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    • 3. 发明申请
    • ADAPTIVE LOCALIZED CONTENT STORAGE AND DISTRIBUTION
    • 自适应本地化内容存储和分发
    • US20130246564A1
    • 2013-09-19
    • US13423562
    • 2012-03-19
    • Jay J. LEEDavid ChiangPatricia Ruey-Jane ChangLalit R. Kotecha
    • Jay J. LEEDavid ChiangPatricia Ruey-Jane ChangLalit R. Kotecha
    • G06F15/16
    • H04L29/0854H04L29/08702H04L63/10H04L67/2842
    • A device receives, from a user device and via a first device, a first request for content, and determines whether the content is stored in memory. The device identifies first other requests for the content, received via the first device over a time period, and second other requests for the content, received via a second device over the time period, when the content is stored in the memory. The device identifies a first quantity of the first other requests and a second quantity of the second other requests, and determines whether the first quantity or the second quantity is greater than a threshold. The device transmits the content, to the user device and via the first device, when the first quantity is not greater than the threshold, and transmits, to the second device, an instruction to store the content when the second quantity is greater than the threshold.
    • 设备从用户设备和经由第一设备接收对内容的第一请求,并且确定内容是否被存储在存储器中。 当内容被存储在存储器中时,该设备识别经由一段时间段经由第一设备接收的内容的第一其他请求以及经过该时间段经由第二设备接收的针对该内容的第二其他请求。 设备识别第一其他请求的第一数量和第二其他请求的第二数量,并且确定第一数量或第二数量是否大于阈值。 当第一数量不大于阈值时,设备将内容发送到用户设备并经由第一设备,并且当第二数量大于阈值时向第二设备发送存储内容的指令 。
    • 8. 发明申请
    • SYSTEM AND METHOD FOR MULTI-LAYER NETWORK ANALYSIS AND DESIGN
    • 多层网络分析与设计的系统与方法
    • US20100149993A1
    • 2010-06-17
    • US12334681
    • 2008-12-15
    • Deepak KAKADIAJay J. LEEThomas H. TAN
    • Deepak KAKADIAJay J. LEEThomas H. TAN
    • G06F11/00
    • H04L69/40
    • Techniques for providing a method and system for multi-layer network analysis and design are disclosed. In one particular exemplary embodiment, the techniques may be realized as a method, comprising determining, using a computer model of a network, a minimum probability of failure path between a pair of network nodes at a first network layer for one or more pairs of network nodes, calculating, using a processor and stored network data, a value for the minimum probability of failure for the identified minimum probability of failure path between the pair of network nodes at the first network layer for the one or more pairs of network nodes. The method may include identifying, using a processor, a maximum of the determined minimum probability of failure values for the one or more pairs of network nodes for the first network layer, determining, using the computer model of a network, a minimum probability of failure path between a pair of network nodes at one or more secondary network layers for one or more pairs of network nodes and calculating, using a processor and stored network data, a value for the minimum probability of failure for the identified minimum probability of failure path at the one or more secondary network layers. The method may further include identifying, using a processor, a maximum of the determined minimum probability of failures for each of the one or more secondary network layers, and outputting, via a user interface, one or more maximum of the determined minimum probability of failure values for one or more network layers for one or more pairs of network nodes of the modeled network.
    • 公开了提供用于多层网络分析和设计的方法和系统的技术。 在一个特定的示例性实施例中,可以将技术实现为一种方法,包括使用网络的计算机模型来确定在一个或多个网络对的第一网络层的一对网络节点之间的最小故障路径概率 节点,使用处理器和存储的网络数据计算针对所述一对或多对网络节点的所述第一网络层的所述一对网络节点之间所识别的最小故障路径概率的最小故障概率的值。 该方法可以包括使用处理器识别用于第一网络层的一对或多对网络节点的所确定的最小故障概率值的最大值,使用网络的计算机模型确定最小故障概率 在一个或多个次网络层上的一对网络节点之间的一对或多对网络节点之间的路径,并且使用处理器和存储的网络数据计算所识别的最小故障路径概率的最小故障概率的值 一个或多个二级网络层。 该方法还可以包括使用处理器识别所确定的一个或多个辅助网络层中的每个的最大故障概率,并且经由用户界面输出所确定的最小故障概率的一个或多个最大值 用于建模网络的一个或多个网络节点对的一个或多个网络层的值。
    • 9. 发明申请
    • P2P ACTIVITY DETECTION AND MANAGEMENT
    • P2P活动检测与管理
    • US20120297051A1
    • 2012-11-22
    • US13109195
    • 2011-05-17
    • Deepak KAKADIAJay J. LEEThomas H. TAN
    • Deepak KAKADIAJay J. LEEThomas H. TAN
    • G06F15/16
    • H04L67/104H04L12/6418H04L43/026H04L43/028H04L63/0227H04L63/1425H04L67/22
    • A network device may receive a peer-to-peer (P2P) activity record corresponding to a P2P data flow of P2P activity in a network. The P2P data flow may include content information communicated from a first user equipment device (UE) to a second UE via the network, and the P2P activity record may include information identifying the P2P data flow. The network device may insert the information identifying the P2P data flow into a P2P activity map and compare the P2P activity map to a P2P pattern of interest. The network device may also determine a P2P activity of interest probability based on the comparison of the P2P activity map to the P2P pattern of interest, which may describe the likelihood that P2P activity of interest is occurring in the network. The network device may also generate a system response based on the P2P activity of interest probability.
    • 网络设备可以接收与网络中的P2P活动的P2P数据流对应的对等(P2P)活动记录。 P2P数据流可以包括经由网络从第一用户设备设备(UE)传送到第二UE的内容信息,并且P2P活动记录可以包括标识P2P数据流的信息。 网络设备可以将识别P2P数据流的信息插入到P2P活动地图中,并将P2P活动地图与P2P感兴趣的图案进行比较。 网络设备还可以基于P2P活动图与感兴趣的P2P模式的比较来确定兴趣的P2P活动,这可以描述在网络中发生兴趣的P2P活动的可能性。 网络设备还可以基于P2P兴趣概率生成系统响应。
    • 10. 发明申请
    • FLOW-BASED PROACTIVE CONNECTION ADMISSION CONTROL (CAC) IN WIRELESS NETWORKS
    • 在无线网络中基于流量的主动连接接入控制(CAC)
    • US20120002541A1
    • 2012-01-05
    • US12828810
    • 2010-07-01
    • Jay J. LEELee K. TJIO
    • Jay J. LEELee K. TJIO
    • H04W28/02
    • H04W28/22H04L47/805H04W28/24H04W76/10
    • A device receives available capacity and used capacity associated with a network, receives a connection request from a user device in the network, and receives a maximum capacity threshold associated with the network. The device calculates a minimum capacity threshold and a medium capacity threshold, associated with the network, based on the maximum capacity threshold. The device also determines whether to admit or deny the connection request based on the available capacity, the used capacity, the minimum capacity threshold, the medium capacity threshold, and the maximum capacity threshold. The device further allocates, when the connection request is to be admitted and based on resource availability associated with the network, a particular bit rate, for a particular quality of service (QoS) class, to the connection request.
    • 设备接收与网络相关联的可用容量和使用容量,从网络中的用户设备接收连接请求,并且接收与网络相关联的最大容量阈值。 该设备基于最大容量阈值计算与网络相关联的最小容量阈值和中等容量阈值。 设备还根据可用容量,使用容量,最小容量阈值,中容量阈值和最大容量阈值,确定是否接纳或拒绝连接请求。 当连接请求被允许并且基于与网络相关联的资源可用性时,该设备进一步分配针对特定服务质量(QoS)类别的特定比特率到该连接请求。