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Titlebook: Runtime Verification; 5th International Co Borzoo Bonakdarpour,Scott A. Smolka Conference proceedings 2014 Springer International Publishin

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On the Number of Opinions Needed for Fault-Tolerant Run-Time Monitoring in Distributed Systemsally, our main result is that, for every ., 1 ≤ . ≤ ., there exists a property that requires at least . opinions to be monitored by . monitors. We also present a corresponding distributed monitor using at most . + 1 opinions, showing that our lower bound is nearly tight.
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Speculative Program Parallelization with Scalable and Decentralized Runtime Verificationn the original serial code are not necessarily parallel and also, it is well-known that the parallel schedule must promote data locality which is crucial in obtaining good performance. This situation appeals to scalable and decentralized verification systems and new strategies to dynamically generat
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Organising LTL Monitors over Distributed Systems with a Global Clocknd each child feeds intermediate results to its parent. We formalise this approach, proving its correctness and worst case performance, and report on an empirical investigation comparing the three approaches on several concerns of decentralised monitoring.
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Abstraction and Mining of Traces to Explain Concurrency Bugsction technique which shortens the traces at the cost of introducing spurious explanations. Spurious as well as misleading explanations are then eliminated by a subsequent filtering step, helping the programmer to focus on likely causes of the failure. We validate our approach using a number of case
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Runtime Observer Pairs and Bayesian Network Reasoners On-board FPGAs: Flight-Certifiable System Healcan develop compact, hierarchical, and highly expressive health management models for efficient, on-board fault detection and system monitoring. We describe an instantiation of our System Health Management (SHM) framework, rt-R2U2, on standard FPGA hardware, which is suitable to be deployed on-board
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