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An Operating System Architecture for Organic Computing in Embedded Real-Time Systems

机译:嵌入式实时系统中有机计算的操作系统体系结构

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To overcome the rising complexity of computing systems, the paradigms of Autonomic Computing and Organic Computing have been introduced. By using an observer/controller architecture, Organic Computing aims to make embedded systems more life-like by providing them with so-called Self-X properties. Embedded real-time systems can also gain great benefit from these techniques. In this paper, we show what new requirements arise when introducing Autonomic/Organic Computing into the area of real-time applications. These requirements flow into the architecture of the real-time operating system CAROS. CAROS combines several concepts to provide a solid base for the implementation of Self-X techniques in embedded real-time systems. We show the practicability of our concepts with a prototypical implementation on the multithreaded CarCore microcontroller.
机译:为了克服计算系统日益复杂的问题,已经引入了自主计算和有机计算的范例。通过使用观察者/控制器体系结构,Organic Computing旨在通过为它们提供所谓的Self-X属性来使它们更加逼真。嵌入式实时系统也可以从这些技术中受益匪浅。在本文中,我们展示了将自主/有机计算引入实时应用领域时出现了哪些新要求。这些要求流入实时操作系统CAROS的体系结构中。 CAROS结合了几个概念,为在嵌入式实时系统中实施Self-X技术提供了坚实的基础。我们通过在多线程CarCore微控制器上的原型实现来展示我们的概念的实用性。

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