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I. Sourdis

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4 records found

Conference paper (2016) - Robert Seepers, Jos Weber, Zekeriya Erkin, Yiannis Sourdis, C Strydis
The cardiac interpulse interval (IPI) has recently been proposed tofacilitate key exchange for implantable medical devices (IMDs) using apatient's own heartbeats as a source of trust. While this form of key exchangeholds promise for IMD security, its feasibility is not fully understood due tothe simplified approaches found in related works. For example, previouslyproposed protocols have been designed without considering the limitedrandomness available per IPI, or have overlooked aspects pertinent to arealistic system, such as imperfect heartbeat detection or the energy overheadsimposed on an IMD. In this paper, we propose a new IPI-based key-exchangeprotocol and evaluate its use during medical emergencies. Our protocol employsfuzzy commitment to tolerate the expected disparity between IPIs obtained by anexternal reader and an IMD, as well as a novel way of tackling heartbeatmisdetection through IPI classification. Using our protocol, the expected timefor securely exchanging an 80-bit key with high probability (1-10−6) is roughlyone minute, while consuming only 88 μJ from an IMD. ...

On-demand system reliability

Conference paper (2012) - I. Sourdis, C. Strydis, K. Sunesen, S. Tzilis, C. S. Bouganis, B. Falsafi, G. N. Gaydadjiev, A. Malek, R. Mariani, D. Pnevmatikatos, D. K. Pradhan, G. Rauwerda
The DeSyRe project builds on-demand adaptive and reliable Systems-on-Chips (SoCs). As fabrication technology scales down, chips are becoming less reliable, thereby incurring increased power and performance costs for fault tolerance. To make matters worse, power density is becoming a significant limiting factor in SoC design, in general. In the face of such changes in the technological landscape, current solutions for fault tolerance are expected to introduce excessive overheads in future systems. Moreover, attempting to design and manufacture a totally defect-/fault-free system, would impact heavily, even prohibitively, the design, manufacturing, and testing costs, as well as the system performance and power consumption. In this context, DeSyRe will deliver a new generation of systems that are reliable by design at well-balanced power, performance, and design costs. ...