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Runtime Verification : 19th International Conference, RV 2019, Porto, Portugal, October 8-11, 2019, Proceedings / edited by Bernd Finkbeiner, Leonardo Mariani.

SpringerLink Books Lecture Notes In Computer Science (LNCS) (1997-2024) Available online

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Format:
Book
Contributor:
Finkbeiner, Bernd, editor.
Mariani, Leonardo, editor.
SpringerLink (Online service)
Series:
Computer Science (Springer-11645)
LNCS sublibrary. Programming and software engineering ; SL 2, 11757.
Programming and Software Engineering ; 11757
Language:
English
Subjects (All):
Software engineering.
Programming languages (Electronic computers).
Computer logic.
Computer system failures.
Algorithms.
Logic, Symbolic and mathematical.
Software Engineering.
Programming Languages, Compilers, Interpreters.
Logics and Meanings of Programs.
System Performance and Evaluation.
Algorithm Analysis and Problem Complexity.
Mathematical Logic and Formal Languages.
Local Subjects:
Software Engineering.
Programming Languages, Compilers, Interpreters.
Logics and Meanings of Programs.
System Performance and Evaluation.
Algorithm Analysis and Problem Complexity.
Mathematical Logic and Formal Languages.
Physical Description:
1 online resource (X, 413 pages) : 377 illustrations, 58 illustrations in color.
Edition:
First edition 2019.
Contained In:
Springer eBooks
Place of Publication:
Cham : Springer International Publishing : Imprint: Springer, 2019.
System Details:
text file PDF
Summary:
This book constitutes the refereed proceedings of the 19th International Conference on Runtime Verification, RV 2019, held in Porto, Portugal, in October 2019. The 25 regular papers presented in this book were carefully reviewed and selected from 38 submissions. The RV conference is concerned with all aspects of monitoring and analysis of hardware, software and more general system executions. Runtime verification techniques are lightweight techniques to assess system correctness, reliability, and robustness; these techniques are significantly more powerful and versatile than conventional testing, and more practical than exhaustive formal verification. Chapter "Assumption-Based Runtime Verification with Partial Observability and Resets" and chapter "NuRV: a nuXmv Extension for Runtime Verification" are available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.
Contents:
A Retrospective Look at the Monitoring and Checking (MaC) Framework
Introspective Environment Modeling
Robustness of Specifications and its applications to Falsification, Parameter Mining, and Runtime Monitoring with S-TaLiRo
On the Runtime Enforcement of Timed Properties
Algorithms for Monitoring Hyperproperties
Stream-based Monitors for Real-time Properties
Accelerated Learning of Predictive Runtime Monitors for Rare Failure
Neural Predictive Monitoring
Comparing Controlled System Synthesis and Suppression Enforcement
Assumption-Based Runtime Verification with Partial Observability and Resets
Decentralized Stream Runtime Verification
Explaining Violations of Properties in Control-Flow Temporal Logic
FastCFI: Real-Time Control Flow Integrity using FPGA without Code Instrumentation
An Extension of LTL with Rules and its Application to Runtime Verification
Monitorability Over Unreliable Channels
Runtime Verification For Timed Event Streams With Partial Information
Shape Expressions for Specifying and Extracting Signal Features
A Formally Verified Monitor for Metric First-Order Temporal Logic
Efficient Detection and Quantification of Timing Leaks with Neural Networks
Predictive Runtime Monitoring for Linear Stochastic Systems and Applications to Geofence Enforcement for UAVs
Reactive Control Meets Runtime Verification: A Case Study of Navigation
Overhead-aware deployment of runtime monitors
NuRV: a nuXmv Extension for Runtime Verification
AllenRV: an extensible monitor for multiple complex specifications with high reactivity
Timescales: A Benchmark Generator for Metric Temporal Logic.
Other Format:
Printed edition:
ISBN:
978-3-030-32079-9
9783030320799
Access Restriction:
Restricted for use by site license.

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