Sérgio M. Jesus

Orcid: 0000-0002-6021-1761

According to our database1, Sérgio M. Jesus authored at least 22 papers between 2006 and 2024.

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

Timeline

Legend:

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PhD thesis 
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Links

On csauthors.net:

Bibliography

2024
Cost-Sensitive Learning to Defer to Multiple Experts with Workload Constraints.
CoRR, 2024

On the Importance of Application-Grounded Experimental Design for Evaluating Explainable ML Methods.
Proceedings of the Thirty-Eighth AAAI Conference on Artificial Intelligence, 2024

2023
FiFAR: A Fraud Detection Dataset for Learning to Defer.
CoRR, 2023

A Case Study on Designing Evaluations of ML Explanations with Simulated User Studies.
CoRR, 2023

Addressing Bias and Fairness in Machine Learning: A Practical Guide and Hands-on Tutorial.
Proceedings of the 29th ACM SIGKDD Conference on Knowledge Discovery and Data Mining, 2023

2022
Vector Sensor Steering-Dependent Performance in an Underwater Acoustic Communication Field Experiment.
Sensors, 2022

Joint Vector Sensor Beam Steering and Passive Time Reversal for Underwater Acoustic Communications.
IEEE Access, 2022

Turning the Tables: Biased, Imbalanced, Dynamic Tabular Datasets for ML Evaluation.
Proceedings of the Advances in Neural Information Processing Systems 35: Annual Conference on Neural Information Processing Systems 2022, 2022

2021
How can I choose an explainer?: An Application-grounded Evaluation of Post-hoc Explanations.
Proceedings of the FAccT '21: 2021 ACM Conference on Fairness, 2021

2020
Numerical Enhancements and Parallel GPU Implementation of a 3D Gaussian Beam Model.
Proceedings of the Computational Science and Its Applications - ICCSA 2020, 2020

2019
Erratum: Martins, M.S., et al. Wideband and Wide Beam Polyvinylidene Difluoride (PVDF) Acoustic Transducer for Broadband Underwater. Sensors 2019, 19, 3991.
Sensors, 2019

Wideband and Wide Beam Polyvinylidene Difluoride (PVDF) Acoustic Transducer for Broadband Underwater Communications.
Sensors, 2019

2018
Environmental Model-Based Time-Reversal Underwater Communications.
IEEE Access, 2018

2017
Development and Testing of a Dual Accelerometer Vector Sensor for AUV Acoustic Surveys.
Sensors, 2017

2016
Direction-finding arrays of directional sensors for randomly located sources.
IEEE Trans. Aerosp. Electron. Syst., 2016

2015
Time-variant Adaptive Passive Time Reversal Equaliser and a Perspective for Environmental Focusing Method.
Proceedings of the SENSORNETS 2015, 2015

Improved direction finding using a maneuverable array of directional sensors.
Proceedings of the 2015 IEEE International Conference on Acoustics, 2015

2013
Experimental Results of Underwater Cooperative Source Localization Using a Single Acoustic Vector Sensor.
Sensors, 2013

2010
Vector Sensor Arrays in Underwater Acoustic Applications.
Proceedings of the Emerging Trends in Technological Innovation, 2010

2009
Multi-node Processing for Asymmetrical Communications in Underwater Acoustic Networks.
Proceedings of the 23rd International Conference on Advanced Information Networking and Applications, 2009

2007
Employing the Block Fourier Algorithm for Solving the LMMSE Receiver Equation Under Variable Channel Conditions.
Proceedings of the 65th IEEE Vehicular Technology Conference, 2007

2006
Optimized Gauss and Cholesky Algorithms for Using the LMMSE Decoder in MIMO/BLAST Systems with Frequency-Selective Channels - Reduced-Complexity Equalization.
Proceedings of the WINSYS 2006, 2006


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