cPV – Simulation and Verification for Membrane Computing

Yezhou Liu, Jing Sun, R. Nicolescu, Hai H. Wang
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Abstract

As a newly proposed computational paradigm of membrane computing, cP systems are used to solve several NP-complete and PSPACE-complete problems in linear or sub-linear time theoretically. Most cP systems proposed in previous studies lack of automated verification support. In this paper, we present cPV, the first software implementation for cP system simulation and verification. cPV offers multiple features, which include modelling, simulation, automated verification of properties such as absence of deadlock, confluence, termination, determinism, and goal reachability. As an extensible framework, modules in cPV are loosely coupled, where new verification algorithms, reduction techniques, and property specifications can be easily extended. To evaluate cPV, we constructed two benchmark datasets that cover several important aspects of cP systems. The experimental results demonstrated effective automatic verification support to the membrane computing problem domain.
cPV -膜计算的仿真与验证
cP系统作为膜计算新提出的一种计算范式,从理论上解决了线性或亚线性时间内的np完全和pspace完全问题。在以往的研究中提出的大多数cP系统缺乏自动验证支持。在本文中,我们提出cPV,第一个软件实现的cP系统的仿真和验证。cPV提供了多种特性,包括建模、仿真、自动验证属性(如无死锁、合流、终止、确定性和目标可达性)。作为一个可扩展的框架,cPV中的模块是松散耦合的,新的验证算法、约简技术和属性规范可以很容易地扩展。为了评估cPV,我们构建了两个基准数据集,涵盖了cP系统的几个重要方面。实验结果表明,该方法对膜计算问题域具有有效的自动验证支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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