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ARINC 653 API and its application - An insight into Avionics System Case Study

机译:ARINC 653 API及其应用-航空电子系统案例研究的真知灼见

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Traditionally automated systems in aircraft were realised using well defined functions that are implemented as federated functional units. Each functional units possesses its own resources with fault containment compared to multiple functions in single processing node. Integrated architectures are structured over the avionics cabinets or processing cabinets which house the hardware modules and software application partitions along with system software. These integrated modular avionics (IMA) applications supports distributed multiprocessor architecture. Both time and memory is shared among multiple avionics functionalities across the same platform with good protection mechanisms provided by ARINC 653. ARINC 653 is an additional layer of protection being embedded as part of real time operating systems supporting the partitioning protections using well defined application executive, and application programming interfaces (API). IMA uses set of partitions, which are scheduled across a major frame M consisting set of partitions Ptn and each partition having set of task/process ??n/Psn. The number of partitions and number of processes in each partition is a trade-off between the real time requirements and the resource. The paper also presents in brief, the API functionalities, its components, implementation, required interfaces, restrictions based on criticality of the avionics application. Error detection, control mechanisms for data integrity and validity for reconfiguration is also addressed. The experimental and simulation studies related to the API utilization as part of case study is addressed with four partitioned case study demonstrating the normal and failure scenario. Defence Science Journal, 2013,??63(2), pp.223-229 ,?? DOI:http://dx.doi.org/10.14429/dsj. 63.4268
机译:传统上,飞机上的自动化系统是使用定义明确的功能实现的,这些功能定义为联合功能单元。与单个处理节点中的多个功能相比,每个功能单元都拥有自己的具有故障抑制能力的资源。集成架构是在航空电子机柜或处理机柜之上构建的,这些机柜包含硬件模块和软件应用程序分区以及系统软件。这些集成的模块化航空电子(IMA)应用程序支持分布式多处理器体系结构。利用ARINC 653提供的良好保护机制,可以在同一平台上的多个航空电子功能之间共享时间和内存。ARINC653是嵌入式的附加保护层,它是实时操作系统的一部分,使用定义明确的应用程序执行程序来支持分区保护,和应用程序编程接口(API)。 IMA使用一组分区,这些分区是在由一组分区Ptn组成的主帧M上调度的,并且每个分区具有一组任务/过程Δn/ Psn。分区数和每个分区中的进程数是实时需求和资源之间的权衡。本文还简要介绍了API功能,其组件,实现,所需的接口以及基于航空电子应用程序的关键性的限制。还介绍了错误检测,数据完整性的控制机制以及重新配置的有效性。作为案例研究的一部分,与API使用相关的实验和仿真研究将通过四个分区的案例研究来解决,这些案例展示了正常情况和失败情况。国防科学杂志,2013,63(2),223-229页, DOI:http://dx.doi.org/10.14429/dsj。 63.4268

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