Latency and Backlog Bounds in Time-Sensitive Networking with Credit Based Shapers and Asynchronous Traffic Shaping

Ehsan Mohammadpour, Eleni Stai, Maaz M. Mohiuddin, J. Boudec
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引用次数: 64

Abstract

We compute bounds on end-to-end worst-case latency and on nodal backlog size for a per-class deterministic network that implements Credit Based Shaper (CBS) and Asynchronous Traffic Shaping (ATS), as proposed by the Time-Sensitive Networking (TSN) standardization group. ATS is an implementation of the Interleaved Regulator, which reshapes traffic in the network before admitting it into a CBS buffer, thus avoiding burstiness cascades. Due to the interleaved regulator, traffic is reshaped at every switch, which allows for the computation of explicit delay and backlog bounds. Furthermore, we obtain a novel, tight per-flow bound for the response time of CBS, when the input is regulated, which is smaller than existing network calculus bounds. We also compute a per-flow bound on the response time of the interleaved regulator. Based on all the above results, we compute bounds on the per-class backlogs. Then, we use the newly computed delay bounds along with recent results on interleaved regulators from literature to derive tight end-to-end latency bounds and show that these are less than the sums of per-switch delay bounds.
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基于信用整形器和异步流量整形的时间敏感网络中的延迟和积压边界
我们计算端到端最坏情况延迟和节点积压大小的边界,用于实现基于信用的整形(CBS)和异步流量整形(ATS)的每类确定性网络,由时间敏感网络(TSN)标准化组提出。ATS是交错调节器的一种实现,它在允许网络中的流量进入CBS缓冲区之前重塑网络中的流量,从而避免突发级联。由于交错的调节器,流量在每个交换机被重塑,这允许明确的延迟和积压边界的计算。此外,我们还得到了一种新颖的、紧的CBS响应时间的每流边界,当输入被调节时,它比现有的网络演算边界要小。我们还计算了交错调节器响应时间的每流边界。基于上述所有结果,我们计算每个类积压的边界。然后,我们使用新计算的延迟界以及文献中关于交错调节器的最新结果来推导紧密的端到端延迟界,并表明这些延迟界小于每个交换机延迟界的总和。
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