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A Method for Improving Delay-Sensitive Accuracy in Real-Time Embedded Systems

机译:一种提高实时嵌入式系统中延迟敏感度的方法

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Timeliness and accuracy are two major concerns in many real-time embedded systems working in dynamic environments. It has been emphasized in the literature that in various real-time applications such as control systems and Kalman filters, delay is one main source of inaccuracy in the system. In this paper, we present a solution based on scheduling algorithms for the problem of inaccuracy in such systems. To this aim, first an accuracy model is introduced for systems which their accuracy is influenced by sampling and I/O delays. Then an algorithm called adjacency trade is presented to improve system accuracy while maintaining its timeliness. This algorithm follows an iterative approach and can be applied to each priority-based scheduling algorithm with no intervention in respecting the deadlines. Finally, through various simulation experiments, the effectiveness of this algorithm is examined against some algorithms in the literature.
机译:在动态环境中工作的许多实时嵌入式系统中,及时性和准确性是两个主要问题。在文献中已经强调,在诸如控制系统和卡尔曼滤波器的各种实时应用中,延迟是系统中不准确的主要来源。在本文中,我们针对此类系统中的不精确性问题提出了一种基于调度算法的解决方案。为此,首先为系统引入一个精度模型,该系统的精度受采样和I / O延迟的影响。然后提出了一种称为邻接权交易的算法,以提高系统的准确性,同时保持其及时性。该算法遵循一种迭代方法,可以在不考虑最后期限的情况下应用于每个基于优先级的调度算法。最后,通过各种仿真实验,对照文献中的某些算法检验了该算法的有效性。

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