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PaRTAA: A Real-Time Multiprocessor for Mixed-Criticality Airborne Systems

机译:Partaa:用于混合关键性空气传播系统的实时多处理器

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Mixed-criticality systems, where multiple systems with varying criticality-levels share a single hardware platform, require isolation between tasks with different criticality-levels. Isolation can be achieved with software-based solutions or can be enforced by a hardware level partitioning. An asymmetric multiprocessor architecture offers hardware-based isolation at the cost of underutilized hardware resources, and the inter-core communication mechanism is often a single point of failure in such architectures. In contrast, a partitioned uniprocessor offers efficient resource utilization at the cost of limited scalability. We propose a partitioned real-time asymmetric architecture (PaRTAA) specifically designed for mixed-criticality airborne systems, featuring robust partitioning within processing elements for establishing isolation between tasks with varying criticality. The granularity in the processing element offers efficient resource utilization where inter-dependent tasks share the same processing element for sequential execution while preserving isolation, and independent tasks simultaneously execute on different processing elements as per system requirements.
机译:混合关键性系统,其中多个具有不同临界级别的多个系统共享单个硬件平台,需要在具有不同临界级别的任务之间隔离。可以使用基于软件的解决方案实现隔离,或者可以通过硬件级别分区执行。不对称的多处理器架构以未充分利用的硬件资源成本提供基于硬件的隔离,并且核心间通信机制通常是此类架构中的单一失败点。相比之下,分区的单处理器以有限的可扩展性的成本提供有效的资源利用率。我们提出了一种专门设计用于混合关键性空中系统的分区实时非对称架构(PARTAA),其在处理元件中具有鲁棒分区,用于在具有变化临界的任务之间建立隔离。处理元素中的粒度提供有效的资源利用率,其中相互依赖的任务共享相同的处理元件,同时在保存隔离时同时执行,而独立的任务在系统要求时同时执行在不同的处理元件上。

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