Literature DB >> 33816923

Exact acceleration of complex real-time model checking based on overlapping cycle.

Guoqing Wang1, Lei Zhuang1, Yu Song1, Mengyang He1, Ding Ma2, Ling Ma1,3.   

Abstract

When real-time systems are modeled as timed automata, different time scales may lead to substantial fragmentation of the symbolic state space. Exact acceleration solves the fragmentation problem without changing system reachability. The relatively mature technology of exact acceleration has been used with an appended cycle or a parking cycle, which can be applied to the calculation of a single acceleratable cycle model. Using these two technologies to develop a complex real-time model requires additional states and consumes a large amount of time cost, thereby influencing acceleration efficiency. In this paper, a complex real-time exact acceleration method based on an overlapping cycle is proposed, which is an application scenario extension of the parking-cycle technique. By comprehensively analyzing the accelerating impacts of multiple acceleratable cycles, it is only necessary to add a single overlapping period with a fixed length without relying on the windows of acceleratable cycles. Experimental results show that the proposed timed automaton model is simple and effectively decreases the time costs of exact acceleration. For the complex real-time system model, the method based on an overlapping cycle can accelerate the large scale and concurrent states which cannot be solved by the original exact acceleration theory. ©2020 Wang et al.

Entities:  

Keywords:  Complex real-time system; Exact acceleration; Overlapping cycle; Real-time model checking; Timed automata

Year:  2020        PMID: 33816923      PMCID: PMC7924618          DOI: 10.7717/peerj-cs.272

Source DB:  PubMed          Journal:  PeerJ Comput Sci        ISSN: 2376-5992


  1 in total

1.  Secure Three-Factor Authentication Protocol for Multi-Gateway IoT Environments.

Authors:  JoonYoung Lee; SungJin Yu; KiSung Park; YoHan Park; YoungHo Park
Journal:  Sensors (Basel)       Date:  2019-05-22       Impact factor: 3.576

  1 in total

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