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首页> 外文期刊>The Journal of Systems and Software >A resource efficient framework to run automotive embedded software on multi-core ECUs
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A resource efficient framework to run automotive embedded software on multi-core ECUs

机译:资源高效的框架,可在多核ECU上运行汽车嵌入式软件

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摘要

The increasing functionality and complexity of automotive applications requires not only the use of more powerful hardware, e.g., multi-core processors, but also efficient methods and tools to support design decisions. Component-based software engineering proved to be a promising solution for managing software complexity and allowing for reuse. However, there are several challenges inherent in the intersection of resource efficiency and predictability of multi-core processors when it comes to running component-based embedded software. In this paper, we present a software design framework addressing these challenges. The framework includes both mapping of software components onto executable tasks, and the partitioning of the generated task set onto the cores of a multi-core processor. This paper aims at enhancing resource efficiency by optimizing the software design with respect to: 1) the inter-software-components communication cost, 2) the cost of synchronization among dependent transactions of software components, and 3) the interaction of software components with the basic software services. An engine management system, one of the most complex automotive sub-systems, is considered as a use case, and the experimental results show a reduction of up to 11.2% total CPU usage on a quad-core processor, in comparison with the common framework in the literature.
机译:汽车应用不断增加的功能和复杂性不仅需要使用功能更强大的硬件(例如多核处理器),还需要有效的方法和工具来支持设计决策。基于组件的软件工程被证明是管理软件复杂性和允许重用的有前途的解决方案。但是,在运行基于组件的嵌入式软件时,多核处理器的资源效率和可预测性之间存在一些固有的挑战。在本文中,我们提出了一个解决这些挑战的软件设计框架。该框架包括将软件组件映射到可执行任务上,以及将生成的任务集分区到多核处理器的核心上。本文旨在通过针对以下方面的软件设计优化来提高资源效率:1)软件组件之间的通信成本; 2)软件组件相关事务之间的同步成本; 3)软件组件与组件之间的交互。基本软件服务。引擎管理系统是最复杂的汽车子系统之一,被认为是一个用例,实验结果表明,与通用框架相比,四核处理器上的CPU总使用率最多降低了11.2%在文学中。

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