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Architecting Critical Systems [electronic resource] : First International Symposium, Prague, Czech Republic, June 23-25, 2010 /

Contributor(s): Material type: TextTextSeries: Security and Cryptology ; 6150Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2010Edition: 1st ed. 2010Description: 205 p. 82 illus. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783642135569
Subject(s): Additional physical formats: Printed edition:: No title; Printed edition:: No titleDDC classification:
  • 004.6 23
LOC classification:
  • TK5105.5-5105.9
Online resources:
Contents:
Design -- An Architectural Framework for Analyzing Tradeoffs between Software Security and Performance -- Architectural Design Decisions for Achieving Reliable Software Systems -- Integrating Fault-Tolerant Techniques into the Design of Critical Systems -- Component Behavior Synthesis for Critical Systems, -- Verification and Validation -- A Road to a Formally Verified General-Purpose Operating System -- Engineering a Distributed e-Voting System Architecture: Meeting Critical Requirements -- Testing Fault Robustness of Model Predictive Control Algorithms -- Domain-Specific Results -- Towards Net-Centric Cyber Survivability for Ballistic Missile Defense -- A Safety Case Approach to Assuring Configurable Architectures of Safety-Critical Product Lines -- Increasing the Resilience of Critical SCADA Systems Using Peer-to-Peer Overlays -- Standards -- ISO/DIS 26262 in the Context of Electric and Electronic Architecture Modeling.
In: Springer Nature eBookSummary: Architecting critical systems has gained major importance in commercial, governmental, and industrial sectors. Emerging software applications encompass practicalities that are associated with either the whole system or some of its components. Therefore, effective methods, techniques, and tools for constructing, testing, analyzing, and evaluating the architectures for critical systems are of major importance. Furthermore, these methods, techniques, and tools must address issues of dependability and security, while focusing not only on the development, but also on the deployment and evolution of the architecture. This newly established ISARCS symposium provided an exclusive forum for exchanging views on the theory and practice for architecting critical systems. Such systems are characterized by the perceived severity of consequences that faults or attacks may cause, and architecting them requires appropriate means toassure that they will fulfill their specified services in a dependable and secure manner. The different attributes of dependability and security cannot be considered in isolation for today’s critical systems, as architecting critical systems essentially means finding the right trade-off among these attributes and the various other requirements imposed on the system. This symposium therefore brought together the four communities working on dependability, safety, security, and testing/analysis, each addressing to some extent the architecting of critical systems from their specific perspective. To this end, the symposium united the following three former events: the Workshop on Architecting Dependable Systems (WADS); the Workshop on the Role of Software Architecture for Testing and Analysis (ROSATEA); and the Workshop on Views on Designing Complex Architectures.
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Design -- An Architectural Framework for Analyzing Tradeoffs between Software Security and Performance -- Architectural Design Decisions for Achieving Reliable Software Systems -- Integrating Fault-Tolerant Techniques into the Design of Critical Systems -- Component Behavior Synthesis for Critical Systems, -- Verification and Validation -- A Road to a Formally Verified General-Purpose Operating System -- Engineering a Distributed e-Voting System Architecture: Meeting Critical Requirements -- Testing Fault Robustness of Model Predictive Control Algorithms -- Domain-Specific Results -- Towards Net-Centric Cyber Survivability for Ballistic Missile Defense -- A Safety Case Approach to Assuring Configurable Architectures of Safety-Critical Product Lines -- Increasing the Resilience of Critical SCADA Systems Using Peer-to-Peer Overlays -- Standards -- ISO/DIS 26262 in the Context of Electric and Electronic Architecture Modeling.

Architecting critical systems has gained major importance in commercial, governmental, and industrial sectors. Emerging software applications encompass practicalities that are associated with either the whole system or some of its components. Therefore, effective methods, techniques, and tools for constructing, testing, analyzing, and evaluating the architectures for critical systems are of major importance. Furthermore, these methods, techniques, and tools must address issues of dependability and security, while focusing not only on the development, but also on the deployment and evolution of the architecture. This newly established ISARCS symposium provided an exclusive forum for exchanging views on the theory and practice for architecting critical systems. Such systems are characterized by the perceived severity of consequences that faults or attacks may cause, and architecting them requires appropriate means toassure that they will fulfill their specified services in a dependable and secure manner. The different attributes of dependability and security cannot be considered in isolation for today’s critical systems, as architecting critical systems essentially means finding the right trade-off among these attributes and the various other requirements imposed on the system. This symposium therefore brought together the four communities working on dependability, safety, security, and testing/analysis, each addressing to some extent the architecting of critical systems from their specific perspective. To this end, the symposium united the following three former events: the Workshop on Architecting Dependable Systems (WADS); the Workshop on the Role of Software Architecture for Testing and Analysis (ROSATEA); and the Workshop on Views on Designing Complex Architectures.

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