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Scheduling Independent Partitions in Integrated Modular Avionics Systems

机译:计划集成模块化航空电子系统中的独立分区

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摘要

Recently the integrated modular avionics (IMA) architecture has been widely adopted by the avionics industry due to its strong partition mechanism. Although the IMA architecture can achieve effective cost reduction and reliability enhancement in the development of avionics systems, it results in a complex allocation and scheduling problem. All partitions in an IMA system should be integrated together according to a proper schedule such that their deadlines will be met even under the worst case situations. In order to help provide a proper scheduling table for all partitions in IMA systems, we study the schedulability of independent partitions on a multiprocessor platform in this paper. We firstly present an exact formulation to calculate the maximum scaling factor and determine whether all partitions are schedulable on a limited number of processors. Then with a Game Theory analogy, we design an approximation algorithm to solve the scheduling problem of partitions, by allowing each partition to optimize its own schedule according to the allocations of the others. Finally, simulation experiments are conducted to show the efficiency and reliability of the approach proposed in terms of time consumption and acceptance ratio.
机译:最近,由于其强大的分区机制,集成模块化航空电子(IMA)体系结构已被航空电子行业广泛采用。尽管IMA体系结构可以在航空电子系统的开发中实现有效的成本降低和可靠性增强,但它会导致复杂的分配和调度问题。 IMA系统中的所有分区都应按照适当的时间表集成在一起,以便即使在最坏的情况下也能满足其截止日期。为了帮助为IMA系统中的所有分区提供适当的调度表,本文研究了多处理器平台上独立分区的可调度性。我们首先提出一种精确的公式来计算最大缩放比例,并确定是否所有分区都可在有限数量的处理器上进行调度。然后用博弈论的类比,设计一种近似算法,通过允许每个分区根据其他分区的分配优化自己的调度,来解决分区的调度问题。最后,通过仿真实验证明了该方法在时间消耗和接受率方面的有效性和可靠性。

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