In-field Functional Test of CAN Bus Controllers

R. Cantoro, Sandro Sartoni, M. Reorda
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引用次数: 6

Abstract

The Controller Area Network (CAN) bus is a serial bus protocol widely used in the automotive domain to allow communication between different Electronic Control Units in the car. Being often part of safety-critical systems, the hardware implementing the CAN network must be constantly tested along the system lifetime, even during the operational phase. CAN controllers are relatively complex modules in charge of managing the sending and the receiving of packages through the CAN bus and defects affecting them can easily compromise the whole CAN network. In this work, the CAN controller is tested by test programs to be executed by the CPU connected to the device under test and by another unit connected to the same CAN bus. A fault grading with respect to structural permanent faults of a functional test based on the execution of a software test library for the CAN bus is presented for the first time. Results show how the approach can cover more than 90% of stuck-at faults on an open-source implementation of the standard, which is significantly more than what a usual functional test based on some sample application can achieve.
CAN总线控制器的现场功能测试
控制器局域网(CAN)总线是一种广泛应用于汽车领域的串行总线协议,用于实现车内不同电子控制单元之间的通信。作为安全关键系统的一部分,实现CAN网络的硬件必须在整个系统生命周期中不断进行测试,即使在运行阶段也是如此。CAN控制器是一种相对复杂的模块,主要负责通过CAN总线管理数据包的发送和接收,影响它的缺陷很容易危及整个CAN网络。在这项工作中,CAN控制器通过测试程序进行测试,测试程序由连接到被测设备的CPU和连接到同一CAN总线的另一个单元执行。首次提出了基于CAN总线软件测试库执行的功能测试中结构性永久性故障的故障分级方法。结果表明,该方法可以覆盖90%以上的标准的开源实现上的卡住错误,这远远超过了基于某些示例应用程序的常规功能测试所能达到的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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