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Beschreibung
This book provides a look into the future of hardware and microelectronics security, with an emphasis on potential directions in security-aware design, security verification and validation, building trusted execution environments, and physical assurance. The book emphasizes some critical questions that must be answered in the domain of hardware and microelectronics security in the next 5-10 years: (i) The notion of security must be migrated from IP-level to system-level; (ii) What would be the future of IP and IC protection against emerging threats; (iii) How security solutions could be migrated/expanded from SoC-level to SiP-level; (iv) the advances in power side-channel analysis with emphasis on post-quantum cryptography algorithms; (v) how to enable digital twin for secure semiconductor lifecycle management; and (vi) how physical assurance will look like with considerations of emerging technologies. The main aim of this book is to serve as a comprehensive and concise roadmap for new learners and educators navigating the evolving research directions in the domain of hardware and microelectronic securities. Overall, throughout 11 chapters, the book provides numerous frameworks, countermeasures, security evaluations, and roadmaps for the future of hardware security.
This book provides a look into the future of hardware and microelectronics security, with an emphasis on potential directions in security-aware design, security verification and validation, building trusted execution environments, and physical assurance. The book emphasizes some critical questions that must be answered in the domain of hardware and microelectronics security in the next 5-10 years: (i) The notion of security must be migrated from IP-level to system-level; (ii) What would be the future of IP and IC protection against emerging threats; (iii) How security solutions could be migrated/expanded from SoC-level to SiP-level; (iv) the advances in power side-channel analysis with emphasis on post-quantum cryptography algorithms; (v) how to enable digital twin for secure semiconductor lifecycle management; and (vi) how physical assurance will look like with considerations of emerging technologies. The main aim of this book is to serve as a comprehensive and concise roadmap for new learners and educators navigating the evolving research directions in the domain of hardware and microelectronic securities. Overall, throughout 11 chapters, the book provides numerous frameworks, countermeasures, security evaluations, and roadmaps for the future of hardware security.
Über den Autor
Navid Asadi is an Assistant Professor in the ECE Department at the University of Florida. He investigates novel techniques for IC counterfeit detection and prevention, system and chip level decomposition and security assessment, anti-reverse engineering, 3D imaging, invasive and semi-invasive physical assurance, supply chain security, etc. Dr. Asadi has received several best paper awards from IEEE International Symposium on Hardware Oriented Security and Trust (HOST) and the ASME International Symposium on Flexible Automation (ISFA). He was also winner of D.E. Crow Innovation award from University of Connecticut. He is co-founder and the program chair of the IEEE Physical Assurance and Inspection of Electronics (PAINE) Conference.

M Tanjidur Rahman is a Ph.D. student in Electrical and Computer Engineering at University of Florida, Florida, USA. He received his B.S. and M.S. in Electrical Engineering in 2012 and 2014, respectively, from Bangladesh University ofEngineering and Technology (BUET), Bangladesh. He is a student member of IEEE. He has received the IEEE Best Paper Award at the International Conference on Computer and Electrical Engineering (ICECE), Bangladesh. His current research interests include system and IC level security assessment, hardware assurance, and hardware reverse engineering using physical inspection/attack methods.

Mark Tehranipoor has published over 400 journal articles and refereed conference papers and has given more than 200 invited talks and keynote addresses. In addition, he has 8 patents and has published 11 books and 25 book chapters. He is a recipient of 12 best paper awards and nominations, the 2009 NSF CAREER award, the 2014 MURI award on Nanoscale Security, the 2008 IEEE Computer Society (CS) Meritorious Service Award, the 2012 and 2017 IEEE CS Outstanding Contribution, the 2010 and 2016 IEEE TTTC/CS Most Successful Technical Event for co-founding and chairing HOST Symposium.

He co-founded IEEE International Symposium on Hardware-Oriented Security and Trust (HOST) and served as HOST-2008 and HOST-2009 General Chair and continues to serve as Chair of the Steering Committee for HOST. He also co-founded IEEE Asian-HOST. Further, he co-founded Journal on Hardware and Systems Security (HaSS) and currently serving as EIC for HaSS.

He is also a co-founder of Trust-Hub. He served as associate Editor-in-Chief (EIC) for IEEE Design and Test of Computers from 2012-2014. He is currently serving as an Associate Editor for IEEE Design and Test of Computers, an Associate Editor for JETTA, an Associate Editor for Journal of Low Power Electronics (JOLPE), an Associate Editor for ACM Transactions for Design Automation of Electronic Systems (TODAES), and an Associate Editor for IEEE Transactions on VLSI (TVLSI). He has served as an IEEE Distinguished Speaker and an ACM Distinguished Speaker from 2010-2013. Dr. Tehranipoor is a Fellow of the IEEE, Golden Core Member of IEEE Computer Society, and Member of ACM and ACM SIGDA. He is also a member of the Connecticut Academy of Science and Engineering (CASE).
Inhaltsverzeichnis

Chapter 1 Quantifiable Assurance in Hardware.- Chapter 2 Advances in Logic Locking.- Chapter 3 Rethinking Hardware Watermark.- Chapter 4 SoC Security Verification using Fuzz, Penetration, and AI Testing.- Chapter 5 Runtime SoC Security Validation.- Chapter 6 Large Language Models for SoC Security.- Chapter 7 Power Side-channel Evaluation in Post-Quantum Cryptography.- Chapter 8 Digital Twin for Secure Semiconductor Lifecycle Management.- Chapter 9 Secure Physical Design.- Chapter 10 Secure Heterogeneous Integration.- Chapter 11 Materials for Hardware Security.

Details
Erscheinungsjahr: 2025
Fachbereich: Nachrichtentechnik
Genre: Mathematik, Medizin, Naturwissenschaften, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: xxi
525 S.
15 s/w Illustr.
133 farbige Illustr.
525 p. 148 illus.
133 illus. in color.
ISBN-13: 9783031586897
ISBN-10: 3031586891
Sprache: Englisch
Herstellernummer: 89501942
Einband: Kartoniert / Broschiert
Autor: Tehranipoor, Mark
Zamiri Azar, Kimia
Asadizanjani, Navid
Rahman, Fahim
Mardani Kamali, Hadi
Farahmandi, Farimah
Hersteller: Springer
Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com
Maße: 235 x 155 x 30 mm
Von/Mit: Mark Tehranipoor (u. a.)
Erscheinungsdatum: 13.06.2025
Gewicht: 0,82 kg
Artikel-ID: 133891252