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    • 111. 发明授权
    • Geographical distributed storage system based on hierarchical peer to peer architecture
    • 基于分层对等体系结构的地理分布式存储系统
    • US08301654B2
    • 2012-10-30
    • US12391548
    • 2009-02-24
    • Shoji KodamaWujuan Lin
    • Shoji KodamaWujuan Lin
    • G06F17/30
    • G06F17/30241H04L41/0893H04L41/12H04L45/02H04L67/104H04L67/1059H04L67/1065
    • A geographically distributed storage system including a global Peer-To-Peer (P2P) ring and a local P2P ring. The global P2P ring includes all storage nodes and the local P2P ring includes a group of the storage nodes. Each of the group of storage node belongs to the global P2P ring and the local P2P ring and each storage node includes global and local management information. The global management information includes a node table for managing topology information of a network connecting the group, a metadata table for managing locations of stored data objects, and a global routing table for managing routing in the global P2P ring. The local management information includes an object management table for managing stored data objects in the group, a Logical Unit (LU) management table for managing logical units in the group and a local routing table used for managing routing in the local P2P ring.
    • 包括全球对等(P2P)环和本地P2P环的地理分布式存储系统。 全球P2P环包括所有存储节点,本地P2P环包括一组存储节点。 存储节点组属于全球P2P环,本地P2P环和每个存储节点包括全局和本地管理信息。 全局管理信息包括用于管理连接该组的网络的拓扑信息的节点表,用于管理所存储的数据对象的位置的元数据表以及用于管理全球P2P环中的路由的全局路由表。 本地管理信息包括用于管理组中存储的数据对象的对象管理表,用于管理组中的逻辑单元的逻辑单元(LU)管理表和用于管理本地P2P环中的路由的本地路由表。
    • 113. 发明授权
    • Method for distributing content data packages originated by users of a super peer-to-peer network
    • 用于分发由超级对等网络的用户发起的内容数据包的方法
    • US08166148B2
    • 2012-04-24
    • US12336249
    • 2008-12-16
    • Andrey KiselDave Cecil Robinson
    • Andrey KiselDave Cecil Robinson
    • G06F15/173
    • H04L67/104H04L67/1059H04L67/1065H04L67/28H04L67/2842H04L67/306
    • A method for distributing content data packages 7 originated by users of a super peer-to-peer network is proposed, wherein the content data packages 7 are to be cached in caching nodes CN1,CN2,CN3,CN4 of said network. The network comprises a plurality of caching nodes CN1,CN2,CN3,CN4 and user nodes 5 of said users and a plurality of data lines that extend between adjacent of said nodes and the users are being grouped in user groups and listed in a user group list. Content data traffic is to be delivered on traffic connections between user nodes 5 of the network. The method comprises the steps of: a) receiving a request for uploading an upload content data package 7 from a requesting user of the users by an agent network node of said network, b) looking up all user group members of the users being member of a current user group UG1 of said requesting user in said user group list and determining the user nodes of said user group members, c) determining in which of the caching nodes CN1,CN2,CN3,CN4 of the network said upload content data package 7 is to be cached by applying a decision matrix, wherein said decision matrix defines a relationship defining at which caching node content data packages 7 have to be cached for which user node, d) caching said upload content data package 7 in the determined caching nodes CN1,CN2,CN3,CN4.
    • 提出了一种用于分发由超级对等网络的用户发起的内容数据包7的方法,其中内容数据包7将被缓存在所述网络的高速缓存节点CN1,CN2,CN3,CN4中。 该网络包括多个高速缓存节点CN1,CN2,CN3,CN4和所述用户的用户节点5,并且在所述节点和用户的相邻之间延伸的多条数据线被分组在用户组中并列在用户组中 列表。 内容数据流量将在网络的用户节点5之间的流量连接上传送。 该方法包括以下步骤:a)由所述网络的代理网络节点从用户的请求用户接收上载上载内容数据包7的请求,b)查找作为所述用户的所有用户的所有用户组成员 所述用户组列表中的所述请求用户的当前用户组UG1,并确定所述用户组成员的用户节点,c)确定网络的所述高速缓存节点CN1,CN2,CN3,CN4中的哪一个,所述上载内容数据包7 通过应用决策矩阵来缓存,其中所述决策矩阵定义定义哪个高速缓存节点内容数据包7必须被缓存到哪个用户节点的关系,d)将所述上载内容数据包7缓存在所确定的高速缓存节点CN1中 ,CN2,CN3,CN4。
    • 115. 发明授权
    • Autonomic sensor network ecosystem
    • 自主传感器网络生态系统
    • US08041772B2
    • 2011-10-18
    • US11220961
    • 2005-09-07
    • Riz S. AmanuddinJonghae KimMoon J. KimEric C. Yee
    • Riz S. AmanuddinJonghae KimMoon J. KimEric C. Yee
    • G06F15/16G06F15/173
    • H04W84/18H04L43/0817H04L67/104H04L67/1046H04L67/1059H04L67/1068H04L67/1093H04L67/12H04W24/00H04W72/04H04W74/06H04W88/16
    • The present invention provides a method, system and program product for deploying and allocating resources, and addressing threats in an autonomic sensor network ecosystem. Specifically, under the present invention, the autonomic sensor network ecosystem includes a set (e.g., one or more) of sensor networks each having a set of sensor peers and at least one super peer; a set of micro grid gateways; and a set of enterprise gateways. Each micro grid gateway is typically adapted to receive requests from a sensor network, an enterprise gateway, and/or another micro grid gateway. Moreover, each micro grid gateway includes a request broker for receiving the requests; a request queue manager for queuing the requests; a scheduler for scheduling the requests; and a resource manager for monitoring the set of sensor networks.
    • 本发明提供了用于部署和分配资源以及解决自主传感器网络生态系统中的威胁的方法,系统和程序产品。 具体地说,在本发明的范围内,自主传感器网络生态系统包括一组(例如一个或多个)传感器网络,每个传感器网络具有一组传感器对等体和至少一个超级对等体; 一套微网格网关; 和一套企业网关。 每个微网格网关通常适于接收来自传感器网络,企业网关和/或另一微网格网关的请求。 此外,每个微网格网关包括用于接收请求的请求代理; 用于排队请求的请求队列管理器; 调度器,用于调度请求; 以及用于监测传感器网络集合的资源管理器。
    • 116. 发明申请
    • Device and Method for Disseminating Content Data Between Peers in A P2P Mode, By Using A Bipartite Peer Overlay
    • 通过使用双向对等覆盖,在P2P模式中传播对等体之间的内容数据的设备和方法
    • US20110161417A1
    • 2011-06-30
    • US12737295
    • 2009-06-30
    • Nicolas Le ScouarnecMary-Luc Champel
    • Nicolas Le ScouarnecMary-Luc Champel
    • G06F15/16
    • H04L67/104H04L67/1059H04L67/1076
    • A method is intended for disseminating content data in a peer-to-peer mode between peers connected to at least one communication network. This method comprises the steps of: i) making peers exchange neighboring information between them to build a bipartite peer overlay comprising a first group, comprising peers having a complete content to be disseminated, and a second group, comprising peers having not this content or only a part of it and having links therebetween, ii) disseminating the data defining the content (and preferably encoded with erasure correcting codes) from peers of the first group to first peers of the second group according to the bipartite peer overlay, iii) disseminating the data received by the first peers to other peers of the second group according to the bipartite peer overlay, and iv) updating the bipartite peer overlay when a peer of the second group has fully completed the content.
    • 一种方法旨在在连接到至少一个通信网络的对等体之间以对等模式传播内容数据。 该方法包括以下步骤:i)使对等体在它们之间交换相邻信息,以构建包括第一组的双重对等层覆盖,包括具有要传播的完整内容的对等体,以及第二组,包括不具有该内容的对等体 其一部分并且在它们之间具有链接,ii)根据第二组的第二组的第一对等体,将定义内容(并且优选地由擦除校正码编码)的数据传播到第二组的第一对等体,iii)传播 所述第一对等体根据所述第二组对等体重叠向所述第二组的其他对等体接收的数据,以及iv)当所述第二组的对等方已经完全完成所述内容时,更新所述二分对等体覆盖。
    • 118. 发明申请
    • GEOGRAPHICAL DISTRIBUTED STORAGE SYSTEM BASED ON HIERARCHICAL PEER TO PEER ARCHITECTURE
    • 基于层次结构的地理分布式存储系统
    • US20100228798A1
    • 2010-09-09
    • US12391548
    • 2009-02-24
    • Shoji KodamaWujuan Lin
    • Shoji KodamaWujuan Lin
    • G06F17/30G06F7/00G06F15/16
    • G06F17/30241H04L41/0893H04L41/12H04L45/02H04L67/104H04L67/1059H04L67/1065
    • A geographically distributed storage system including a global Peer-To-Peer (P2P) ring and a local P2P ring. The global P2P ring includes all storage nodes and the local P2P ring includes a group of the storage nodes. Each of the group of storage node belongs to the global P2P ring and the local P2P ring and each storage node includes global and local management information. The global management information includes a node table for managing topology information of a network connecting the group, a metadata table for managing locations of stored data objects, and a global routing table for managing routing in the global P2P ring. The local management information includes an object management table for managing stored data objects in the group, a Logical Unit (LU) management table for managing logical units in the group and a local routing table used for managing routing in the local P2P ring.
    • 包括全球对等(P2P)环和本地P2P环的地理分布式存储系统。 全球P2P环包括所有存储节点,本地P2P环包括一组存储节点。 存储节点组属于全球P2P环,本地P2P环和每个存储节点包括全局和本地管理信息。 全局管理信息包括用于管理连接该组的网络的拓扑信息的节点表,用于管理所存储的数据对象的位置的元数据表以及用于管理全球P2P环中的路由的全局路由表。 本地管理信息包括用于管理组中存储的数据对象的对象管理表,用于管理组中的逻辑单元的逻辑单元(LU)管理表和用于管理本地P2P环中的路由的本地路由表。