Formal safety verification for TTP/C network in Drive-by-wire system

R. Niu, Yuan Cao, T. Tang
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引用次数: 1

Abstract

TTP/C is a member of the time-triggered protocol (TTP) family that satisfies Society of Automotive Engineers Class C requirements for hard real-time fault-tolerant communication. As a communication network designed for safety-critical system, it is essential to verify its safety depending on formal methods. We investigate the fault-tolerant and fault-avoidance strategies of TTP/C network used in Drive-by-wire system, with Markov modeling techniques, and evaluate the failure rate subject to different failure modes, taking into account both transit and permanent physical failures. Generalized Stochastic Petri Net (GSPN) is selected to model concurrency, non-determinism properties and calculate Markov model automatically. A model with 157 states and 78 transitions is built. The result of experiments shows that failure probability of TTP/C network in 7-nodes DBW system varies from 10-6 to 10-10 with different configuration. And diagnose mistakes are proved to be a critical factor for the success of membership service.
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线控系统中TTP/C网络的正式安全验证
TTP/C是时间触发协议(TTP)家族的一员,满足美国汽车工程师协会C级对硬实时容错通信的要求。作为面向安全关键型系统设计的通信网络,利用形式化方法验证其安全性至关重要。利用马尔可夫建模技术,研究了线控系统中TTP/C网络的容错和避免策略,并在考虑传输和永久物理故障的情况下,评估了不同故障模式下的故障率。采用广义随机Petri网(GSPN)对并发性、非确定性进行建模,并自动计算马尔可夫模型。建立了一个具有157个状态和78个转换的模型。实验结果表明,7节点DBW系统中TTP/C网络在不同配置下的失效概率为10-6 ~ 10-10。而错误诊断是会员服务成功与否的关键因素。
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