PN2CCS: A tool to encode Petri nets into calculus of communicating systems

IF 1.4 4区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Benjamin Bogø , Andrea Burattin , Alceste Scalas
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引用次数: 0

Abstract

PN2CCS is a software tool to encode Petri nets (PN) into the Calculus of Communication Systems (CCS). Its purpose is to allow Petri nets generated by most process mining algorithms (for instance, the α-miner) to be encoded into CCS, with the longer term goal of enabling the application tools and techniques developed for process calculi to the realm of process mining. PN2CCS is written in JavaScript and runs in modern web browsers with an interactive graphical user interface. The interface allows users to input a Petri net either by drawing it in the tool or importing a Petri net from a common file format for Petri nets. The tool then classifies the input Petri net and encodes it into CCS. The tool allows to encode a slight generalization of free-choice (workflow) nets as well as Petri nets directly expressible in CCS.
PN2CCS:一个将Petri网编码为通信系统微积分的工具
PN2CCS是一个将Petri网(PN)编码到通信系统演算(CCS)中的软件工具。它的目的是允许大多数过程挖掘算法(例如,α-miner)生成的Petri网被编码到CCS中,其长期目标是使为过程演算开发的应用工具和技术能够进入过程挖掘领域。PN2CCS是用JavaScript编写的,并运行在具有交互式图形用户界面的现代web浏览器中。该界面允许用户通过在工具中绘制或从Petri网的通用文件格式导入Petri网来输入Petri网。然后,该工具对输入的Petri网进行分类,并将其编码为CCS。该工具允许对自由选择(工作流)网络以及可直接在CCS中表达的Petri网进行编码。
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来源期刊
Science of Computer Programming
Science of Computer Programming 工程技术-计算机:软件工程
CiteScore
3.80
自引率
0.00%
发文量
76
审稿时长
67 days
期刊介绍: Science of Computer Programming is dedicated to the distribution of research results in the areas of software systems development, use and maintenance, including the software aspects of hardware design. The journal has a wide scope ranging from the many facets of methodological foundations to the details of technical issues andthe aspects of industrial practice. The subjects of interest to SCP cover the entire spectrum of methods for the entire life cycle of software systems, including • Requirements, specification, design, validation, verification, coding, testing, maintenance, metrics and renovation of software; • Design, implementation and evaluation of programming languages; • Programming environments, development tools, visualisation and animation; • Management of the development process; • Human factors in software, software for social interaction, software for social computing; • Cyber physical systems, and software for the interaction between the physical and the machine; • Software aspects of infrastructure services, system administration, and network management.
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