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ARINC 653 and multi-core microprocessors amp;#x2014; Considerations and potential impacts

机译:ARINC 653和多核微处理器—考虑因素和潜在影响

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We live in a world where computer-based electronics are utilized by consumers as part of their every day routines. The enormous size of this worldwide consumer electronic market ends up influencing the types and capabilities of microprocessors available for other lower-volume electronic markets, including commercial avionics. Customer demands for additional product features and improved response times are driving the development of microprocessor improvements that satisfy these demands. In response, some processor designers have integrated multiple processor cores into a single hardware component that permit multiple software applications and threads to execute concurrently. Commercial avionics products today are predominantly single-core. Whether consumer product demands for multi-core processors will significantly impact the availability of single-core processors is still yet to be seen. There is a discernible trend for new processor designs, including many “leading-edge”, to be multi-core. Certification considerations in the use of multi-core processors in commercial avionics are currently being studied and researched by a range of aircraft manufacturers, avionics suppliers, software suppliers, hardware vendors, and research organizations. This paper covers one such multi-core related software topic: Given an operating system running on a multi-core processor that satisfies an avionics product's certification considerations, what are the cascade affects on applications that utilize a software architecture and set of programming interfaces as defined in ARINC specification 653 [1], “Avionics Application Software Standard Interface”? This paper describes the considerations and potential impacts of utilizing multi-core processors in an ARINC 653 based software environment.
机译:我们生活在一个世界上,消费者作为每天惯例的一部分使用的计算机的电子产品。这个全球消费电子市场的巨大规模最终影响了可用于其他较低批量电子市场的微处理器的类型和能力,包括商业航空电子版。客户对额外产品特性的需求和改进的响应时间推动了满足这些需求的微处理器改进的发展。作为响应,一些处理器设计人员将多个处理器核心集成到单个硬件组件中,允许多个软件应用程序和线程同时执行。今天的商业航空电子产品主要是单核。消费者产品对多核处理器的需求是否会显着影响单核处理器的可用性尚未被看到。新处理器设计有一个可辨别的趋势,包括许多“前沿”,是多核。目前正在研究和研究商业航空电子设备中使用多核处理器的认证考虑因素由一系列飞机制造商,航空电子供应商,软件供应商,五金供应商和研究组织研究。本文介绍了一个这样的多核相关软件主题:给定在满足航空电子产品的认证注意事项的多核处理器上运行的操作系统,级联对使用软件架构和定义的编程接口集的应用程序在ARINC规范653 [1]中,“航空电子版应用软件标准界面”?本文介绍了在基于ARINC 653的软件环境中使用多核处理器的考虑和潜在影响。

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