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Titlebook: Dependable Computing for Critical Applications 4; Flaviu Cristian,Gerard Lann (Research Director),Te Conference proceedings 1995 Springer-

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Can we rely on Formal Methods?e systems is obviously a matter of concern to those involved in building or using such systems. We can also agree that there is a major gap between the reliability levels that are required of these systems and those that are obtainable using traditional hardware and software design methods. The basi
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A Role for Formal Methodistssystem satisfies a non-trivial specification requires a large proof. Without mechanical support, building or checking such a proof is not practical. Even with mechanical support, designing a large proof is at least as difficult as designing a large program. We are barely up to the task of building l
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Toward a Multilevel-Secure, Best-Effort Real-Time Scheduler the data. The conflicts between computer security requirements and timeliness requirements are described in the context of large, distributed, supervisory-control systems that are intended for use in such critical missions. The Secure Alpha[3] approach to addressing these conflicts is introduced..
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Fault-Detecting Network Membership Protocols for Unknown Topologiesnder a general combination of assumptions, which goes beyond known approaches in the fields of network exploration, distributed system level diagnosis and group membership:.The key issue of our solution is the application of special cryptographic functions instead of usual signatures for message aut
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On Managing Fault-Tolerant Design Risksf formal reviews and tests to assess the design’s correctness and compliance with requirements. Typically, there are no established formal procedures for monitoring the progress of the design during the implementation phase, the interval between the review and approval of the “paper” design and the
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On Doubly Guarded Multiprocessor Control System Designit reacts to spontaneous changes of the controlled process and its environment with minimal delay and it is insensitive to a large class of random processor malfunctions. Both properties improve with increased number of processors involved.
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