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Fault Tolerant Protocol for CAN Flash Programming

机译:用于CAN闪存编程的容错协议

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This paper proposes a fault tolerant protocol for CAN (Control Area Network) flash programming. Recently, the need of CAN flash programming is rapidly increasing because the number of installed ECU (Electronic Control Unit) increases noticeably and the adoption rate of CAN is very high. Although some development tool companies and semiconductor companies provide solutions, there is no standards for CAN flash programming until now. Furthermore, there is always a risk, when programming an application into flash memory using downloaded programming algorithms, that an external disturbance may corrupt the programming process. This paper suggests that the standards of CAN flash programming should include mechanism for the recovery from faults and certification process. Interaction diagram between host PC and ECU summarizes the messages and includes an additional phase for the certification of the CAN communication capability of ECU. The state diagram of ECU with respect to CAN flash programming is developed and includes additional states for the recovery from faults and the certification of CAN communication. Proposed protocol guarantees that ECU can be programmed via CAN without the risk of being dead node. This paper shows the feasibility by summarizing the experimental results.
机译:本文提出了CAN(控制区域网络)闪存编程的容错协议。最近,需要CAN Flash编程的需要正在迅速增加,因为安装的ECU(电子控制单元)的数量明显增加并且可以非常高的采用率。虽然一些开发工具公司和半导体公司提供了解决方案,但直到现在,没有能够闪存编程的标准。此外,当使用下载的编程算法编程到闪存时,始终存在风险,外部干扰可能破坏编程过程。本文表明,CAN闪存编程标准应包括从故障和认证过程中恢复的机制。主机PC和ECU之间的交互图总结了消息,并包括ECU的CAN通信能力认证的附加阶段。开发了CAN FLASH编程的ECU状态图,并包括其他状态,用于从故障恢复和CAN通信的认证。建议的协议保证了ECU可以通过可以在没有死点的风险的情况下编程。本文通过总结实验结果来显示可行性。

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