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Power-Aware Bandwidth-Reconfigurable Optical Interconnects for High-Performance Computing (HPC) Systems

机译:高性能计算(HPC)系统的功率感知带宽可重新配置光互连

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As communication distances and bit rates increase, opto-electronic interconnects are becoming de-facto standard/or designing high-bandwidth low-latency interconnection networks for high performance computing (HPC) systems. While bandwidth scaling with efficient multiplexing techniques (wavelengths, time and space) are available, static assignment of wavelengths can be detrimental to network performance for adversial traffic patterns. Dynamic bandwidth reconfiguration based on actual traffic pattern can lead to improved network performance by utilizing idle resources. While dynamic bandwidth re-allocation (DBR) techniques can alleviate interconnection bottlenecks, power consumption also increases considerably. In this paper, we propose a dynamically re configurable architecture called E-RAPID (extended-reconfigurable, all-photonic interconnect for distributed and parallel systems) that not only dynamically reallocates bandwidth, but also reduces the power consumption for all traffic patterns. Our proposed LS (lock-step) reconfiguration technique combines dynamic power management (DPM) with DBR techniques, achieving a reduction in power consumption of 25%-50% while degrading the throughput by less than 5%.
机译:随着通信距离和比特率的增加,光电互连正逐渐成为事实标准/或设计用于高性能计算(HPC)系统的高带宽低延迟互连网络。尽管可以使用有效的复用技术(波长,时间和空间)进行带宽缩放,但是波长的静态分配可能不利于敌对流量模式的网络性能。基于实际流量模式的动态带宽重新配置可以通过利用空闲资源来提高网络性能。尽管动态带宽重新分配(DBR)技术可以缓解互连瓶颈,但功耗也会大大增加。在本文中,我们提出了一种动态可重新配置的体系结构,称为E-RAPID(用于分布式和并行系统的扩展可重新配置的全光子互连),它不仅可以动态地重新分配带宽,还可以降低所有流量模式的功耗。我们提出的LS(锁步)重新配置技术结合了动态电源管理(DPM)和DBR技术,可将功耗降低25%-50%,同时将吞吐量降低不到5%。

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