejandro Rodríguez-Gómez, Michaël Sicard, María-José Granados-Muñoz, Enis Ben Chahed, Constantino Muñoz, Rubén Barragán, Adolfo Comerón, Francesc Rocadenbosch, Eric Vidal:
An Architecture Providing Depolarization Ratio Capability for a Multi-Wavelength Raman Lidar: Implementation and First Measurements. Sensors 17(12): 2957 (2017) - [c21]Miguel Angel Gutiérrez-Antuñano, Jordi Tiana-Alsina, Francesc Rocadenbosch, Joaquim Sospedra, Rajai Aghabi, Daniel Gonzalez-Marco:
A wind-lidar buoy for offshore wind measurements: First commissioning test-phase results. IGARSS 2017: 1607-1610 - [c20]Jordi Tiana-Alsina, Francesc Rocadenbosch, Miguel Angel Gutiérrez-Antuñano:
Vertical Azimuth Display simulator for wind-Doppler lidar error assessment. IGARSS 2017: 1614-1617 - 2016
- [j8]Eduard Gregorio-Lopez, Xavier Torrent, Santiago Planas de Martí, Francesc Solanelles, Ricardo Sanz-Cortiella, Francesc Rocadenbosch, Joan Masip, Manel Ribes-Dasi, Joan Ramón Rosell Polo:
Measurement of Spray Drift with a Specifically Designed Lidar System. Sensors 16(4): 499 (2016) - [j7]Umar Saeed, Francesc Rocadenbosch, Susanne Crewell:
Adaptive Estimation of the Stable Boundary Layer Height Using Combined Lidar and Microwave Radiometer Observations. IEEE Trans. Geosci. Remote. Sens. 54(12): 6895-6906 (2016) - 2015
- [j6]Eduard Gregorio-Lopez, Francesc Rocadenbosch, Ricardo Sanz-Cortiella, Joan Ramón Rosell Polo:
Eye-Safe Lidar System for Pesticide Spray Drift Measurement. Sensors 15(2): 3650-3670 (2015) - [j5]Diego Lange Vega, Francesc Rocadenbosch, Jordi Tiana-Alsina, Stephen J. Frasier:
Atmospheric Boundary Layer Height Estimation Using a Kalman Filter and a Frequency-Modulated Continuous-Wave Radar. IEEE Trans. Geosci. Remote. Sens. 53(6): 3338-3349 (2015) - [c19]Miguel A. Gutierrez, Jordi Tiana-Alsina, O. Bischoff, Jordi Cateura, Francesc Rocadenbosch:
Performance evaluation of a floating Doppler wind lidar buoy in mediterranean near-shore conditions. IGARSS 2015: 2147-2150 - [c18]Umar Saeed, Francesc Rocadenbosch, Susanne Crewell:
Adaptive estimation of the stable boundary-layer height using backscatter LiDAR data and a Kalman filter. IGARSS 2015: 3591-3594 - [c17]Umar Saeed, Francesc Rocadenbosch, Susanne Crewell:
Synergetic use of LiDAR and microwave radiometer observations for boundary-layer height detection. IGARSS 2015: 3945-3948 - [c16]Jordi Tiana-Alsina, Miguel A. Gutierrez, Ines Würth, Joan Puigdefabregas, Francesc Rocadenbosch:
Motion compensation study for a floating Doppler wind LiDAR. IGARSS 2015: 5379-5382 - 2014
- [j4]Diego Lange Vega, Jordi Tiana-Alsina, Umar Saeed, Sergio Tomás, Francesc Rocadenbosch:
Atmospheric Boundary Layer Height Monitoring Using a Kalman Filter and Backscatter Lidar Returns. IEEE Trans. Geosci. Remote. Sens. 52(8): 4717-4728 (2014) - 2012
- [j3]Francesc Rocadenbosch, Stephen J. Frasier, Dhiraj Kumar, Diego Lange Vega, Eduard Gregorio-Lopez, Michaël Sicard:
Backscatter Error Bounds for the Elastic Lidar Two-Component Inversion Algorithm. IEEE Trans. Geosci. Remote. Sens. 50(11): 4791-4803 (2012) - [c15]Dhiraj Kumar, Diego Lange Vega, Francesc Rocadenbosch, Sergio Tomás, Michaël Sicard, Constantino Muñoz, Adolfo Comerón:
Power budget and performance assessment for the RSLAB multispectral elastic/raman lidar system. IGARSS 2012: 4703-4706 - [c14]Diego Lange Vega, Dhiraj Kumar, Francesc Rocadenbosch:
Backscattered signal level and SNR validation methodology for tropospheric elastic lidars. IGARSS 2012: 4707-4710 - 2010
- [j2]Roberto Pedrós, Víctor Estellés, Michaël Sicard, José Luis Gómez-Amo, María Pilar Utrillas, José A. Martínez-Lozano, Francesc Rocadenbosch, Carlos Pérez, José María Baldasano Recio:
Climatology of the Aerosol Extinction-to-Backscatter Ratio from Sun-Photometric Measurements. IEEE Trans. Geosci. Remote. Sens. 48(1-1): 237-249 (2010)
2000 – 2009
- 2009
- [j1]Michaël Sicard, Francisco Molero, Juan Luis Guerrero-Rascado, Roberto Pedrós, Francisco Javier Expósito, Carmen Córdoba-Jabonero, José Miguel Bolarín, Adolfo Comerón, Francesc Rocadenbosch, Manuel Pujadas, Lucas Alados-Arboledas, José A. Martínez-Lozano, Juan Pedro Díaz, Manuel Gil, Alberto Requena, Francisco Navas-Guzmán, José Maria Moreno:
Aerosol Lidar Intercomparison in the Framework of SPALINET - The Spanish Lidar Network: Methodology and Results. IEEE Trans. Geosci. Remote. Sens. 47(10): 3547-3559 (2009) - 2008
- [c13]Francesc Rocadenbosch, Ina Mattis, Albert Ansmann, Ulla Wandinger, Christine Böckmann, Gelsomina Pappalardo, Aldo Amodeo, Jens Bosenberg, Lucas Alados-Arboledas, Arnoud Apituley, Dimitris Balis, Anatoly Chaikovsky, Adolfo Comerón, Constantino Muñoz, Michaël Sicard, Volker Freudenthaler, Matthias Wiegner, Ove Gustafsson, Georg Hansen, Rodanthi-Elisabeth Mamouri, Alexandros Papayannis, Valentin Mitev, Doina Nicolae, Carlos Pérez, Maria Rita Perrone, Aleksander Pietruczuk, Manuel Pujadas, Jean-Philippe Putaud, Francois Ravetta, Vincenzo Rizi, Valentin Simeonov, Nicola Spinelli, Dimitar Stoyanov, Thomas Trickl:
The European Aerosol Research Lidar Network (EARLINET): An Overview. IGARSS (2) 2008: 410-413 - [c12]Arnoud Apituley, Volker Freudenthaler, Adolfo Comerón, Francesc Rocadenbosch:
Earlinet Approach to Optimisation of Individual Network Instruments with the Aim of Homogenisation of Aerosol Data Products and Increased Data Coverage. IGARSS (2) 2008: 414-417 - [c11]Michaël Sicard, Sergio Tomás, Adolfo Comerón, Francesc Rocadenbosch, Alejandro Rodríguez, Constantino Muñoz, Oscar Batet:
Planetary Boundary Layer Height and Wind Field Characterization by Means of a Lidar at the Teide Observatory in the Canary Islands. IGARSS (3) 2008: 915-918 - [c10]Francesc Rocadenbosch, Michaël Sicard, Adolfo Comerón, Mohd Nadzri Md. Reba:
Comparison between the Kalman and the Non-Linear Least-Squares Estimators in Low Signal-to-Noise Ratio Lidar Inversion. IGARSS (3) 2008: 1083-1086 - [c9]Sergio Tomás, Constantino Muñoz, Michaël Sicard, Francesc Rocadenbosch, Alejandro Rodríguez, Adolfo Comerón:
Overview of Wind Lidar Techniques and Current Related Developments at the Technical University of Catalonia. IGARSS (2) 2008: 1120-1123 - 2007
- [c8]Michaël Sicard, Mohd Nadzri Md. Reba, Francesc Rocadenbosch, Eduard Gregorio-Lopez, Dhiraj Kumar, Sergio Tomás, Adolfo Comerón, Francisco Molero, Manuel Pujadas, Juan Luis Guerrero-Rascado, Roberto Pedrós, José Antonio Martínez:
Intercomparison of spanish advanced lidars in the framework of EARLINET. IGARSS 2007: 2763-2766 - [c7]Francesc Rocadenbosch, Adolfo Comerón, Michaël Sicard, Mohd Nadzri Md. Reba:
Statistical considerations on the extinction error variance for the raman lidar inversion algorithm. IGARSS 2007: 2771-2774 - [c6]Constantino Muñoz, Alejandro Rodríguez, Adolfo Comerón, Oscar Batet, David García, Francesc Rocadenbosch, Michaël Sicard:
Speed measurements with a continuous wave lidar prototype. IGARSS 2007: 2775-2778 - [c5]Sergio Tomás, Michaël Sicard, Jordi Masjuan, Mohd Nadzri Md. Reba, Constantino Muñoz, Francesc Rocadenbosch:
A wind speed and fluctuation simulator for characterizing the wind lidar correlation method. IGARSS 2007: 2779-2782 - [c4]Eduard Gregorio-Lopez, Francesc Rocadenbosch:
Perspective of remote optical measurement techniques (ROMTs). IGARSS 2007: 2955-2958 - [c3]Mohd Nadzri Md. Reba, Francesc Rocadenbosch, Michaël Sicard, Constantino Muñoz, Sergio Tomás:
Piece-wise variance method for signal-to-noise ratio estimation in elastic/Raman lidar signals. IGARSS 2007: 3158-3161 - [c2]Eduard Gregorio-Lopez, Francesc Rocadenbosch, Adolfo Comerón:
Design methodology of a ceilometer lidar prototype. IGARSS 2007: 3162-3165 - [c1]Francesc Rocadenbosch, Michaël Sicard, Mohd Nadzri Md. Reba, Sergio Tomás:
Morphological tools for range-interval segmentation of elastic lidar signals. IGARSS 2007: 4372-4375
1990 – 1999
- 1996
- [b1]Francesc Rocadenbosch:
Lidar sensing of the atmosphere: receiver design and inversion algorithms for an elastic system. Polytechnic University of Catalonia, Spain, 1996
Coauthor Index
aka: Constantino Muñoz-Porcar
aka: Alejandro Rodríguez-Gómez
aka: Andreu Salcedo
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 21:16 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint