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Development and validation of a safe communication protocol compliant to railway standards

机译:符合铁路标准的安全通信协议的开发与验证

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Railway systems are composed of a multitude of subsystems, sensors, and actuators that exchange datagrams through safety-critical communication protocols. However, the vast majority of these protocols rely on ad hoc interlacing mechanisms and safety codes which raise the heterogeneity and complexity of the overarching railway system. Therefore, Rete Ferroviaria Italiana, the company who is in charge of managing the Italian railway network, coordinated the definition of the Protocollo Vitale Standard (Standard Vital Protocol). This protocol is inspired to, and compliant with, the communication protocols adopted for the European Train Control System (ETCS) (SUBSET, UNISIG, 037, Euroradio FIS, version 2.3. 0; SUBSET, UNISIG, 098, RBC-RBC safe communication interface, 2007), and it is meant to become the standard layer to enable safe communication between components of the Italian railway system. This paper reports our experience in the design, implementation, verification, and validation of the Protocollo Vitale Standard in compliance with the European safety standards for railway systems. We first defined a safety plan and a verification and validation plan, which guide the design, development, verification, and validation activities as required by safety standards. Guidelines of such plans have been followed strictly until completion of the work, which concludes with the provision of a safety case where all safety evidences are summarized. Noticeably, we (i) selected appropriate safety mechanisms, (ii) verified the software design, (iii) implemented the software in compliance with code metrics and coding rules, (iv) conducted tests to validate the protocol against its functional and performance requirements, and ultimately (v) devised all relevant documentation and a safety case which summarizes the evidences needed for certification.
机译:铁路系统由多种子系统,传感器和执行器组成,通过安全关键通信协议交换数据报。然而,绝大多数这些协议依赖于临近的临分交错机制和安全码,其提高了总体铁路系统的异质性和复杂性。因此,重温菲尔诺维亚Italiana是负责管理意大利铁路网络的公司,协调了Protocollo Vitale标准的定义(标准重要协议)。该协议的启发和符合欧洲列车控制系统(ETCS)(Subset,Unisig,037,Euroradio FIS,2.3版)所采用的通信协议。0;子集,UNISIG,098,RBC-RBC安全通信接口2007年),它意味着能够成为可以在意大利铁路系统组件之间安全通信的标准层。本文报告了我们在Protocollo Vitale标准的设计,实施,验证和验证方面的经验,符合欧洲铁路系统的欧洲安全标准。我们首先定义了安全计划和验证和验证计划,指导了安全标准所要求的设计,开发,验证和验证活动。这些计划的准则一直被严格遵循,直到工作完成,该工作总结了所有安全证据的安全案例。明显的是,我们(i)选择适当的安全机制,(ii)验证了软件设计,(iii)通过符合代码指标和编码规则实现软件,(iv)进行测试以验证协议以防止其功能和性能要求,最终(v)设计了所有相关文件和安全案例,该安全案例总结了认证所需的证据。

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