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Measurable and Composable Security, Privacy, and Dependability for Cyberphysical Systems: The SHIELD Methodology [Paperback / softback]

Edited by (Mondragon University, Spain), Edited by (University of Roma, Sapienza, Italy), Edited by , Edited by (University of Oslo, Norway)
  • Format: Paperback / softback, 478 pages, height x width: 234x156 mm, weight: 993 g
  • Pub. Date: 28-Mar-2023
  • Publisher: CRC Press
  • ISBN-10: 1032339284
  • ISBN-13: 9781032339283
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  • Price: 86,49 €
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  • Format: Paperback / softback, 478 pages, height x width: 234x156 mm, weight: 993 g
  • Pub. Date: 28-Mar-2023
  • Publisher: CRC Press
  • ISBN-10: 1032339284
  • ISBN-13: 9781032339283
Other books in subject:

With a business baseline focused on the impact of embedded systems in the years ahead, the book investigates the Security, Privacy and Dependability (SPD) requirements raised from existing and future IoT, Cyber-Physical and M2M systems. It proposes a new approach to embedded systems SPD, the SHIELD philosophy, that relies on an overlay approach to SPD, on a methodology for composable SPD, on the use of semantics, and on the design of embedded systems with built-in SPD. The book explores new ground and illustrates the development of approximately forty prototypes capable of managing and enhancing SPD, including secure boot, trusted execution environments, adaptable radio interfaces, and different implementations of the middleware for measuring and composing SPD.



The book proposes a new methodology to address composable security, privacy, and dependability (SPD) in embedded systems. SPD represents a new challenging set of requirements that should be considered in the design process, and this book presents concrete answers based on built-in, rather than add-on, SPD functionalities.

Introduction. Security, Privacy and Dependability Concepts. Security, Privacy and Dependability Technologies. The SHIELD approach. Security, Privacy and Dependability Metrics. Airborne Domain. Railway Domain. Biometric Security Domain. Perspectives in secure SMART environments. SHIELD Technology Demonstrators. Applying SHIELD in New Domains.

Andrea Fiaschetti, Roberto Uribeetxeberria