Security and Dependability for Ambient Intelligence

Security and Dependability for Ambient Intelligence is the primary publication of the SERENITY approach, which provides security and dependability (S&D) solutions for dynamic, highly distributed, heterogeneous systems. The objective of SERENITY is to enhance the security and dependability of amb...

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Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Kokolakis, Spyros. (Editor), Gm̤ez, Antonio Maą. (Editor), Spanoudakis, George. (Editor)
Format: Electronic
Language:English
Published: Boston, MA : Springer US, 2009.
Series:Advances in Information Security, 45
Subjects:
Online Access:https://ezaccess.library.uitm.edu.my/login?url=http://dx.doi.org/10.1007/978-0-387-88775-3
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505 0 # |a From the contents Preface -- Introduction -- Realizing the Vision -- SERENITY S&D Solution Development Process -- Exploiting S& D Patterns in System Development -- Exploiting S&D Patterns at Runtime -- Experiences and Future Directions -- Index. 
520 # # |a Security and Dependability for Ambient Intelligence is the primary publication of the SERENITY approach, which provides security and dependability (S&D) solutions for dynamic, highly distributed, heterogeneous systems. The objective of SERENITY is to enhance the security and dependability of ambient intelligence systems by providing a framework supporting the automated integration, configuration, monitoring and adaptation of security and dependability mechanisms. An edited volume contributed by world leaders in the field, this book covers the problems that the highly dynamic and heterogeneous nature of ambient intelligence systems poses to security and dependability and presents solutions to these problems. Security and Dependability for Ambient Intelligence is designed for researchers and practitioners focusing on the dynamic integration, deployment and verification of security and dependability solutions in highly distributed systems incorporating ambient intelligence features. It is also suitable as a reference or secondary text for advanced-level students in computer science and computer or electrical engineering. 
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