Real-time multiplexing of mixed-criticality data streams for Automotive Multi-Core Test Systems

Markus Nager, M. Baunach, P. Priller, J. Wurzinger
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引用次数: 5

Abstract

Historically, automotive test systems were designed for a single core architecture. This, however, limited the utilization of shared resources. In this paper we present a redesign of an automotive test system that is based on a multi-core architecture and capable of managing mixed-criticality data. As part of the redesign, we implemented a Connectivity Manager (CM) that is in charge of multiplexing several data streams from multiple cores across a shared network. Due to the increased complexity of our system, a more flexible scheduling approach is required. Our solution to this problem is a novel dynamic priority communication scheduling approach that adapts to bandwidth changes on the shared communication network. Through simulations with realistic workloads, we prove the proper functioning of our algorithm with the result that higher critical data streams are favoured over less critical data streams in case of an overloaded system caused by a bottleneck on the CAN bus.
汽车多核测试系统混合临界数据流的实时多路复用
从历史上看,汽车测试系统是为单核架构设计的。然而,这限制了共享资源的利用。在本文中,我们提出了一个基于多核架构的汽车测试系统的重新设计,该系统能够管理混合临界数据。作为重新设计的一部分,我们实现了一个Connectivity Manager (CM),它负责在共享网络中对来自多个核心的多个数据流进行多路复用。由于系统的复杂性增加,需要更灵活的调度方法。针对这一问题,我们提出了一种适应共享通信网络带宽变化的动态优先级通信调度方法。通过对实际工作负载的模拟,我们证明了算法的正确功能,结果表明,在CAN总线瓶颈导致系统过载的情况下,高关键数据流比低关键数据流更受青睐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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