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Selective congestion control for mixed-critical networks-on-chip

机译:混合关键网络的选择性拥塞控制

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摘要

Modem Networks-on-Chip (NoCs) must accommodate a diversity of temporal requirements, e.g., providing guarantees for real-time senders while reducing adverse performance impact on best-effort (BE) traffic. In this work, we propose a protocol-based adaptive congestion control. By selectively detouring real-time or BE traffic (i.e load balancing) and dynamic throttling of BE, we allow improving the NoC performance without costly hardware extensions. The introduced method offers safe and efficient integration of mixed-critical workloads through the coupling of flow control mechanisms with the path selection based on the current NoC state. The requested real-time reliability of the network is achieved through a predictable synchronization with control messages supported by a formal analysis and an experimental evaluation.
机译:调制解调器片上芯片(NOCS)必须适应时间要求的多样性,例如,为实时发件人提供保证,同时降低对最佳努力(是)交通的不利性能影响。在这项工作中,我们提出了一种基于协议的自适应拥塞控制。通过选择性地纠正实时或流量(即负载平衡)和动态限制,我们允许在没有昂贵的硬件扩展的情况下提高NOC性能。介绍的方法通过基于当前NoC状态的路径选择,通过耦合流动控制机制的耦合提供了安全有效地集成了混合关键工作负载。通过可预测的与通过正式分析和实验评估支持的控制消息的可预测同步实现网络的所要求的实时可靠性。

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