Model-driven engineering of a railway interlocking system

F. Scippacercola, R. Pietrantuono, S. Russo, A. Zentai
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引用次数: 17

Abstract

Model-Driven Engineering (MDE) promises to enhance system development by reducing development time, and increasing productivity and quality. MDE is gaining popularity in several industry sectors, and is attractive also for critical systems where they can reduce efforts and costs for verification and validation (V&V), and can ease certification. Incorporating model-driven techniques into a legacy well-proven development cycle is not simply a matter of placing models and transformations in the design and implementation phases. We present the experience in the model-driven design and V&V of a safety-critical system in the railway domain, namely the Prolan Block, a railway interlocking system manufactured by the Hungarian company Prolan Co., required to be CENELEC SIL-4 compliant. The experience has been carried out in an industrial-academic partnership within the EU project CECRIS. We discuss the challenges and the lessons learnt in this pilot project of introducing MD design and testing techniques into the company's traditional V-model process.
铁路联锁系统的模型驱动工程
模型驱动工程(MDE)承诺通过减少开发时间、提高生产力和质量来增强系统开发。MDE在几个行业部门中越来越受欢迎,并且对于关键系统也很有吸引力,因为它们可以减少验证和确认(V&V)的工作量和成本,并且可以简化认证。将模型驱动的技术合并到一个经过良好验证的遗留开发周期中,并不是简单地将模型和转换放置在设计和实现阶段的问题。我们介绍了铁路领域安全关键系统的模型驱动设计和V&V的经验,即Prolan Block,由匈牙利公司Prolan Co.制造的铁路联锁系统,要求符合CENELEC SIL-4标准。这一经验是在欧盟CECRIS项目的一个工业-学术合作伙伴关系中进行的。我们讨论了在将MD设计和测试技术引入公司传统v模型流程的试点项目中所面临的挑战和吸取的教训。
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