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Response-Time Analysis for Controller Area Networks With Randomly Occurring Messages

机译:随机发生的消息控制器区域网络的响应时间分析

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摘要

A number of methods have been proposed for the response-time analysis (RTA) of controller area networks (CANs), which are the industry standard for in-vehicle network protocols. However, most of these methods are unsuitable for analyzing non-periodically transmitted messages because they assume a constant transmission period for each message. Moreover, the calculated evaluation criteria are limited and comprise many over-pessimistic estimations, such as the worst-case response time (WCRT). To tackle these problems, this paper proposes an RTA method for CANs with randomly occurring messages, which replaces the constant transmission period with the average number of transmission instances per unit time. This approach finds the approximate probability distribution of the response time to any message in a CAN, providing a more general measure than the WCRT. To this end, a mathematical model based on M/G/1 queueing theory is developed. The model accurately emulates the behavior of nonperiodic CAN messages and enables RTA with minimal pessimistic estimations. When tested against the benchmarks, the proposed method accurately obtained response time distributions within several seconds to several tens of seconds.
机译:已经提出了许多方法对于控制器区域网络(CAN)的响应时间分析(RTA),这些方法是车载网络协议的行业标准。然而,大多数这些方法不适合分析非定期传输的消息,因为它们假设每个消息的恒定传输时段。此外,计算的评估标准是有限的并且包括许多过悲观的估计,例如最坏情况响应时间(WcRT)。为了解决这些问题,本文提出了一种具有随机发生的罐的RTA方法,其替换了每单位时间的平均传输实例的恒定传输时段。该方法发现可以在罐中的任何消息中找到响应时间的近似概率分布,从而提供比Wcrt更通用的测量。为此,开发了基于M / G / 1排队理论的数学模型。该模型准确地模拟了非周期性可以信息的行为,并使RTA具有最小的悲观估计。当对基准测试进行测试时,所提出的方法在几秒钟内精确获得响应时间分布到几十秒。

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