Stabilizing Path Modification of Power-Aware On/Off Interconnection Networks

José Miguel Montañana, M. Koibuchi, Hiroki Matsutani, H. Amano
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引用次数: 2

Abstract

Power saving is required for interconnects of modern PC clusters as well as the performance improvement. To reduce the power consumption of switches with maintaining the performance, on/off link regulations that activate and deactivate the links based on the traffic load have been widely developed in interconnection networks. Depending on which operation is selected, link activation or deactivation, the available network resources are changed, thus requiring paths to be reconfigured. To maintain deadlock freedom of packet transfers, connectivity, and performance during the path changes, we propose to apply dynamic reconfiguration techniques that process packet transfer uninterruptedly to power-aware on/off interconnection networks. The dynamic network reconfiguration techniques stabilize the update of paths that are quite crucial to use power-aware on/off link techniques in interconnects of PC clusters. We investigate the performance and behavior of network reconfiguration technique as soon as the link activation or deactivation occurs. Evaluation results show that the simple dynamic reconfiguration techniques slightly reduce the peak packet latency and reconfiguration time of the change compared with existing static reconfiguration in on/off interconnection networks. A reconfiguration technique called Double Scheme reduces by up to 95% the peak packet latency caused by the on/off link operation.
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电力感知开/关互联网络的稳定路径修改
节能是现代PC集群互连和性能提升的要求。为了在保证性能的同时降低交换机的功耗,在互连网络中广泛发展了基于流量负载激活和关闭链路的开关链路规则。根据选择的操作,链路激活或去激活,可用的网络资源会发生变化,因此需要重新配置路径。为了在路径改变期间保持数据包传输、连接和性能的死锁自由,我们建议应用动态重新配置技术,在电源感知的开/关互连网络中不间断地处理数据包传输。动态网络重构技术稳定了路径的更新,这对于在PC集群互连中使用功率感知的开/关链路技术至关重要。我们研究了当链路激活或去激活发生时,网络重构技术的性能和行为。评估结果表明,在开/关互联网络中,与现有的静态重构相比,简单的动态重构技术略微降低了峰值数据包延迟和重构时间。一种称为双方案的重新配置技术可减少高达95%的由开/关链路操作引起的峰值数据包延迟。
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