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Integrating mixed transmission and practical limitations with the worst-case response-time analysis for Controller Area Network

机译:将混合传输和实际限制与控制器局域网的最坏情况响应时间分析相结合

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摘要

The existing worst-case response-time analysis for Controller Area Network (CAN) calculates upper bounds on the response times of messages that are queued for transmission either periodically or sporadically. However, it does not support the analysis of mixed messages. These messages do not exhibit a periodic activation pattern and can be queued for transmission both periodically and sporadically. They are implemented by several higher-level protocols based on CAN that are used in the automotive industry. We extend the existing analysis to support worst-case response-time calculations for periodic and sporadic as well as mixed messages. Moreover, we integrate the effect of hardware and software limitations in the CAN controllers and device drivers such as abortable and non-abortable transmit buffers with the extended analysis. The extended analysis is applicable to any higher-level protocol for CAN that uses periodic, sporadic and mixed transmission modes.
机译:现有的控制器局域网(CAN)的最坏情况响应时间分析会计算排队或偶尔排队等待传输的消息的响应时间的上限。但是,它不支持分析混合消息。这些消息不表现出周期性的激活模式,并且可以排队等待周期性和偶发性地传输。它们由汽车行业中使用的几种基于CAN的高级协议实现。我们扩展了现有分析,以支持针对周期性和偶发性消息以及混合消息的最坏情况响应时间计算。此外,我们将硬件和软件限制在CAN控制器和设备驱动程序(例如可中止和不可中止的发送缓冲区)中的影响与扩展的分析相集成。扩展的分析适用于使用周期性,零星和混合传输模式的CAN更高协议。

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