default search action
Maximo Cobos
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j41]Sandra Roger, Mattia Brambilla, Bernardo Camajori Tedeschini, Carmen Botella-Mascarell, Maximo Cobos, Monica Nicoli:
Deep-Learning-Based Radio Map Reconstruction for V2X Communications. IEEE Trans. Veh. Technol. 73(3): 3863-3871 (2024) - 2023
- [j40]Jesús López Ballester, Santiago Felici-Castell, Jaume Segura-Garcia, Maximo Cobos:
AI-IoT Platform for Blind Estimation of Room Acoustic Parameters Based on Deep Neural Networks. IEEE Internet Things J. 10(1): 855-866 (2023) - [c31]Maximo Cobos, Mirco Pezzoli, Fabio Antonacci, Augusto Sarti:
Acoustic Source Localization in the Spherical Harmonics Domain Exploiting Low-Rank Approximations. ICASSP 2023: 1-5 - [c30]Alessandro Ilic Mezza, Giulio Zanetti, Maximo Cobos, Fabio Antonacci:
Zero-Shot Anomalous Sound Detection in Domestic Environments Using Large-Scale Pretrained Audio Pattern Recognition Models. ICASSP 2023: 1-5 - [c29]Jesús López Ballester, Jaume Segura, Santiago Felici-Castell, Maximo Cobos:
An AI-IoT Platform for Psycho-Acoustic Annoyance Assessment on the Edge. IS2 2023: 1-7 - [c28]Juan Antonio De Rus Arance, Mario Montagud, Maximo Cobos:
Towards the Creation of Scalable Tools for automatic Quality of Experience Evaluation and a Multi-Purpose Dataset for Affective Computing. IMX 2023: 269-275 - [c27]Juan Antonio De Rus Arance, Mario Montagud, Maximo Cobos:
Towards the Creation of Tools for Automatic Quality of Experience Evaluation with Focus on Interactive Virtual Environments. IMX 2023: 411-414 - [i13]Maximo Cobos, Mirco Pezzoli, Fabio Antonacci, Augusto Sarti:
Acoustic source localization in the spherical harmonics domain exploiting low-rank approximations. CoRR abs/2303.08480 (2023) - 2022
- [j39]Maximo Cobos, Jens Ahrens, Konrad Kowalczyk, Archontis Politis:
An overview of machine learning and other data-based methods for spatial audio capture, processing, and reproduction. EURASIP J. Audio Speech Music. Process. 2022(1): 10 (2022) - [j38]Maximo Cobos, Jens Ahrens, Konrad Kowalczyk, Archontis Politis:
Data-based spatial audio processing. EURASIP J. Audio Speech Music. Process. 2022(1): 13 (2022) - [j37]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Ana M. Torres, José J. López, Francesc J. Ferri, Maximo Cobos:
An Open-Set Recognition and Few-Shot Learning Dataset for Audio Event Classification in Domestic Environments. Pattern Recognit. Lett. 164: 40-45 (2022) - [j36]Pablo M. Aviles, Diego Lloria, Jose A. Belloch, Sandra Roger, Almudena Lindoso, Maximo Cobos:
Performance analysis of a millimeter wave MIMO channel estimation method in an embedded multi-core processor. J. Supercomput. 78(12): 14756-14767 (2022) - [c26]Pablo M. Aviles, Diego Lloria, Jose A. Belloch, Sandra Roger, Almudena Lindoso, Maximo Cobos:
Acceleration of the TSDCE MIMO Channel Estimation Algorithm on a Multi-core Platform. EATIS 2022: 15:1-15:4 - [c25]Carlos Castorena, Francesc J. Ferri, Maximo Cobos:
On the Performance of Deep Learning Models for Respiratory Sound Classification Trained on Unbalanced Data. IbPRIA 2022: 143-155 - [c24]Mirco Pezzoli, Maximo Cobos, Fabio Antonacci, Augusto Sarti:
Sparsity-Based Sound Field Separation in the Spherical Harmonics Domain. ICASSP 2022: 1051-1055 - [c23]Juan Antonio De Rus, Mario Montagud, Maximo Cobos:
AI-assisted affective computing and spatial audio for interactive multimodal virtual environments: research proposal. MMSys 2022: 372-377 - 2021
- [j35]Mirco Pezzoli, Julio José Carabias-Orti, Maximo Cobos, Fabio Antonacci, Augusto Sarti:
Ray-Space-Based Multichannel Nonnegative Matrix Factorization for Audio Source Separation. IEEE Signal Process. Lett. 28: 369-373 (2021) - [j34]Sandra Roger, Maximo Cobos, Carmen Botella-Mascarell, Gábor Fodor:
Fast Channel Estimation in the Transformed Spatial Domain for Analog Millimeter Wave Systems. IEEE Trans. Wirel. Commun. 20(9): 5926-5941 (2021) - [c22]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Maximo Cobos, Francesc J. Ferri, Pedro Zuccarello:
Squeeze-Excitation Convolutional Recurrent Neural Networks for Audio-Visual Scene Classification. DCASE 2021: 16-20 - [c21]Sandra Roger, Carmen Botella-Mascarell, Diego Lloria, Maximo Cobos, Gábor Fodor:
Low-complexity AoA and AoD Estimation in the Transformed Spatial Domain for Millimeter Wave MIMO Channels. PIMRC 2021: 1-6 - [i12]Sandra Roger, Maximo Cobos, Carmen Botella-Mascarell, Gábor Fodor:
Fast Channel Estimation in the Transformed Spatial Domain for Analog Millimeter Wave Systems. CoRR abs/2104.01857 (2021) - [i11]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Aarón López-García, Pedro Zuccarello, Maximo Cobos, Francesc J. Ferri:
Squeeze-Excitation Convolutional Recurrent Neural Networks for Audio-Visual Scene Classification. CoRR abs/2107.13180 (2021) - [i10]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Francesc J. Ferri, Maximo Cobos:
TASK3 DCASE2021 Challenge: Sound event localization and detection using squeeze-excitation residual CNNs. CoRR abs/2107.14561 (2021) - [i9]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Maximo Cobos, Francesc J. Ferri, Pedro Zuccarello:
Task 1A DCASE 2021: Acoustic Scene Classification with mismatch-devices using squeeze-excitation technique and low-complexity constraint. CoRR abs/2107.14658 (2021) - 2020
- [j33]Jose A. Belloch, Germán Ramos, José M. Badía, Maximo Cobos:
An Efficient Implementation of Parallel Parametric HRTF Models for Binaural Sound Synthesis in Mobile Multimedia. IEEE Access 8: 49562-49573 (2020) - [j32]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Maximo Cobos:
Acoustic Scene Classification With Squeeze-Excitation Residual Networks. IEEE Access 8: 112287-112296 (2020) - [j31]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Irene Martín-Morató, Pedro Zuccarello, Francesc J. Ferri, Maximo Cobos:
A Comparative Analysis of Residual Block Alternatives for End-to-End Audio Classification. IEEE Access 8: 188875-188882 (2020) - [j30]Rafael Fayos-Jordan, Santiago Felici-Castell, Jaume Segura-Garcia, Jesús López Ballester, Maximo Cobos:
Performance comparison of container orchestration platforms with low cost devices in the fog, assisting Internet of Things applications. J. Netw. Comput. Appl. 169: 102788 (2020) - [j29]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Fabio Antonacci, Maximo Cobos:
Open Set Audio Classification Using Autoencoders Trained on Few Data. Sensors 20(13): 3741 (2020) - [j28]Maximo Cobos, Fabio Antonacci, Luca Comanducci, Augusto Sarti:
Frequency-Sliding Generalized Cross-Correlation: A Sub-Band Time Delay Estimation Approach. IEEE ACM Trans. Audio Speech Lang. Process. 28: 1270-1281 (2020) - [j27]Irene Martín-Morató, Maximo Cobos, Francesc J. Ferri:
Adaptive Distance-Based Pooling in Convolutional Neural Networks for Audio Event Classification. IEEE ACM Trans. Audio Speech Lang. Process. 28: 1925-1935 (2020) - [j26]Germán Fabregat, Jose A. Belloch, José M. Badía, Maximo Cobos:
Design and Implementation of Acoustic Source Localization on a Low-Cost IoT Edge Platform. IEEE Trans. Circuits Syst. 67-II(12): 3547-3551 (2020) - [c20]Sergi Perez-Castanos, Javier Naranjo-Alcazar, Pedro Zuccarello, Maximo Cobos:
Anomalous Sound Detection using Unsupervised and Semi-Supervised Autoencoders and Gammatone Audio Representation. DCASE 2020: 145-149 - [c19]Sergi Perez-Castanos, Javier Naranjo-Alcazar, Pedro Zuccarello, Maximo Cobos:
Listen Carefully and Tell: An Audio Captioning System Based on Residual Learning and Gammatone Audio Representation. DCASE 2020: 150-154 - [c18]Luca Comanducci, Maximo Cobos, Fabio Antonacci, Augusto Sarti:
Time Difference of Arrival Estimation from Frequency-Sliding Generalized Cross-Correlations Using Convolutional Neural Networks. ICASSP 2020: 4945-4949 - [i8]Luca Comanducci, Maximo Cobos, Fabio Antonacci, Augusto Sarti:
Time Difference of Arrival Estimation from Frequency-Sliding Generalized Cross-Correlations Using Convolutional Neural Networks. CoRR abs/2002.00641 (2020) - [i7]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Maximo Cobos:
An Open-set Recognition and Few-Shot Learning Dataset for Audio Event Classification in Domestic Environments. CoRR abs/2002.11561 (2020) - [i6]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Maximo Cobos:
On the performance of different excitation-residual blocks for Acoustic Scene Classification. CoRR abs/2003.09284 (2020) - [i5]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Jose Ferrandis, Pedro Zuccarello, Maximo Cobos:
Sound Event Localization and Detection using Squeeze-Excitation Residual CNNs. CoRR abs/2006.14436 (2020) - [i4]Sergi Perez-Castanos, Javier Naranjo-Alcazar, Pedro Zuccarello, Maximo Cobos:
Anomalous Sound Detection using unsupervised and semi-supervised autoencoders and gammatone audio representation. CoRR abs/2006.15321 (2020) - [i3]Sergi Perez-Castanos, Javier Naranjo-Alcazar, Pedro Zuccarello, Maximo Cobos:
Listen carefully and tell: an audio captioning system based on residual learning and gammatone audio representation. CoRR abs/2006.15406 (2020)
2010 – 2019
- 2019
- [j25]Maximo Cobos, Sandra Roger:
SART3D: A MATLAB toolbox for spatial audio and signal processing education. Comput. Appl. Eng. Educ. 27(4): 971-985 (2019) - [j24]Jose A. Belloch, José M. Badía, Francisco D. Igual, Maximo Cobos:
Practical Considerations for Acoustic Source Localization in the IoT Era: Platforms, Energy Efficiency, and Performance. IEEE Internet Things J. 6(3): 5068-5079 (2019) - [j23]Miguel Arevalillo-Herráez, Maximo Cobos, Sandra Roger, Miguel García-Pineda:
Combining Inter-Subject Modeling with a Subject-Based Data Transformation to Improve Affect Recognition from EEG Signals. Sensors 19(13): 2999 (2019) - [j22]José M. Badía, Jose A. Belloch, Maximo Cobos, Francisco D. Igual, Enrique S. Quintana-Ortí:
Accelerating the SRP-PHAT algorithm on multi- and many-core platforms using OpenCL. J. Supercomput. 75(3): 1284-1297 (2019) - [c17]Szymon Wozniak, Konrad Kowalczyk, Maximo Cobos:
Self-Localization of Distributed Microphone Arrays Using Directional Statistics with DoA Estimation Reliability. EUSIPCO 2019: 1-5 - [c16]Irene Martín-Morató, Annamaria Mesaros, Toni Heittola, Tuomas Virtanen, Maximo Cobos, Francesc J. Ferri:
Sound Event Envelope Estimation in Polyphonic Mixtures. ICASSP 2019: 935-939 - [i2]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Pedro Zuccarello, Maximo Cobos:
DCASE 2019: CNN depth analysis with different channel inputs for Acoustic Scene Classification. CoRR abs/1906.04591 (2019) - [i1]Javier Naranjo-Alcazar, Sergi Perez-Castanos, Irene Martín-Morató, Pedro Zuccarello, Maximo Cobos:
On the performance of residual block design alternatives in convolutional neural networks for end-to-end audio classification. CoRR abs/1906.10891 (2019) - 2018
- [j21]Jaume Segura-Garcia, Juan M. Navarro, Juan José Pérez Solano, Jose Montoya-Belmonte, Santiago Felici-Castell, Maximo Cobos, Ana M. Torres-Aranda:
Spatio-Temporal Analysis of Urban Acoustic Environments with Binaural Psycho-Acoustical Considerations for IoT-Based Applications. Sensors 18(3): 690 (2018) - [j20]Juan José Pérez Solano, Maximo Cobos, Jaume Segura, Santiago Felici-Castell:
On the Design of Probe Signals in Wireless Acoustic Sensor Networks Self-Positioning Algorithms. IEEE Signal Process. Lett. 25(4): 566-570 (2018) - [j19]Irene Martín-Morató, Maximo Cobos, Francesc J. Ferri:
Adaptive Mid-Term Representations for Robust Audio Event Classification. IEEE ACM Trans. Audio Speech Lang. Process. 26(12): 2381-2392 (2018) - [c15]Sebastián Mirasol-Menacho, Ana Planells-Pérez, Jaume Segura-Garcia, Santiago Felici-Castell, Máximo Cobos-Serrano, Rosa M. Cibrián, Alicia Giménez-Pérez, Joan Oleza-Simó:
Virtual Acoustic Rendering in Old Spaces: Application to an Early-Modern Theatre in València, "L'Olivera". AVR (2) 2018: 261-274 - 2017
- [j18]Maximo Cobos, Miguel García-Pineda, Miguel Arevalillo-Herráez:
Steered Response Power Localization of Acoustic Passband Signals. IEEE Signal Process. Lett. 24(5): 717-721 (2017) - [j17]Germán Ramos, Maximo Cobos, Balázs Bank, Jose A. Belloch:
A Parallel Approach to HRTF Approximation and Interpolation Based on a Parametric Filter Model. IEEE Signal Process. Lett. 24(10): 1507-1511 (2017) - [j16]Miguel Arevalillo-Herráez, Maximo Cobos, Miguel García-Pineda:
A Robust Wrap Reduction Algorithm for Fringe Projection Profilometry and Applications in Magnetic Resonance Imaging. IEEE Trans. Image Process. 26(3): 1452-1465 (2017) - [j15]Maximo Cobos, Fabio Antonacci, Anastasios Alexandridis, Athanasios Mouchtaris, Bowon Lee:
A Survey of Sound Source Localization Methods in Wireless Acoustic Sensor Networks. Wirel. Commun. Mob. Comput. 2017 (2017) - [j14]Maximo Cobos, Fabio Antonacci, Athanasios Mouchtaris, Bowon Lee:
Wireless Acoustic Sensor Networks and Applications. Wirel. Commun. Mob. Comput. 2017 (2017) - [c14]Jose A. Belloch, José M. Badía, Francisco D. Igual, Maximo Cobos, Enrique S. Quintana-Ortí:
On the Use of a GPU-Accelerated Mobile Device Processor for Sound Source Localization. ICCS 2017: 586-595 - [c13]Irene Martín-Morató, Maximo Cobos, Francesc J. Ferri:
Analysis of data fusion techniques for multi-microphone audio event detection in adverse environments. MMSP 2017: 1-6 - 2016
- [j13]Ana M. Torres, J. Mateo, Maximo Cobos:
Room Acoustics Analysis Using Circular Arrays: A Comparison Between Plane-Wave Decomposition and Modal Beamforming Approaches. Circuits Syst. Signal Process. 35(5): 1625-1642 (2016) - [j12]Maximo Cobos, Juan José Pérez Solano, Oscar Belmonte, Germán Ramos, Ana M. Torres:
Simultaneous Ranging and Self-Positioning in Unsynchronized Wireless Acoustic Sensor Networks. IEEE Trans. Signal Process. 64(22): 5993-6004 (2016) - [c12]Sebastián Mirasol-Menacho, Ana Planells-Pérez, Arturo Barba-Sevillano, Jaume Segura-Garcia, Máximo Cobos-Serrano, Alicia Giménez-Pérez:
Development of a HMD for Virtual Acoustics. Application in a World Heritage (UNESCO) Building from the Valencian Civil Gothic. AVR (2) 2016: 241-250 - [c11]Irene Martín-Morató, Maximo Cobos, Francesc J. Ferri:
A case study on feature sensitivity for audio event classification using support vector machines. MLSP 2016: 1-6 - 2015
- [j11]Jose A. Belloch, Alberto González, Antonio M. Vidal, Maximo Cobos:
On the performance of multi-GPU-based expert systems for acoustic localization involving massive microphone arrays. Expert Syst. Appl. 42(13): 5607-5620 (2015) - [j10]Maximo Cobos, José J. López, Juan M. Navarro, Germán Ramos:
Subjective quality assessment of multichannel audio accompanied with video in representative broadcasting genres. Multim. Syst. 21(4): 363-379 (2015) - [c10]Jose A. Belloch, Maximo Cobos, Alberto González, Enrique S. Quintana-Ortí:
Real-time Sound Source Localization on an Embedded GPU Using a Spherical Microphone Array. ICCS 2015: 201-210 - 2014
- [j9]Maximo Cobos, Juan José Pérez Solano, Santiago Felici-Castell, Jaume Segura, Juan M. Navarro:
Cumulative-sum-based localization of sound events in low-cost wireless acoustic sensor networks. IEEE ACM Trans. Audio Speech Lang. Process. 22(12): 1792-1802 (2014) - [c9]Maximo Cobos:
A note on the modified and mean-based steered-response power functionals for source localization in noisy and reverberant environments. ISCCSP 2014: 149-152 - [c8]José J. López, Pablo Gutierrez, Maximo Cobos, Emanuel Aguilera:
Sound distance perception comparison between Wave Field Synthesis and Vector Base Amplitude Panning. ISCCSP 2014: 165-168 - 2013
- [j8]Julio J. Carabias-Orti, Maximo Cobos, Pedro Vera-Candeas, Francisco J. Rodríguez-Serrano:
Nonnegative signal factorization with learnt instrument models for sound source separation in close-microphone recordings. EURASIP J. Adv. Signal Process. 2013: 184 (2013) - [c7]Maximo Cobos, Francesc J. Ferri, Ana M. Torres, Jaume Segura:
Automatic Detection and Characterization of Acoustic Plane-Wave Reflections Using Circular Microphone Arrays. IbPRIA 2013: 774-781 - [c6]Jose A. Belloch, Alberto González, Antonio M. Vidal, Maximo Cobos:
Real-Time Sound Source Localization on Graphics Processing Units. ICCS 2013: 2549-2552 - 2012
- [j7]Maximo Cobos, José J. López:
Maximum a Posteriori Binary Mask Estimation for Underdetermined Source Separation Using Smoothed Posteriors. IEEE Trans. Speech Audio Process. 20(7): 2059-2064 (2012) - 2011
- [j6]Maximo Cobos, José J. López, David Martinez:
Two-microphone multi-speaker localization based on a Laplacian Mixture Model. Digit. Signal Process. 21(1): 66-76 (2011) - [j5]José J. López, Maximo Cobos, Emanuel Aguilera:
Computer-based detection and classification of flaws in citrus fruits. Neural Comput. Appl. 20(7): 975-981 (2011) - [j4]Maximo Cobos, Amparo Marti, José J. López:
A Modified SRP-PHAT Functional for Robust Real-Time Sound Source Localization With Scalable Spatial Sampling. IEEE Signal Process. Lett. 18(1): 71-74 (2011) - [c5]Amparo Marti, Maximo Cobos, José J. López:
Real time speaker localization and detection system for camera steering in multiparticipant videoconferencing environments. ICASSP 2011: 2592-2595 - [c4]Maximo Cobos, Pedro Vera-Candeas, Julio J. Carabias-Orti, Nicolás Ruiz-Reyes, José J. López:
Blind Estimation of Reverberation Time from Monophonic Instrument Recordings Based on Non-Negative Matrix Factorization. Semantic Audio 2011 - [c3]Pablo Cabañas Molero, Damián Martínez Muñoz, Maximo Cobos, José J. López:
Singing Voice Separation from Stereo Recordings Using Spatial Clues and Robust F0 Estimation. Semantic Audio 2011 - 2010
- [j3]Maximo Cobos, José J. López, Sascha Spors:
A Sparsity-Based Approach to 3D Binaural Sound Synthesis Using Time-Frequency Array Processing. EURASIP J. Adv. Signal Process. 2010 (2010)
2000 – 2009
- 2009
- [c2]José J. López, Maximo Cobos, Basilio Pueo:
Rear and side reproduction of elevated sources in Wave-Field Synthesis. EUSIPCO 2009: 804-808 - [c1]José J. López, Emanuel Aguilera, Maximo Cobos:
Defect Detection and Classification in Citrus Using Computer Vision. ICONIP (2) 2009: 11-18 - 2008
- [j2]Maximo Cobos, José J. López:
Stereo audio source separation based on time-frequency masking and multilevel thresholding. Digit. Signal Process. 18(6): 960-976 (2008) - [j1]Maximo Cobos, José J. López:
Improving Isolation of Blindly Separated Sources Using Time-Frequency Masking. IEEE Signal Process. Lett. 15: 617-620 (2008)
Coauthor Index
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 2024-12-26 00:49 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint