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

A. Roque, N. Jazdi, E. P. Freitas, C. Pereira
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引用次数: 2

Abstract

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.
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应用实时抖动监测器的车载分布式控制系统性能分析
提出了一种监测CAN网络性能退化和故障对周期控制任务时间约束影响的方法。该工作建议使用基于测试的方法,支持故障和错误注入,帮助工程师定义这些故障如何降低系统性能。此外,提出了一种运行时抖动监测技术,并将其应用于基于can的车载网络。运行时抖动根据时间窗口和在以前的性能测试中定义的容差范围分析性能振荡。以某关键控制系统为例,对误差注入过程进行了监测,并应用分析技术对性能振荡检测进行了验证。结果表明,在典型的CAN速率为1 Mbps时,运行时抖动可以在短时间内检测到高达30%总线负载的性能异常。实验结果表明,在10% ~ 30%的母线负载范围内,故障注入的平均抖动降低了4.2倍。当母线负载达到50%和80%时,也可以进行检测,但检测时间会增加。随着汽车电子技术的发展,本研究强调了性能监测的重要性。
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