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首页> 外文期刊>Systems Journal, IEEE >Worst Case Analysis of Packet Delay in Avionics Systems for Environmental Monitoring
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Worst Case Analysis of Packet Delay in Avionics Systems for Environmental Monitoring

机译:用于环境监测的航空电子系统中数据包延迟的最坏情况分析

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摘要

Early analysis of timing is essential in the design of reliable avionics systems. We consider an environmental monitoring system that allows the surroundings of an aircraft to be observed continuously in real time. We analyze timing aspects of the partitions within the sensor and monitoring nodes, and of the intermediate switches that connect them. We use the application-specific I/O integration support tool (ASIIST) to evaluate the worst case delay in the peripheral component interconnect buses of the end nodes. We describe a novel switching algorithm that guarantees a bounded delay for any feasible traffic through each switch, and then derive the worst case delay incurred in a switched network that contains switches operating with the proposed algorithm. By composing these delays, we are able to determine the end-to-end delay over the internal buses and network comprising the entire system, and show how it can be bounded by using our switching algorithm. Our worst case end-to-end delay analysis contributes to more reliable and better verified environmental monitoring services over packet-switched networks in avionics systems. We expect that our work will help reduce the cost of designing and implementing environmental monitoring avionics systems, by making it easier to identify unsatisfactory designs at an early stage.
机译:时序的早期分析对于可靠的航空电子系统的设计至关重要。我们考虑了一种环境监控系统,该系统可以实时连续观察飞机的周围环境。我们分析了传感器和监视节点内的分区以及连接它们的中间交换机的时序方面。我们使用专用的I / O集成支持工具(ASIIST)评估端节点的外围组件互连总线中的最坏情况延迟。我们描述了一种新颖的交换算法,该算法可保证通过每个交换机的任何可行流量的有限时延,然后推导包含使用该算法运行的交换机的交换网络中发生的最坏情况时延。通过组合这些延迟,我们能够确定组成整个系统的内部总线和网络上的端到端延迟,并说明如何使用我们的交换算法来限制它。我们最坏的情况下的端到端延迟分析有助于在航空电子系统中的数据包交换网络上提供更可靠和更可靠的环境监控服务。我们希望我们的工作将使在早期阶段识别出不满意的设计更加容易,从而有助于降低设计和实施环境监测航空电子系统的成本。

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