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Towards Quantitative Verification of Reaction Systems

机译:朝向反应系统的定量验证

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摘要

Reaction systems are a formal model for computational processes inspired by the functioning of the living cell. The key feature of this model is that its behaviour is determined by the interactions of biochemical reactions of the living cell, and these interactions are based on the mechanisms of facilitation and inhibition. The formal treatment of reaction systems is qualitative as there is no direct representation of the number of molecules involved in biochemical reactions. This paper introduces reaction systems with discrete concentrations which are an extension of reaction systems allowing for quantitative modelling. We demonstrate that although reaction systems with discrete concentrations are semantically equivalent to the original qualitative reaction systems, they provide much more succinct representations in terms of the number of molecules being used. We then define the problem of reachability for reaction systems with discrete concentrations, and provide its suitable encoding in SMT, together with a verification method (bounded model checking) for reachability properties. Experimental results show that verifying reaction systems with discrete concentrations instead of the corresponding reaction systems is more efficient.
机译:反应系统是由活细胞功能启发的计算过程的正式模型。该模型的关键特征是其行为由活细胞生物化学反应的相互作用确定,这些相互作用基于促进和抑制的机制。反应体系的正式治疗是定性的,因为没有生物化学反应的分子数量的直接表示。本文介绍了具有离散浓度的反应系统,其是允许定量建模的反应系统的延伸。我们证明,尽管具有离散浓度的反应系统是用原始定性反应系统的语义上的,但它们就使用的分子数提供了更加简洁的表示。然后,我们将具有离散浓度的反应系统的可达性问题定义,并在SMT中提供其合适的编码,以及可达性特性的验证方法(有界模型检查)。实验结果表明,使用离散浓度代替相应的反应系统验证反应系统更有效。

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