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Execution Environment for Mixed-Criticality Train Applications Based on an Integrated Architecture

机译:基于集成架构的混合临界列车应用执行环境

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In the avionic domain, the development trend has moved from federated to integrated architectures, which is called Integrated Modular Avionics (IMA). The ARINC 653 standard defines the execution environment for hosting several avionic software functions within a single computing module using strict temporal and spatial partitioning. ARINC 653 was successfully implemented (e.g., Airbus A380) and achieved its primary goals (cost and weight reduction, enabling modular certification, etc.). However, in the railway domain, an execution environment which enables integration of mixed-criticality Train Control and Monitoring System (TCMS) applications on an integrated architecture is an open research problem. Specific requirements of the railway domain (e.g., inauguration) are not covered by IMA due to the specific relevance in railway systems. In this paper, we will analyze the State-of-the-Art (SOTA) of control and monitoring systems in avionic and railway industries and identify the major gaps between these technologies. Based on the analysis, we will put forward our execution environment concept for an integrated architecture in TCMS.
机译:在航空电子领域,发展趋势已经从联邦架构转变为集成架构,这被称为集成模块化航空电子(IMA)。 ARINC 653标准定义了执行环境,用于使用严格的时间和空间划分在单个计算模块内托管多个航空软件功能。 ARINC 653已成功实施(例如,空中客车A380),并实现了其主要目标(降低成本和重量,实现模块化认证等)。但是,在铁路领域,使混合临界列车控制和监视系统(TCMS)应用程序集成在集成体系结构上的执行环境是一个开放的研究问题。由于铁路系统的特殊意义,IMA并未涵盖铁路领域的特定要求(例如就职典礼)。在本文中,我们将分析航空和铁路行业的控制和监视系统的最新技术(SOTA),并找出这些技术之间的主要差距。在分析的基础上,我们将提出针对TCMS的集成体系结构的执行环境概念。

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