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Secure System Design and Trustable Computing (eBook)

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2015 | 1st ed. 2016
XII, 537 Seiten
Springer International Publishing (Verlag)
978-3-319-14971-4 (ISBN)

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This book provides the foundations for understanding hardware security and trust, which have become major concerns for national security over the past decade. Coverage includes issues related to security and trust in a variety of electronic devices and systems related to the security of hardware, firmware and software, spanning system applications, online transactions and networking services.  This serves as an invaluable reference to the state-of-the-art research that is of critical significance to the security of and trust in, modern society's microelectronic-supported infrastructures.



Chip-Hong Chang is an Associate Professor in the Division of Circuits and Systems, of the School of Electrical and Electronic Engineering, at Nanyang Technological University, Singapore. He received his PhD in 1997, in Spectral Techniques in Digital Logic Design, from Nanyang Technological University, Singapore.

Miodrag Potkonjak received his Ph.D. degree in Electrical Engineering and Computer Science from University of California, Berkeley in 1991. From 1991, he was with the Computer & Communication Research Laboratories of NEC USA, Princeton, NJ. Since 1995, he has been with the UCLA Computer Science Department, where he has been Professor since July 2000. He received the NSF CAREER, OKAWA foundation, UCLA TRW SEAS Excellence in Teaching awards and a number of best paper awards. He has published two books and more than three hundred papers in leading CAD and VLSI design, real-time systems, multimedia, signal processing, security and communications, journals and conferences. He holds 22 patents. His watermarking-based intellectual property protection research formed a basis for the Virtual Socket Initiative Alliance standard. His research interests are focused on system security, computational sensing, distributed embedded systems, computer aided design.

Chip-Hong Chang received his Ph.D. degree from Nanyang Technological University (NTU) of Singapore in 1998. He served as a Technical Consultant in industry prior to joining the School of Electrical and Electronic Engineering (EEE) of NTU in 1999, where he is currently an Associate Professor. He held joint appointments with the university as Assistant Chair of the School of EEE from 2008 to 2014, Deputy Director of the Center for High Performance Embedded Systems from 2000 to 2011, and Program Director of the Center for Integrated Circuits and Systems from 2003 to 2009. He edited and coedited two books, published eight book chapters, and more than 200 refereed international journal and conference papers in hardware-oriented security, low power arithmetic circuits, residue number systems and digital filter design. He is a Fellow of IET.

Part I : Hardware Security Primitives.- Disorder-Based Security Hardware: An Overview.- Design and Implementation of High-Quality Physical Unclonable Functions for Hardware-oriented Cryptography.- Digital Bimodal Functions and Digital Physical Unclonable Functions: Architecture and Applications.- Residue number systems in cryptography: design, challenges, robustness.- Fault Attacks on AES and their Countermeasures.- Hardware Counterfeiting and Integrity Protection.- Circuit Timing Signature (CTS) for Detection of Counterfeit Integrated Circuits.- Hardware Trojan Detection in Analog/RF Integrated CircuitsFPGAs.- Obfuscation-based Secure SoC Design for Protection against Piracy and Trojan Attacks.- Towards Building Trusted Systems: Vulnerabilities, Threats and Mitigation Techniques.- Hardware IP Watermarking and Fingerprinting.- IP Protection of FPGA Cores through a Novel Public/Secret-key Encryption Mechanism.- Secure Licensing of IP Cores on SRAM-based FPGAs.- Part III: Trust in Softwares, Networks and Services.- Heterogeneous Architectures: Malware and Countermeasures.- Trusted, Heterogeneous, and Autonomic Mobile Cloud.- Infiltrating Social Network Accounts: Attacks and Defenses.- An Economical, Deployable and Secure Architecture for the Initial Deployment Stage of Vehicular Ad-Hoc Network.- Deception-based Survivability.

Erscheint lt. Verlag 17.9.2015
Zusatzinfo XII, 537 p. 202 illus., 96 illus. in color.
Verlagsort Cham
Sprache englisch
Themenwelt Informatik Netzwerke Sicherheit / Firewall
Technik Elektrotechnik / Energietechnik
Schlagworte cyber security • Digital Rights Management of Integrated Circuits • Embedded Security • Hardware security and trust • Hardware Trojans Detection • physical unclonable functions • Secure System Design • Security and Privacy in Internet of Things • Trustable Computing • Trusted Mobile and Smart Devices
ISBN-10 3-319-14971-7 / 3319149717
ISBN-13 978-3-319-14971-4 / 9783319149714
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