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    • 5. 发明申请
    • ROUTER PARKING IN POWER-EFFICIENT INTERCONNECT ARCHITECTURES
    • 路由器驻留在功率有效的互联体系结构中
    • US20140149766A1
    • 2014-05-29
    • US13994780
    • 2012-01-10
    • Ahmad SamihRen WangChristian MacioccoTsung-Yuan C. Tai
    • Ahmad SamihRen WangChristian MacioccoTsung-Yuan C. Tai
    • G06F1/32
    • G06F1/325H04L45/06H04L45/127
    • A method and apparatus for selectively parking routers used for routing traffic in mesh interconnects. Various router parking (RP) algorithms are disclosed, including an aggressive RP algorithm where a minimum number of routers are kept active to ensure adequate network connectivity between active nodes and/or intercommunicating nodes, leading to a maximum reduction in static power consumption, and a conservative RP algorithm that favors network latency considerations over static power consumption while also reducing power. An adaptive RP algorithm is also disclosed that implements aspects of the aggressive and conservative RP algorithms to balance power consumption and latency considerations in response to ongoing node utilization and associated traffic. The techniques may be implemented in internal network structures, such as for single chip computers, as well as external network structures, such as computing clusters and massively parallel computer architectures. Performance modeling has demonstrated substantial power reduction may be obtained using the router parking techniques while maintaining Quality of Service performance objectives.
    • 一种用于选择性地停放用于在网状互连中路由业务的路由器的方法和装置。 公开了各种路由器驻留(RP)算法,包括侵略性RP算法,其中最少数量的路由器保持活动以确保活动节点和/或互通节点之间的足够的网络连接,导致静态功耗的最大降低,以及 保守的RP算法有利于静态功耗下的网络延迟考虑,同时也降低了功耗。 还公开了一种自适应RP算法,其实现了积极和保守的RP算法的各个方面,以响应于正在进行的节点利用率和相关联的流量来平衡功耗和延迟考虑。 这些技术可以在诸如单芯片计算机的内部网络结构以及诸如计算集群和大规模并行计算机体系结构的外部网络结构中实现。 性能建模已经证明,使用路由器停放技术可以获得大量的功率降低,同时保持服务质量的性能目标。