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Application-Level Diagnostic and Membership Protocols for Generic Time-Triggered Systems

机译:通用时间触发系统的应用程序级诊断和成员身份协议

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摘要

We present online tunable diagnostic and membership protocols for generic time-triggered (TT) systems to detect crashes, send/receive omission faults, and network partitions. Compared to existing diagnostic and membership protocols for TT systems, our protocols do not rely on the single-fault assumption and also tolerate non-fail-silent (Byzantine) faults. They run at the application level and can be added on top of any TT system (possibly as a middleware component) without requiring modifications at the system level. The information on detected faults is accumulated using a penalty/reward algorithm to handle transient faults. After a fault is detected, the likelihood of node isolation can be adapted to different system configurations, including configurations where functions with different criticality levels are integrated. All protocols are formally verified using model checking. Using actual automotive and aerospace parameters, we also experimentally demonstrate the transient fault handling capabilities of the protocols.
机译:我们介绍了用于通用时间触发(TT)系统的在线可调诊断和成员身份协议,以检测崩溃,发送/接收遗漏故障以及网络分区。与现有的TT系统诊断和成员身份协议相比,我们的协议不依赖于单故障假设,还可以容忍非故障静默(拜占庭)故障。它们在应用程序级别运行,并且可以添加到任何TT系统(可能是中间件组件)之上,而无需在系统级别进行修改。使用惩罚/奖励算法来累积有关检测到的故障的信息,以处理瞬态故障。在检测到故障之后,可以将节点隔离的可能性调整为适用于不同的系统配置,包括其中集成了具有不同临界级别的功能的配置。所有协议均使用模型检查进行了正式验证。使用实际的汽车和航空参数,我们还通过实验证明了协议的瞬时故障处理能力。

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