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Applied Cryptography and Network Security Workshops - ACNS 2022 Satellite Workshops, AIBlock, AIHWS, AIoTS, CIMSS, Cloud S&P, SCI, SecMT, SiMLA, Rome, Italy, June 20-23, 2022, Proceedings (Paperback, 1st ed. 2022)
Jianying Zhou, Sridhar Adepu, Cristina Alcaraz, Lejla Batina, Emiliano Casalicchio, …
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R1,644
Discovery Miles 16 440
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Ships in 10 - 15 working days
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This book constitutes the proceedings of the satellite workshops
held around the 20th International Conference on Applied
Cryptography and Network Security, ACNS 2022, held in Rome, Italy,
in June 2022. Due to the Corona pandemic the workshop was held as a
virtual event. The 31 papers presented in this volume were
carefully reviewed and selected from 52 submissions. They stem from
the following workshops: - AIBlock: 4th ACNS Workshop on
Application Intelligence and Blockchain Security - AIHWS: 3rd ACNS
Workshop on Artificial Intelligence in Hardware Security - AIoTS:
4th ACNS Workshop on Artificial Intelligence and Industrial IoT
Security - CIMSS: 2nd ACNS Workshop on Critical Infrastructure and
Manufacturing System Security - Cloud S&P: 4th ACNS Workshop on
Cloud Security and Privacy - SCI: 3rd ACNS Workshop on Secure
Cryptographic Implementation - SecMT: 3rd ACNS Workshop on Security
in Mobile Technologies - SiMLA: 4th ACNS Workshop on Security in
Machine Learning and its Applications
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Applied Cryptography and Network Security Workshops - ACNS 2021 Satellite Workshops, AIBlock, AIHWS, AIoTS, CIMSS, Cloud S&P, SCI, SecMT, and SiMLA, Kamakura, Japan, June 21-24, 2021, Proceedings (Paperback, 1st ed. 2021)
Jianying Zhou, Chuadhry Mujeeb Ahmed, Lejla Batina, Sudipta Chattopadhyay, Olga Gadyatskaya, …
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R2,747
Discovery Miles 27 470
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Ships in 10 - 15 working days
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This book constitutes the proceedings of the satellite workshops
held around the 19th International Conference on Applied
Cryptography and Network Security, ACNS 2021, held in Kamakura,
Japan, in June 2021.The 26 papers presented in this volume were
carefully reviewed and selected from 49 submissions. They stem from
the following workshops: AIBlock 2021: Third International Workshop
on Application Intelligence and Blockchain Security AIHWS 2021:
Second International Workshop on Artificial Intelligence in
Hardware Security AIoTS 2021: Third International Workshop on
Artificial Intelligence and Industrial IoT Security CIMSS 2021:
First International Workshop on Critical Infrastructure and
Manufacturing System Security Cloud S&P 2021: Third
International Workshop on Cloud Security and Privacy SCI 2021:
Second International Workshop on Secure Cryptographic
Implementation SecMT 2021: Second International Workshop on
Security in Mobile Technologies SiMLA 2021; Third International
Workshop on Security in Machine Learning and its Applications Due
to the Corona pandemic the workshop was held as a virtual event.
Multi-core architectures have recently gained in popularity due to
their high-performance and low-power characteristics. Most modern
desktop systems are now equipped with multi-core processors.
Despite the wide-spread adaptation of multi-core processors in
desktop systems, using such processors in embedded systems still
poses several challenges. Real-time, embedded systems often need to
satisfy several extra-functional constraints, such as timing. In
particular, for hard real-time systems, such timing constraints are
strictly enforced. Violation of these timing constraints may have
serious consequences, potentially costing human lives. Therefore,
static timing-analysis of hard real-time systems has emerged as a
critical problem to solve. This monograph first discusses the
challenges imposed by multi-core architectures in designing
time-predictable embedded systems. It goes on to describe, in
detail, a comprehensive solution to guarantee time-predictable
execution on multi-core platforms. It also discusses various
techniques and surveys the state-of-the-art in terms of available
solutions. Throughout the text, the aim is to provide a solid
background on recent trends in research towards achieving
time-predictability on multi-cores. It also highlights the
limitations of the state-of-the-art and discusses future research
opportunities and challenges to accomplish time-predictable
execution on multi-core platforms. The monograph is an ideal
reference for embedded systems designers and researchers interested
in having a foundation for building time-predictable software on
multi-core platforms. It will also help the research community to
address the existing challenges in this area.
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