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Investigation and Reduction of Fault Sensitivity in the FlexRay Communication Controller Registers

机译:FlexRay通信控制器寄存器中故障敏感性的调查和降低

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It is now widely believed that FlexRay communication protocol will become the de-facto standard for distributed safety-critical automotive systems. In this paper, the fault sensitivity of the FlexRay communication controller registers are investigated using transient single bit-flip fault injection. To do this, a FlexRay bus network, composed of four nodes, was modeled. A total of 135,600 transient single bit-flip faults were injected to all 408 accessible single-bit and multiple-bit registers of the communication controller in one node. The results showed that among all 408 accessible registers, 30 registers were immediately affected by the injected faults. The results also showed that 26.2% of injected faults caused at least one error. Based on the fault injection results, the TMR and the Hamming code techniques were applied to the most sensitive parts of the FlexRay protocol. These techniques reduced the fault affection to the registers from 26.2% to 10.3% with only 13% hardware overhead.
机译:现在,人们普遍认为FlexRay通信协议将成为分布式安全关键型汽车系统的事实上的标准。在本文中,使用瞬态单比特翻转故障注入来研究FlexRay通信控制器寄存器的故障敏感性。为此,对由四个节点组成的FlexRay总线网络进行了建模。在一个节点中,总共135,600个瞬态单位翻转故障被注入到通信控制器的所有408个可访问的单位和多位寄存器中。结果表明,在所有408个可访问寄存器中,有30个寄存器立即受到注入故障的影响。结果还表明,26.2%的注入故障导致至少一个错误。根据故障注入结果,将TMR和汉明代码技术应用于FlexRay协议的最敏感部分。这些技术将对寄存器的故障影响从26.2%减少到10.3%,而硬件开销仅为13%。

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