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Performance analysis of in-vehicle distributed control systems applying a real-time jitter monitor

机译:应用实时抖动监视器车载分布式控制系统的性能分析

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This paper presents an approach to monitor the performance degradation in CAN networks and the fault effect on time constraints of periodic control tasks. The work proposes the use of a test-based method supported by fault and error injection that helps the engineer to define how these faults degrade the system performance. In addition, a runtime jitter monitoring technique is proposed and applied to a CAN-based vehicular network. The runtime jitter analyses the performance oscillation according to a time window and with a tolerance range defined during previous performance tests. A case study was conducted monitoring a critical control system during error injection and the analysis technique was applied in order to verify the performance oscillation detection. Results show that with a typical CAN rate of 1 Mbps, the runtime jitter detect anomalies in performance during a short time period up to 30% of busload. The experiments show the degradation of 4,2 times on average jitter between 10% and 30% of busload with fault injection. The detection is also possible with higher busload 50% and 80%, but with an increase in the detection time. The present study emphasizes the importance of performance monitoring with the recent advances in automotive electronics.
机译:本文介绍了一种监控CAN网络性能下降的方法以及对周期控制任务的时间约束的故障效果。该工作提出使用故障和错误注入支持的基于测试的方法,帮助工程师定义这些故障如何降低系统性能。另外,提出了一种运行时抖动监测技术并应用于基于CAN的车辆网络。运行时抖动根据时间窗口分析性能振荡,并且在以前的性能测试期间定义了公差范围。在误差注射期间进行案例研究监测关键控制系统,并应用分析技术以验证性能振荡检测。结果表明,由于典型的CAN率为1 Mbps,运行时抖动在短时间内检测出在短时间的性能的异常,高达30%的汇流。实验表明,平均抖动的降解了4,2倍,距离故障注射的10%至30%。该检测也可以具有更高的速率50%和80%,但是在检测时间增加。本研究强调了绩效监测与汽车电子产品最近进步的重要性。

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