A Hybrid Meta-heuristic Approach to Cope with State Space Explosion in Model Checking Technique for Deadlock Freeness

N. Rezaee, H. Momeni
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引用次数: 5

Abstract

Model checking is an automatic technique for software verification through which all reachable states are generated from an initial state to finding errors and desirable patterns. In the model checking approach, the behavior and structure of system should be modeled. Graph transformation system is a graphical formal modeling language to specify and model the system. However, modeling of large systems with the graph transformation system suffers from the state space explosion problem which usually requires huge amounts of computational resources. In this paper, we propose a hybrid meta-heuristic approach to deal with this searching problem in the graph transformation system because meta-heuristic algorithms are efficient solutions to traverse the graph of large systems. Our approach, using Artificial Bee Colony and Simulated Annealing, replaces a full state space generation, only by producing part of it checking the safety, and finding errors (e.g., deadlock). The experimental results show that our proposed approach is more efficient and accurate compared to other approaches.
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死锁自由度模型检验技术中状态空间爆炸的混合元启发式方法
模型检查是一种用于软件验证的自动技术,通过它可以从初始状态生成所有可到达的状态,以查找错误和所需的模式。在模型检验方法中,需要对系统的行为和结构进行建模。图转换系统是一种对系统进行形式化描述和建模的图形化形式化建模语言。然而,利用图变换系统对大型系统建模存在状态空间爆炸问题,通常需要大量的计算资源。在本文中,我们提出了一种混合元启发式方法来处理图变换系统中的搜索问题,因为元启发式算法是遍历大系统图的有效解决方案。我们的方法,使用人工蜂群和模拟退火,取代了一个完整的状态空间生成,只有通过产生它的一部分,检查安全性,并发现错误(例如,死锁)。实验结果表明,与其他方法相比,该方法具有更高的效率和准确性。
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