Vashek Matyas

Work place: Faculty of Informatics, Masaryk University, Brno, Czech Republic

E-mail: matyas@fi.muni.cz

Website:

Research Interests:

Biography

Vaclav (Vashek) Matyas is a Professor at Masaryk University, Brno, CZ, heading its Centre for Research on Cryptography and Security. His research interests are related to applied cryptography and security; he has published well over 200 peer reviewed papers and articles and has co-authored several books. Vashek is a member of The Research, Development and Innovation Council of the Government of the Czech Republic. He worked in the past with Cybernetica, Red Hat Czech, CyLab at Carnegie Mellon University, as a Fulbright-Masaryk Visiting Scholar at the Center for Research on Computation and Society of Harvard University, Microsoft Research Cambridge, University College Dublin, Ubilab at UBS AG, and as a Royal Society Postdoctoral Fellow with the Cambridge University Computer Lab. Vashek also worked on the Common Criteria and in ISO/IEC JTC1 SC27. He received his PhD degree from Masaryk University, Brno.

Author Articles
ProCLAMUS: A Matrix Completion Based Proactive Spectrum Allocation Protocol for Security of IoT based CRNs

By Charanjeet Singh Chahil Milan Patnaik Deepali Gupta Vashek Matyas

DOI: https://doi.org/10.5815/ijieeb.2026.05.10, Pub. Date: 8 Oct. 2026

Proactive prediction based channel allocation for Cognitive Radio Networks (CRNs) remains a challenging area of research. In Internet of Things (IoT) scenarios, prediction algorithms must balance resource efficiency with high accuracy. The proposed algorithm, ProCLAMUS, a Matrix Completion (MC) Based Proactive Spectrum Allocation Protocol for CRNs, couples nuclear norm matrix completion with short horizon sliding window prediction. By reconstructing sparse spectrum sensing data and down weighting inconsistent reports, ProCLAMUS enables infrequent sensing and decentralized decisions without a fusion center, reducing energy and attack surface. In a network of 40 Secondary Users (SUs), 400 Primary Users (PUs) and 400 channels with malicious data ranging from 5 to 50%, ProCLAMUS sustains the highest channel utilization (avg 89.96%) with the lowest backoff rate (3.81 s^(-1)) and sensing delay (0.58 channels/success). ProCLAMUS achieves the lowest radio energy (16.82×10^(-3) J/s), a 44–53% reduction when compared with recently proposed techniques, while using 33–43% less memory. These gains arise from sparse sensing, fusion (majority voting) and conservative allocation. The results demonstrate superior energy efficiency and robust prediction under malicious data conditions during the Spectrum Sensing Data Falsification Attack.

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