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    • 1. 发明授权
    • Replication optimization system and method
    • 复制优化系统和方法
    • US6049809A
    • 2000-04-11
    • US739948
    • 1996-10-30
    • Balan S. RamanArnold S. MillerDave D. StraubeShioupyn Shen
    • Balan S. RamanArnold S. MillerDave D. StraubeShioupyn Shen
    • G06F17/30H04L29/06H04L29/08
    • G06F17/30212H04L67/1095Y10S707/99953Y10S707/99954
    • A system and method of efficiently replicating data structures in a distributed system of replicas. Each replica in the distributed system maintains a cursor indicative of the extent to which other replicas in the system are consistent with one another. By examining the information in its cursor, a destination replica requesting replication from a source replica is able to determine the extent to which it has been made consistent with that source replica via indirect paths, thus potentially improving the starting point of replication. The source replica similarly examines its cursor to potentially improve the starting point of replication with respect to the starting point requested by the destination replica. In this manner, redundant information transmitted from a source replica when replicating a destination replica is reduced. The reduction in the amount of transmitted replication data is particularly appreciable when the replication topology of the system is changed such as by adding a new connection between existing replicas or by adding a new replica to the system.
    • 在复制品的分布式系统中有效地复制数据结构的系统和方法。 分布式系统中的每个副本都保留一个光标,指示系统中其他副本彼此一致的程度。 通过检查其游标中的信息,从源副本请求复制的目标副本能够通过间接路径确定其与该源副本一致的程度,从而潜在地改善复制的起始点。 源副本类似地检查其游标以相对于目的地副本请求的起始点潜在地改进起始点。 以这种方式,减少了在复制目的地复本时从源副本发送的冗余信息。 当系统的复制拓扑发生变化时,例如通过在现有副本之间添加新连接或通过向系统添加新副本,传输的复制数据量的减少特别明显。
    • 9. 发明授权
    • System and method for performing client-centric load balancing of multiple globally-dispersed servers
    • 用于以多个全局分散式服务器执行以客户为中心的负载平衡的系统和方法
    • US07653700B1
    • 2010-01-26
    • US09714406
    • 2000-11-16
    • Pradeep BahlFeng SunBernard D. AbodaArnold S. Miller
    • Pradeep BahlFeng SunBernard D. AbodaArnold S. Miller
    • G06F15/16
    • H04L67/1008H04L29/12009H04L29/12047H04L43/00H04L43/0852H04L43/0882H04L61/15H04L67/101H04L67/1038
    • Presented is a system and a method for load balancing multiple globally-dispersed servers based on client-centric performance criteria. The infrastructure of the system includes load balancing domain name servers (DNS-LBs) deployed in close physical proximity to the Internet service providers' points of presence. The DNS-LBs are then able to monitor the performance of the servers from a location close to the clients, which allows the DNS-LBs to select a server that will yield the best performance from that location for the client. A second level of the infrastructure utilizes domain name servers (DNS-Bs) that are deployed on the Internet backbones and regional provides. The authoritative domain name servers (DNS-As) for the servers to be load balanced refer all name queries to these DNS-Bs. The DNS-Bs then refer the queries to one of the DNS-LBs based on a mapping of the DNS-ISP address to its physically proximate DNS-LB. The DNS-LB then returns the IP address of the server that will provide the best performance from that location.
    • 提出了一种基于以客户为中心的性能标准来负载平衡多个全局分散服务器的系统和方法。 系统的基础设施包括负载平衡域名服务器(DNS-LB),部署在与Internet服务提供商的存在点紧密的物理接近处。 然后,DNS-LB能够从靠近客户端的位置监控服务器的性能,从而允许DNS-LB选择将为客户端从该位置获得最佳性能的服务器。 基础架构的第二级使用部署在互联网主干和区域提供的域名服务器(DNS-B)。 要负载平衡的服务器的权威域名服务器(DNS-As)将所有名称查询引用到这些DNS-B。 然后,DNS-B根据DNS-ISP地址与其物理上接近的DNS-LB的映射关系,将查询引用到DNS-LB之一。 然后,DNS-LB返回将从该位置提供最佳性能的服务器的IP地址。