Thermal Control for Crossbar-Based Input-Queued Switches

A. Bianco, P. Giaccone, G. Masera, Marco Ricca
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Abstract

We consider an NxN input-queued switch based on a crossbar switching fabric implemented on a single chip. The thermal power produced by the crossbar chip grows as N R^3, where R is the maximum bit rate. Power dissipation is becoming more and more challenging, limiting the crossbar scalability for high performance switches. We propose to exploit Dynamic Voltage and Frequency Scaling (DVFS) techniques, quite commonly used in integrated circuit design, to control packet transmissions through each crosspoint of the switching fabric. Our thermal control operates independently of the packet scheduler and it is based on short-term traffic measurements. We propose a family of control algorithms to reduce the thermal power dissipation in non-overloaded conditions.
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基于crossbar的输入排队开关的热控制
我们考虑了一种基于在单芯片上实现的交叉交换结构的NxN输入队列交换机。交叉条芯片产生的热功率随着N R^3而增长,其中R是最大比特率。功耗越来越具有挑战性,限制了高性能交换机的可扩展性。我们建议利用在集成电路设计中非常常用的动态电压和频率缩放(DVFS)技术来控制通过交换结构的每个交叉点的分组传输。我们的热控制操作独立于数据包调度程序,它是基于短期流量测量。我们提出了一系列控制算法来减少非过载条件下的热功耗。
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