Maria P. Jarabo-Amores
List of publications from the DBLP Bibliography Server - FAQ| 2013 | ||
|---|---|---|
| j9 | María-Pilar Jarabo-Amores, David de la Mata-Moya, Roberto Gil-Pita, Manuel Rosa-Zurera: Radar detection with the Neyman-Pearson criterion using supervised-learning-machines trained with the cross-entropy error. EURASIP J. Adv. Sig. Proc. 2013: 44 (2013) | |
| 2012 | ||
| c6 | Jaime Martin-de-Nicolas, Jose-Luis Barcena-Humanes, Angel Palma-Vazquez, David de la Mata-Moya, María-Pilar Jarabo-Amores: Supervised landmask estimation using contextual information in SAR data. Intelligent Vehicles Symposium 2012: 153-158 | |
| 2011 | ||
| j8 | María-Pilar Jarabo-Amores, Manuel Rosa-Zurera, David de la Mata-Moya, Raul Vicen-Bueno, Saturnino Maldonado-Bascón: Spatial-Range Mean-Shift Filtering and Segmentation Applied to SAR Images. IEEE T. Instrumentation and Measurement 60(2): 584-597 (2011) | |
| j7 | Raul Vicen-Bueno, Ruben Carrasco-Álvarez, María-Pilar Jarabo-Amores, Jose Carlos Nieto-Borge, E. Alexandre-Cortizo: Detection of Ships in Marine Environments by Square Integration Mode and Multilayer Perceptrons. IEEE T. Instrumentation and Measurement 60(3): 712-724 (2011) | |
| 2010 | ||
| j6 | Raúl Vicen Bueno, Ruben Carrasco-Álvarez, Manuel Rosa-Zurera, Jose Carlos Nieto-Borge, María-Pilar Jarabo-Amores: Artificial Neural Network-Based Clutter Reduction Systems for Ship Size Estimation in Maritime Radars. EURASIP J. Adv. Sig. Proc. 2010 (2010) | |
| j5 | Raul Vicen-Bueno, Maria P. Jarabo-Amores, Manuel Rosa-Zurera, José L. Sanz-González, Saturnino Maldonado-Bascón: Importance Sampling for Objective Function Estimations in Neural Detector Training Driven by Genetic Algorithms. Neural Processing Letters 32(3): 249-268 (2010) | |
| j4 | Raul Vicen-Bueno, Manuel Rosa-Zurera, María-Pilar Jarabo-Amores, David de la Mata-Moya: Coherent Detection of Swerling 0 Targets in Sea-Ice Weibull-Distributed Clutter Using Neural Networks. IEEE T. Instrumentation and Measurement 59(12): 3139-3151 (2010) | |
| c5 | David de la Mata-Moya, María-Pilar Jarabo-Amores, Jose Carlos Nieto-Borge, Manuel Rosa-Zurera: Montessori Method Adaptation for Teaching of Subjects of Graduate and Post-graduate Programmes. CSEDU (1) 2010: 407-410 | |
| 2009 | ||
| j3 | David de la Mata-Moya, María-Pilar Jarabo-Amores, Manuel Rosa-Zurera, Jose Carlos Nieto-Borge, Francisco López-Ferreras: Combining MLPs and RBFNNs to Detect Signals With Unknown Parameters. IEEE T. Instrumentation and Measurement 58(9): 2989-2995 (2009) | |
| j2 | María-Pilar Jarabo-Amores, Manuel Rosa-Zurera, Roberto Gil-Pita, Francisco López-Ferreras: Study of two error functions to approximate the Neyman-pearson detector using supervised learning machines. IEEE Transactions on Signal Processing 57(11): 4175-4181 (2009) | |
| r1 | Raúl Vicen Bueno, Manuel Rosa-Zurera, María-Pilar Jarabo-Amores, Roberto Gil-Pita, David de la Mata-Moya: Intelligent Radar Detectors. Encyclopedia of Artificial Intelligence 2009: 933-939 | |
| 2008 | ||
| c4 | Raul Vicen-Bueno, Eduardo Galán-Fernández, Manuel Rosa-Zurera, Maria P. Jarabo-Amores: MLP-Based Detection of Targets in Clutter: Robustness with Respect to the Shape Parameter of Weibull-Disitributed Clutter. ICANN (2) 2008: 121-130 | |
| 2007 | ||
| c3 | Raul Vicen-Bueno, Maria P. Jarabo-Amores, Manuel Rosa-Zurera, Roberto Gil-Pita, David de la Mata-Moya: Performance Analysis of MLP-Based Radar Detectors in Weibull-Distributed Clutter with Respect to Target Doppler Frequency. ICANN (2) 2007: 690-698 | |
| c2 | Raul Vicen-Bueno, Maria P. Jarabo-Amores, David de la Mata-Moya, Manuel Rosa-Zurera, Roberto Gil-Pita: Low Complexity MLP-Based Radar Detector: Influence of the Training Algorithm and the MLP Size. IWANN 2007: 630-637 | |
| 2006 | ||
| c1 | Raul Vicen-Bueno, Manuel Rosa-Zurera, Maria P. Jarabo-Amores, Roberto Gil-Pita: NN-Based Detector for Known Targets in Coherent Weibull Clutter. IDEAL 2006: 522-529 | |
| 2001 | ||
| j1 | Manuel Rosa-Zurera, Francisco López-Ferreras, Maria P. Jarabo-Amores, Saturnino Maldonado-Bascón, Nicolás Ruiz-Reyes: A new algorithm for translating psycho-acoustic information to the wavelet domain. Signal Processing 81(3): 519-531 (2001) | |
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