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    • 1. 发明授权
    • Apparatus and method for a distributed storage global database
    • 分布式存储全局数据库的装置和方法
    • US07890463B2
    • 2011-02-15
    • US11902629
    • 2007-09-24
    • Yaniv RomemGilad ZlotkinIlia GildermanAvi Vigder
    • Yaniv RomemGilad ZlotkinIlia GildermanAvi Vigder
    • G06F7/00G06F17/00
    • G06F17/30575G06F17/30457
    • A geographically distributed storage system for managing the distribution of data elements wherein requests for given data elements incur a geographic inertia. The geographically distributed storage system comprises geographically distributed sites, each comprises a site storage unit for locally storing a portion of a globally coherent distributed database that includes the data elements and a local access point for receiving requests relating to ones of the data elements. The and geographically distributed storage system comprises a data management module for forwarding at least one requested data element to the local access point at a first of the geographically distributed sites from which the request is received and storing the at least one requested data element at the first site, thereby to provide local accessibility to the data element for future requests from the first site while maintaining the globally coherency of the distributed database.
    • 一种地理分布式存储系统,用于管理数据元素的分布,其中给定数据元素的请求引起地理惯性。 地理分布式存储系统包括地理上分布的站点,每个站点包括站点存储单元,用于本地存储包括数据元素的全局一致性分布式数据库的一部分,以及用于接收与数据元素之一相关的请求的本地接入点。 地理分布式存储系统包括数据管理模块,用于在接收到请求的第一个地理分布站点处将至少一个所请求的数据元素转发到本地接入点,并将第一个请求的数据元素存储在第一个 从而为维护分布式数据库的全局一致性提供来自第一站点的未来请求的数据元素的本地可访问性。
    • 4. 发明申请
    • Apparatus and method for a distributed storage global database
    • 分布式存储全局数据库的装置和方法
    • US20090070337A1
    • 2009-03-12
    • US11902629
    • 2007-09-24
    • Yaniv RomemGilad ZlotkinIlia GildermanAvi Vigder
    • Yaniv RomemGilad ZlotkinIlia GildermanAvi Vigder
    • G06F17/30
    • G06F17/30575G06F17/30457
    • A geographically distributed storage system for managing the distribution of data elements wherein requests for given data elements incur a geographic inertia. The geographically distributed storage system comprises geographically distributed sites, each comprises a site storage unit for locally storing a portion of a globally coherent distributed database that includes the data elements and a local access point for receiving requests relating to ones of the data elements. The and geographically distributed storage system comprises a data management module for forwarding at least one requested data element to the local access point at a first of the geographically distributed sites from which the request is received and storing the at least one requested data element at the first site, thereby to provide local accessibility to the data element for future requests from the first site while maintaining the globally coherency of the distributed database.
    • 一种地理分布式存储系统,用于管理数据元素的分布,其中给定数据元素的请求引起地理惯性。 地理分布式存储系统包括地理上分布的站点,每个站点包括站点存储单元,用于本地存储包括数据元素的全局一致性分布式数据库的一部分,以及用于接收与数据元素之一相关的请求的本地接入点。 地理分布式存储系统包括数据管理模块,用于在接收到请求的第一个地理分布站点处将至少一个所请求的数据元素转发到本地接入点,并将第一个请求的数据元素存储在第一个 从而为维护分布式数据库的全局一致性提供来自第一站点的未来请求的数据元素的本地可访问性。
    • 7. 发明申请
    • TECHNIQUES FOR WORKLOAD BALANCING AMONG A PLURALITY OF PHYSICAL MACHINES
    • 在多种物理机器上的工作平衡技术
    • US20130055260A1
    • 2013-02-28
    • US13590476
    • 2012-08-21
    • Gilad ZLOTKIN
    • Gilad ZLOTKIN
    • G06F9/455
    • G06F9/45533G06F9/4856
    • A method for workload balancing among a plurality of physical machines hosting a plurality of virtual machines (VMs) is disclosed. The method comprises periodically measuring a utilization of each hardware resource in each of the plurality of physical machines; computing a resource utilization score for each hardware resource based on its respective measured utilization; computing a total physical machine utilization score for each physical machine based on the computed resource utilization scores of its respective resources; and upon reception of a client request corresponding to a software application, selecting one physical machine of the plurality of physical machines to serve the client request, wherein the selection is based on the computed total physical machine utilization.
    • 公开了一种用于承载多个虚拟机(VM)的多个物理机器之间的工作负载平衡的方法。 该方法包括周期性地测量多个物理机器中的每一个中每个硬件资源的利用率; 基于其各自的测量的利用率来计算每个硬件资源的资源利用率; 基于计算出的各自资源的资源利用率,计算每个物理机器的总物理机器利用率; 并且在接收到与软件应用程序相对应的客户端请求时,选择所述多个物理机器中的一个物理机器来服务于所述客户端请求,其中所述选择基于计算的总物理机器利用率。
    • 9. 发明授权
    • Techniques for workload balancing among a plurality of physical machines
    • 用于在多个物理机器之间进行工作负载平衡的技术
    • US09489222B2
    • 2016-11-08
    • US13590476
    • 2012-08-21
    • Gilad Zlotkin
    • Gilad Zlotkin
    • G06F9/455G06F9/48
    • G06F9/45533G06F9/4856
    • A method for workload balancing among a plurality of physical machines hosting a plurality of virtual machines (VMs) is disclosed. The method comprises periodically measuring a utilization of each hardware resource in each of the plurality of physical machines; computing a resource utilization score for each hardware resource based on its respective measured utilization; computing a total physical machine utilization score for each physical machine based on the computed resource utilization scores of its respective resources; and upon reception of a client request corresponding to a software application, selecting one physical machine of the plurality of physical machines to serve the client request, wherein the selection is based on the computed total physical machine utilization.
    • 公开了一种用于承载多个虚拟机(VM)的多个物理机器之间的工作负载平衡的方法。 该方法包括周期性地测量多个物理机器中的每一个中每个硬件资源的利用率; 基于其各自的测量的利用率来计算每个硬件资源的资源利用率; 基于计算出的各自资源的资源利用率,计算每个物理机器的总物理机器利用率; 并且在接收到与软件应用程序相对应的客户端请求时,选择所述多个物理机器中的一个物理机器来服务于所述客户端请求,其中所述选择基于计算的总物理机器利用率。