Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Massimo Traversone"'
Publikováno v:
ACM Transactions on Embedded Computing Systems. 16:1-19
This article proposes a bounded interference method, based on statistical evaluations, for online detection and tolerance of any fault capable of causing a deadline miss. The proposed method requires data that can be gathered during the profiling and
Autor:
Antonio Abramo, Nawaz Tassadaq, Andreas Papalambrou, Marco Cesena, Kresimir Dabcevic, Paolo Azzoni, John Gialelis, Dimitrios Serpanos, Andrea Toma, Silvano Mignanti, Luca Geretti, Konstantinos Rantos, Massimo Traversone, Carlo S. Regazzoni, Lucio Marcenaro, Kyriakos Stefanidis
Publikováno v:
Measurable and Composable Security, Privacy, and Dependability for Cyberphysical Systems ISBN: 9781138042858
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e4af7788fd5e01acf0b4c73323aa3fc0
https://doi.org/10.1201/9781138042858-12
https://doi.org/10.1201/9781138042858-12
Autor:
Xing Cai, Norbert Druml, Erwin Schoitsch, Daniel Schneider, Juha Kuusela, Rolf Ernst, Peter Tummeltshammer, Sergio Saez, Juan Carlos Perez-Cortes, Sascha Uhrig, Jan van Deventer, Egon Wuchner, Alfred Hoess, Haris Isakovic, Thierry Goubier, Geir Yngve Paulsen, Massimo Traversone, Bjorn Nordmoen, Michael Geissel, Eric Armengaud, Adam Kostrzewa, Hans Petter Dahle, Jürgen Salecker, Philippe Dore, Marinus Johannes Adrianus Maria Van Helvoort, Thomas Soderqvist, Werner Weber, Frank Oppenheimer
Publikováno v:
DSD
Since April 2014 the Artemis/ECSEL project EMC2 is running and provides significant results. EMC2 stands for "Embedded Multi-Core Systems for Mixed Criticality Applications in Dynamic and Changeable Real-Time Environments". In this paper we report re
Publikováno v:
IOLTS
In this paper a novel technique is proposed for online detection of timing interference in multicore architectures. The technique is aimed at mixed-criticality workloads. This paper describes a method to use hardware performance counters to detect su
Autor:
Marco Binello, Massimo Traversone, Serhiy Avramenko, Marco Terrone, Marco Sozzi, Massimo Violante, Stefano Esposito
Publikováno v:
IOLTS
The paper proposes a novel hybrid architecture to consolidate avionic applications with different levels of criticality in a multicore processor. The architecture stems from the need of deploying into one computer different applications with conflict
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f011feccf3bbbdff07343490da22e714
http://hdl.handle.net/11583/2623884
http://hdl.handle.net/11583/2623884
Autor:
João Baptista, Armin Zimmermann, Stéphane Gauchy, Mark Farries, Massimo Traversone, Nick Brownjohn, Bruce Napier, Andrew J. Lee, Ilja Kopacek, James Vincent, Henrique M. Salgado, Vincent Foucal, Anders T. Clausen, Thomas Pistner, Henry White
Publikováno v:
SPIE Proceedings.
Achieving affordable high speed fiber optic communication networks for airplane systems has proved to be challenging. In this paper we describe a summary of the EU Framework 7 project DAPHNE (Developing Aircraft Photonic Networks). DAPHNE aimed to ex
Autor:
Maria Nogarino, Antonio Ottolia, Michele Tumminelli, Marco Villa, Silvia Larghi, Massimo Traversone
Publikováno v:
SAE Technical Paper Series.
The SCARLETT European Research Project has the goal to define, develop and validate the concepts of the next generation of IMA (IMA2G). Enhanced File Management capability is central to support next generation IMA Platform properties and the increasi
Autor:
José Baptista, Bruce Napier, P. Deimel, Armin Zimmermann, I. Kopacek, Mark Farries, J. Vincent, N. Brownjohn, Geoffrey Martland Proudley, Henrique M. Salgado, Massimo Traversone, A. Lee, A. Bacou, S. Gauchy, Anders T. Clausen
Publikováno v:
2011 IEEE Avionics, Fiber- Optics and Photonics Technology Conference.
DAPHNE (Developing Aircraft PHotonic NEtworks) is a 3-year European FP7 project (started September 2009). The aim of DAPHNE is to exploit terrestrial optical networking technology (with associated performance advantages) in future aircraft and system