基于故障注入框架的teteethernet故障容错评估

O. Daniel, Obermaisser Roman
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引用次数: 8

摘要

在安全关键型通信系统中,故障节点以随机间隔发送不及时的消息而独占信道,从而导致系统故障。这种失败被称为胡言乱语白痴失败。对于安全关键系统来说,这可能是昂贵的和灾难性的,因此,通过实现容错功能(如本地或中央监护人),及时触发通信系统可以避免这些故障。已经开展了评估Flexray和TTP等实时网络的守护功能的研究工作。这项工作评估了ethernet协议的守护功能。以太网对时间触发的流量和对速率受限的流量实施TDMA方案,从而保护网络免受乱码故障的影响。然而,这些监护人的功能并没有得到广泛的评估。对整个以太网通信系统进行故障注入可靠性评估的研究并不广泛。在本文中,我们开发了一种新的故障注入框架来生成喋喋不休的白痴故障,目的是验证以太网在故障遏制方面的实现。该框架采用了一种新颖的直通方法,将故障注入器从终端系统和开关中抽象出来,从而促进了可移植性和易用性。本文引入了一个故障注入框架来有效地验证以太网硬件实现的容错能力。此外,它还提供了一种方法来评估各种网络故障对运行在该协议之上的应用程序的影响。测试结果表明了乱码消息对以太网通信的延迟和抖动的影响。
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Fault Injection Framework for Assessing Fault Containment of TTEthernet Against Babbling Idiot Failures
In safety critical communication systems, faulty nodes can monopolize a channel by transmitting untimely messages at random intervals and thus resulting in the failure of the system. This failure is known as a babbling idiot failure. This could be costly and catastrophic for safety critical systems, therefore these failures are avoided in time triggered communication systems by implementing fault tolerant functions such as local or central guardians. Research works evaluating the guardian functionality for real time networks such as Flexray and TTP have been carried out. This work evaluates the guardian functionality of the TTEthernet protocol. TTEthernet enforces a TDMA scheme for time triggered traffic and traffic policing for rate constrained traffic thereby protecting the network against babbling idiot failures. However these guardian functionality was not extensively evaluated. Dependability evaluation by fault injection on the entire TTEthernet communication system as a whole has not been extensively studied. In this paper we exploit a novel fault injection framework to generate babbling idiot failures for the purpose of verifying TTEthernet implementations with respect to fault containment. The framework adopts a novel cut-through approach abstracting the fault injector from both the end systems and switches, thereby facilitating portability and ease of use. This work introduces a fault injection framework to effectively verify babbling idiot fault tolerance of TTEthernet hardware implementations. In addition, it provides a means to evaluate the effect of various network faults on applications running on top the protocol. Test results carried out indicate the effect of babbling idiot messages on the latency and jitter of traffic over the TTEthernet network.
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