Safety issues caused by the integration of the IMA platform and AFDX

Changxiao Zhao, Fang Yan, Yi Tian, Peng Wang
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引用次数: 3

Abstract

The Integrated Modular Avionics (IMA) platform provides partitioning mechanism to allow multiple applications sharing its resources. And in the network domain, Avionics Full Duplex Switched Ethernet (AFDX) introduces the Virtual Link(VL) technology to provide dedicated bandwidth for each package. The IMA platform and AFDX can provide functional isolation and independence separately, while independence will be broken when the IMA platform and AFDX are integrated. The design of the IMA platform and AFDX are separated, some isolation requirements of the host functions may not be implemented in the network domain. Another issue is the the present VL path planing algorithm, such as Shortest-Path or Load-Banlance, is based on the physical characteristics of data flow and pay little attention to the importance of the data, which may result the lose or failure of one physical link may affects multiple safety critical VL. To solve this problem, this paper propose a VL path planning method named VLPP-S with the consideration of the safety requirements. Firstly, the importance of each partition is measured by the severity of the function hosted. Secondly, the importance of each VL is measured by the partitions it connected and the isolation requirements of the partition are recorded, Thirdly, the path of each VL is planed in order to balance the importance of each physical link, and the isolation requirements of each VL are checked to get the path planning result. Finally, different VL path planning methods are compared, VLPP-S propoed by this paper is more effective to meet the isolation requirements then VL-Shortest-Path and VL-Load-Banlance.
IMA平台与AFDX集成带来的安全问题
集成模块化航空电子(IMA)平台提供了分区机制,允许多个应用共享其资源。在网络领域,航空电子全双工交换以太网(AFDX)引入了虚拟链路(VL)技术,为每个包提供专用带宽。IMA平台和AFDX可以分别提供功能隔离和独立性,而IMA平台和AFDX集成后,独立性将被打破。IMA平台与AFDX的设计是分开的,一些主机功能的隔离要求可能无法在网络域中实现。另一个问题是,目前的VL路径规划算法,如short - path或Load-Banlance,都是基于数据流的物理特性,很少考虑数据的重要性,这可能导致一个物理链路的丢失或失效可能影响多个安全关键VL。针对这一问题,本文提出了一种考虑安全要求的VL路径规划方法VLPP-S。首先,每个分区的重要性是通过所承载的功能的严重性来衡量的。其次,通过所连接的分区来衡量每个VL的重要性,并记录分区的隔离要求;第三,对每个VL的路径进行规划,以平衡各个物理链路的重要性,并检查每个VL的隔离要求,得到路径规划结果。最后,对不同的VL路径规划方法进行了比较,发现本文提出的VLPP-S比VL- short - path和VL- load - banlance更能有效地满足隔离要求。
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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