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Titlebook: Compositional Verification of Concurrent and Real-Time Systems; Eric Y. T. Juan,Jeffrey J. P. Tsai Book 2002 Springer Science+Business Med

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书目名称Compositional Verification of Concurrent and Real-Time Systems
编辑Eric Y. T. Juan,Jeffrey J. P. Tsai
视频video
丛书名称The Springer International Series in Engineering and Computer Science
图书封面Titlebook: Compositional Verification of Concurrent and Real-Time Systems;  Eric Y. T. Juan,Jeffrey J. P. Tsai Book 2002 Springer Science+Business Med
描述With the rapid growth of networking and high-computing power, the demand for large-scale and complex software systems has increased dramatically. Many of the software systems support or supplant human control of safety-critical systems such as flight control systems, space shuttle control systems, aircraft avionics control systems, robotics, patient monitoring systems, nuclear power plant control systems, and so on. Failure of safety-critical systems could result in great disasters and loss of human life. Therefore, software used for safety­ critical systems should preserve high assurance properties. In order to comply with high assurance properties, a safety-critical system often shares resources between multiple concurrently active computing agents and must meet rigid real-time constraints. However, concurrency and timing constraints make the development of a safety-critical system much more error prone and arduous. The correctness of software systems nowadays depends mainly on the work of testing and debugging. Testing and debugging involve the process of de­ tecting, locating, analyzing, isolating, and correcting suspected faults using the runtime information of a system. Howev
出版日期Book 2002
关键词distributed systems; embedded systems; formal method; formal methods; formal verification; modeling; real-
版次1
doihttps://doi.org/10.1007/978-1-4615-1009-3
isbn_softcover978-1-4613-5349-2
isbn_ebook978-1-4615-1009-3Series ISSN 0893-3405
issn_series 0893-3405
copyrightSpringer Science+Business Media New York 2002
The information of publication is updating

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https://doi.org/10.1057/978-1-137-41196-9 analysis methodologies rather than stronger modeling capability. We will show that DTPNs are much more suitable for net reduction. A comparison between net reduction of TPNs and DTPNs is given in Sections 1.1, 2.3, and 5.2.
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Multiset Labeled Transition Systems,mpositions are used in MLTSs. These features of MLTSs promise the development of a new condensation methodology for compositional verification. With the use of the new methodology, the high analysis complexity of large-scale concurrent systems can be significantly reduced.
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0893-3405 ally. Many of the software systems support or supplant human control of safety-critical systems such as flight control systems, space shuttle control systems, aircraft avionics control systems, robotics, patient monitoring systems, nuclear power plant control systems, and so on. Failure of safety-cr
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Compositional Verification Using Petri Nets,ules become applicable. The time complexity of some rules is linear. The others are polynomial or can be adjusted to polynomial. Our condensation rules preserve the properties of boundedness, deadlock states, reachable markings, and/or reachable sub-markings.
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