检测和减轻物联网系统中实时设备上的网络数据包过载

Robert Danicki, M. Haug, Ilja Behnke, Laurenz Mädje, L. Thamsen
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引用次数: 3

摘要

制造、汽车和航空航天环境使用嵌入式系统进行控制和自动化,并且需要实现严格的实时保证。为了促进更有效的业务流程和远程控制,这些设备正在连接到IP网络。由于难以预测网络数据包以及中断处理程序和驱动程序的相互关联的工作负载,控制时间关键进程的设备在高网络负载下面临错过进程截止日期的风险。此外,大型网络和互联网边缘的设备面临着负载峰值和网络数据包过载的高风险。在本文中,我们研究了实时检测网络数据包过载的策略,并提出了四种自适应缓解局部截止日期错过的方法。除了两种缓解有和没有迟滞网络突发的策略外,我们还提出并讨论了两种新的缓解算法,称为预算和队列缓解。在实验评估中,所有算法都显示出缓解效果,队列缓解策略支持大多数数据包处理,同时防止关键任务延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detecting and Mitigating Network Packet Overloads on Real-Time Devices in IoT Systems
Manufacturing, automotive, and aerospace environments use embedded systems for control and automation and need to fulfill strict real-time guarantees. To facilitate more efficient business processes and remote control, such devices are being connected to IP networks. Due to the difficulty in predicting network packets and the interrelated workloads of interrupt handlers and drivers, devices controlling time critical processes stand under the risk of missing process deadlines when under high network loads. Additionally, devices at the edge of large networks and the internet are subject to a high risk of load spikes and network packet overloads. In this paper, we investigate strategies to detect network packet overloads in real-time and present four approaches to adaptively mitigate local deadline misses. In addition to two strategies mitigating network bursts with and without hysteresis, we present and discuss two novel mitigation algorithms, called Budget and Queue Mitigation. In an experimental evaluation, all algorithms showed mitigating effects, with the Queue Mitigation strategy enabling most packet processing while preventing lateness of critical tasks.
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