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    • 51. 发明申请
    • System for Internet Scale Visualization and Detection of Performance Events
    • 互联网规模可视化和性能事件检测系统
    • US20120151043A1
    • 2012-06-14
    • US12967869
    • 2010-12-14
    • Shobha VenkataramanJeffrey PangSubhabrata SenOliver Spatscheck
    • Shobha VenkataramanJeffrey PangSubhabrata SenOliver Spatscheck
    • G06F15/173
    • H04L43/045H04L43/0852
    • A system for visualization of performance measurements is disclosed. The system may include an electronic data processor configured to receive a stream of the performance measurements and select a maximum number of leaf nodes of a plurality of nodes for use in an adaptive decision tree. Additionally, the electronic processor may be configured to determine a depth of each branch in the adaptive decision tree needed to differentiate performance among internet protocol addresses in an internet protocol prefix of each node. Each of the plurality of nodes may be annotated with a predicted latency category and the processor may be configured to generate the adaptive decision tree based on the maximum number of leaf nodes selected, the depth of each branch determined, the predicted latency category, and on the stream of performance measurements associated with the network. Moreover, the processor may display the adaptive decision tree.
    • 公开了用于可视化性能测量的系统。 该系统可以包括电子数据处理器,其被配置为接收性能测量的流并且选择用于自适应决策树中的多个节点的最大数量的叶节点。 此外,电子处理器可以被配置为确定在每个节点的因特网协议前缀中的互联网协议地址之间区分性能所需的自适应决策树中的每个分支的深度。 可以利用预测的等待时间类别对多个节点中的每一个进行注释,并且处理器可以被配置为基于所选择的叶节点的最大数目,所确定的每个分支的深度,预测的等待时间类别和开启来生成自适应决策树 与网络相关的性能测量流。 此外,处理器可以显示自适应决策树。
    • 60. 发明申请
    • Network Aware Forward Caching
    • 网络意识转发缓存
    • US20130042009A1
    • 2013-02-14
    • US13650629
    • 2012-10-12
    • Alexandre GerberOliver SpatscheckDan PeiMohammad Taghi HajiaghayiJeffrey Erman
    • Alexandre GerberOliver SpatscheckDan PeiMohammad Taghi HajiaghayiJeffrey Erman
    • G06F15/173
    • H04L67/2842H04L67/2852
    • A network includes a cache server and a network aware server that operates to determine an optimization between a cost of retrieving content from a communication network and a cost of caching content at the cache server. The optimization is determined as a minimum of a sum of a transit cost, a backbone cost, and a caching cost. The transit cost includes a money cost per data unit. The backbone cost includes a money cost per data unit and time unit. The caching cost includes a money cost per server unit. In response to determining the optimization, the network aware server sends a content identifier to the cache server, and the cache server receives the content identifier, determines a source of a content item, and if the source is the same as the content identifier, then cache the content item.
    • 网络包括缓存服务器和网络感知服务器,其操作以确定从通信网络检索内容的成本与在缓存服务器上缓存内容的成本之间的优化。 优化被确定为运输成本,骨干成本和高速缓存成本之和的最小值。 过境成本包括每个数据单位的货币成本。 骨干成本包括每个数据单位的货币成本和时间单位。 缓存成本包括每个服务器单元的货币成本。 响应于确定优化,网络感知服务器向缓存服务器发送内容标识符,并且高速缓存服务器接收内容标识符,确定内容项的源,并且如果源与内容标识符相同,则 缓存内容项。