Research output
Publications.
IEEE peer-reviewed publications, newest first.
2026
- ICAISET2026
Beyond Benchmark Accuracy: Toward Clinically Trustworthy AI for Biomedical Signals
2026 International Conference on Artificial Intelligence, Systems Engineering and Technology (ICAISET) · 2026
DOIRésumé
This work argues that benchmark accuracy alone is insufficient for clinical AI systems processing biomedical signals, and proposes evaluation criteria that better reflect trustworthiness in real-world rehabilitation contexts.
BibTeX
@inproceedings{salman2026benchmark, abbr = {ICAISET}, bibtex_show = {true}, title = {Beyond Benchmark Accuracy: Toward Clinically Trustworthy AI for Biomedical Signals}, author = {Charafeddine, Jinane and Houda, T. and SALMAN, Nada and {Al Ja'am}, J. A.}, booktitle = {2026 International Conference on Artificial Intelligence, Systems Engineering and Technology (ICAISET)}, year = {2026}, publisher = {IEEE}, doi = {10.1109/ICAISET66439.2026.11542079}, html = {https://doi.org/10.1109/ICAISET66439.2026.11542079}, selected = {false}, abstract = {This work argues that benchmark accuracy alone is insufficient for clinical AI systems processing biomedical signals, and proposes evaluation criteria that better reflect trustworthiness in real-world rehabilitation contexts.} } - CSNT2026
HITL-Adaptive AI for Safe and Personalized Upper-Limb Rehabilitation
2026 International Conference on Communication Systems and Network Technologies (CSNT) · 2026
DOIRésumé
We propose a human-in-the-loop (HITL) framework for adaptive AI in upper-limb rehabilitation, enabling personalised and safe assistance by continuously incorporating user feedback into the control policy.
BibTeX
@inproceedings{salman2026hitl, abbr = {CSNT}, bibtex_show = {true}, title = {HITL-Adaptive AI for Safe and Personalized Upper-Limb Rehabilitation}, author = {Alotaibi, A. M. and SALMAN, Nada and Houda, T. and Charafeddine, Jinane and Venkateswaran, Swaminath and Benali, Abdelraouf}, booktitle = {2026 International Conference on Communication Systems and Network Technologies (CSNT)}, year = {2026}, publisher = {IEEE}, doi = {10.1109/CSNT69054.2026.11502185}, html = {https://doi.org/10.1109/CSNT69054.2026.11502185}, selected = {false}, abstract = {We propose a human-in-the-loop (HITL) framework for adaptive AI in upper-limb rehabilitation, enabling personalised and safe assistance by continuously incorporating user feedback into the control policy.} } - ICARA2026
Real-Time Neuro-Motor Index Modulation for Adaptive Admittance Control in Upper-Limb Exoskeletons
2026 7th International Conference on Automation, Robotics and Applications (ICARA) · 2026
DOIRésumé
This paper presents a real-time method for neuro-motor index modulation to enable adaptive admittance control in upper-limb exoskeletons, using surface EMG signals to continuously adapt assistance levels during motor tasks.
BibTeX
@inproceedings{salman2026neuro, abbr = {ICARA}, bibtex_show = {true}, title = {Real-Time Neuro-Motor Index Modulation for Adaptive Admittance Control in Upper-Limb Exoskeletons}, author = {SALMAN, Nada and Charafeddine, Jinane and Venkateswaran, Swaminath and Benali, Abderraouf}, booktitle = {2026 7th International Conference on Automation, Robotics and Applications (ICARA)}, year = {2026}, publisher = {IEEE}, doi = {10.1109/ICARA69401.2026.11480345}, html = {https://doi.org/10.1109/ICARA69401.2026.11480345}, selected = {true}, abstract = {This paper presents a real-time method for neuro-motor index modulation to enable adaptive admittance control in upper-limb exoskeletons, using surface EMG signals to continuously adapt assistance levels during motor tasks.} }
2024
- RO-MAN2024
Adaptive Weight Compensation in Assistive Upper-Limb Exoskeletons: an EMG Analysis
2024 33rd IEEE International Conference on Robot and Human Interactive Communication (RO-MAN) · 2024
DOIRésumé
We analyse surface EMG signals to drive adaptive weight compensation in an assistive upper-limb exoskeleton, demonstrating automatic assistance adaptation during flexion-extension movements with load.
BibTeX
@inproceedings{salman2024adaptive, abbr = {RO-MAN}, bibtex_show = {true}, title = {Adaptive Weight Compensation in Assistive Upper-Limb Exoskeletons: an EMG Analysis}, author = {SALMAN, Nada and Benali, Abderraouf}, booktitle = {2024 33rd IEEE International Conference on Robot and Human Interactive Communication (RO-MAN)}, year = {2024}, publisher = {IEEE}, doi = {10.1109/RO-MAN60168.2024.10731414}, html = {https://doi.org/10.1109/RO-MAN60168.2024.10731414}, selected = {true}, abstract = {We analyse surface EMG signals to drive adaptive weight compensation in an assistive upper-limb exoskeleton, demonstrating automatic assistance adaptation during flexion-extension movements with load.} }
2018
- ICASSDA2018
Two Proposed Indoor Multi-Cameras Positioning Systems Compared to Classical Geometry System
2018 International Conference on Advances in Signal, Speech and Data Analysis (ICASSDA) · 2018
DOIRésumé
Comparison of two multi-camera indoor positioning systems against a classical geometric reference, evaluating positioning accuracy and robustness in structured indoor environments.
BibTeX
@inproceedings{salman2018cameras, abbr = {ICASSDA}, bibtex_show = {true}, title = {Two Proposed Indoor Multi-Cameras Positioning Systems Compared to Classical Geometry System}, author = {Saood, Adnan and SALMAN, Nada and Alreyahi, Ali and Hatem, I.}, booktitle = {2018 International Conference on Advances in Signal, Speech and Data Analysis (ICASSDA)}, year = {2018}, publisher = {IEEE}, doi = {10.1109/ICASSDA.2018.8477636}, html = {https://doi.org/10.1109/ICASSDA.2018.8477636}, selected = {false}, abstract = {Comparison of two multi-camera indoor positioning systems against a classical geometric reference, evaluating positioning accuracy and robustness in structured indoor environments.} }
Aucune publication ne correspond à votre recherche.