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    • 92. 发明授权
    • Dynamically relocating workloads in a networked computing environment
    • 在网络化计算环境中动态重定位工作负载
    • US09229777B2
    • 2016-01-05
    • US13204910
    • 2011-08-08
    • Gregory J. BossChristopher J. DawsonRick A. Hamilton, IIBrian M. O'Connell
    • Gregory J. BossChristopher J. DawsonRick A. Hamilton, IIBrian M. O'Connell
    • G06F15/173G06F9/50
    • G06F9/5044G06F9/505
    • Embodiments of the present invention provide an approach for dynamically relocating a set of workloads among geographic regions of a networked computing environment (e.g., a cloud computing environment) based on infrastructure/computing resource needs. In a typical embodiment, it is determined whether a first geographic region of the networked computing environment has a first set of computing resources with an available capacity that meets a needed capacity for handling a set of workloads that is initially associated with the first geographic region. If not, a second geographic region of the networked computing environment having a second set of computing resources with the needed capacity is identified. In general, this determination can be made based upon multiple factors such as: a set of performance requirements, stored in at least one computer data structure, needed to handle the set of workloads; a set of environmental parameters, stored in the at least one computer data structure, having a potential to affect the handling of the set of workloads; and/or a set of cost parameters, stored in the at least one computer data structure, associated with handling the set of workloads. Once the second geographic region has been identified, the set of workloads can be associated with and handled thereby.
    • 本发明的实施例提供了一种用于基于基础设施/计算资源需求在网络计算环境(例如,云计算环境)的地理区域之间动态地重定位一组工作负载的方法。 在典型的实施例中,确定联网的计算环境的第一地理区域是否具有满足用于处理最初与第一地理区域相关联的一组工作负载的所需能力的可用容量的第一组计算资源。 如果不是,则识别具有所需容量的具有第二组计算资源的联网计算环境的第二地理区域。 一般而言,这种确定可以基于多个因素进行,例如:存储在处理该组工作负载所需的至少一个计算机数据结构中的一组性能要求; 存储在所述至少一个计算机数据结构中的一组环境参数,具有影响所述一组工作负载的处理的潜力; 和/或存储在所述至少一个计算机数据结构中的一组成本参数,其与处理所述工作负载集相关联。 一旦确定了第二个地理区域,就可以将这组工作负载与之相关联并进行处理。
    • 93. 发明授权
    • Migrating data between networked computing environments
    • 在联网计算环境之间迁移数据
    • US08909734B2
    • 2014-12-09
    • US13367412
    • 2012-02-07
    • Gregory J. BossChristopher J. DawsonRick A. Hamilton, IIBrian M. O'Connell
    • Gregory J. BossChristopher J. DawsonRick A. Hamilton, IIBrian M. O'Connell
    • G06F15/16
    • G06F3/0604G06F3/061G06F3/0649G06F3/067
    • Embodiments of the present invention provide an approach for predictively migrating data between network computing environments (e.g., cloud computing environments). Specifically, in a typical embodiment, data access patterns for sets of data utilized by a set of services running in a first networked computing environment may be analyzed. Based on the analysis one or more of the sets of data may be identified as candidates to be migrated from the first networked computing environment to a second networked computing environment. Then, a data migration protocol for the one or more sets of data to be migrated to the second networked computing environment may be generated based on the data access patterns and a predicted data migration time. Based on the data migration protocol, the one or more sets of data may then be migrated to the second networked computing environment.
    • 本发明的实施例提供了一种用于在网络计算环境(例如,云计算环境)之间预测性迁移数据的方法。 具体地,在典型的实施例中,可以分析由在第一联网计算环境中运行的一组服务使用的数据集的数据访问模式。 基于分析,一组或多组数据可以被识别为要从第一联网计算环境迁移到第二联网计算环境的候选。 然后,可以基于数据访问模式和预测的数据迁移时间来生成要迁移到第二联网计算环境的一组或多组数据的数据迁移协议。 基于数据迁移协议,可以将一组或多组数据迁移到第二联网计算环境。
    • 98. 发明授权
    • Security enhancements for immersive environments
    • 沉浸式环境的安全性增强
    • US08645847B2
    • 2014-02-04
    • US13172947
    • 2011-06-30
    • Gregory J. BossRick A. Hamilton, IINeil A. KatzBrian M. O'Connell
    • Gregory J. BossRick A. Hamilton, IINeil A. KatzBrian M. O'Connell
    • G06F3/048G06F3/00
    • G06F3/011
    • In some example embodiments, a method includes defining a tracking area for a first avatar in an online immersive environment, wherein the tracking area encompasses the first avatar and some defined area beyond the first avatar. The first avatar represents a first person who is a guardian of a second person in the real world and external to the online immersive environment. A second avatar represents the second person in the online immersive environment. The method includes tracking a path through the online immersive environment of the tracking area for the first avatar. The method includes marking a region in the online immersive environment as a safe zone for the second avatar, after the path of the tracking area for the first avatar has traversed the region. The method includes authorizing access to the region marked as the safe zone for the second avatar in the online immersive environment.
    • 在一些示例性实施例中,一种方法包括为在线沉浸式环境中的第一化身定义跟踪区域,其中所述跟踪区域包含所述第一头像和超出所述第一化身的某些限定区域。 第一个头像代表第一个人,他是现实世界中第二个人的守护者,在网络沉浸环境之外。 第二个头像代表在线沉浸式环境中的第二个人物。 该方法包括跟踪通过第一化身的跟踪区域的在线沉浸环境的路径。 该方法包括在第一化身的跟踪区域的路径经过该区域之后,将在线沉浸环境中的区域标记为第二化身的安全区域。 该方法包括授权访问被标记为在线沉浸式环境中的第二化身的安全区域的区域。
    • 99. 发明授权
    • Telephony services optimization through calling plan analysis
    • 电话服务优化通过电话计划分析
    • US08625764B2
    • 2014-01-07
    • US13035794
    • 2011-02-25
    • Kulvir S. BhogalGregory J. BossRick A. Hamilton, IIBrian M. O'ConnellAlexandre Polozoff
    • Kulvir S. BhogalGregory J. BossRick A. Hamilton, IIBrian M. O'ConnellAlexandre Polozoff
    • H04M3/42H04M15/00H04M11/00H04W4/00H04W40/00G01R31/08
    • H04M15/805H04M15/8044H04M2215/42
    • Embodiments of the present invention provide optimization of telephone services through telephone calling plan/card analysis. The least expensive rate is found for telephone calls at any given time and/or date, either through static pre-entry of data, or through dynamic querying of rates via a web-based look-up table, and places calls according to an optimized calling plan. Specifically, in a typical embodiment, an outgoing/target telephone number for an intended telephone call is captured, and a corresponding destination geographic region is identified. Based on the geographic region, a calling plan resulting in a lowest price for the telephone call is identified. This is typically accomplished by consulting at least one table (e.g., call information table) that associates (among other things) calling plans and/or calling cards with geographic regions. Once a calling plan and/or calling card is identified/selected, a corresponding set of dialing instructions will be obtained from the table and used to make/place the telephone call.
    • 本发明的实施例通过电话呼叫计划/卡分析提供电话服务的优化。 在任何给定的时间和/或日期,通过静态预先输入数据,或通过基于网络的查找表动态查询费率,找到最便宜的费率,并根据优化的地点进行呼叫 通话计划 具体地,在典型的实施例中,捕获用于预期电话呼叫的输出/目标电话号码,并且识别对应的目的地地理区域。 基于地理区域,确定了导致电话最低价格的呼叫计划。 这通常通过咨询与呼叫计划和/或呼叫卡与地理区域(其中包括)相关联的至少一个表(例如,呼叫信息表)来实现。 一旦识别/选择呼叫计划和/或呼叫卡,将从表中获得相应的一组拨号指令,并用于进行/拨打电话。