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Probabilistic scheduling guarantees in distributed real-time systems under error bursts

机译:错误突发下分布式实时系统中的概率调度保证

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Networked embedded systems used in many real-time (RT) applications rely on dependable communication. Controller Area Network (CAN) has gained wider acceptance as a standard in a large number of applications, mostly due to its cost effectiveness, predictable performance, and its fault-tolerance capability. Research so far has focused on rather simplistic error models which assume only singleton errors separated by a minimum inter-arrival time. However, these systems are often subject to faults that manifest as error bursts of various lengths which have an adverse effect on the message response times that needs to be accounted for. Furthermore, an important factor to be considered in this context is the random nature of occurrences of faults and errors, which, if addressed in the traditional schedulability analysis by assuming a rigid worst case occurrence scenario, may lead to inaccurate results. In this paper we first present a stochastic fault and error model which has the capability of modeling error bursts in lieu of the commonly used simplistic error assumptions. We then present a methodology which enables the provision of appropriate probabilistic RT guarantees in distributed RT systems for the particular case of message scheduling on CAN under the assumed error assumptions.
机译:许多实时(RT)应用程序中使用的联网嵌入式系统都依赖可靠的通信。控制器局域网(CAN)已在许多应用中被广泛接受为标准,这主要是由于其成本效益,可预测的性能以及其容错能力。到目前为止,研究集中在相当简单的错误模型上,该模型仅假设单例错误被最短到达间隔时间分隔。但是,这些系统通常会出现故障,表现为各种长度的错误突发,这会对需要考虑的消息响应时间产生不利影响。此外,在这种情况下要考虑的一个重要因素是故障和错误发生的随机性,如果在传统的可调度性分析中假设最坏的情况发生,则可能导致结果不准确。在本文中,我们首先提出了一种随机故障和错误模型,该模型具有代替常用的简单错误假设而对错误突发进行建模的功能。然后,我们提出一种方法,该方法能够在假定的错误假设下针对CAN上消息调度的特定情况在分布式RT系统中提供适当的概率RT保证。

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