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    • 1. 发明申请
    • Resource Optimizations in Computing Utilities
    • 计算实用程序中的资源优化
    • US20080313160A1
    • 2008-12-18
    • US12197593
    • 2008-08-25
    • Joseph L. HellersteinKaan KatirciogluMaheswaran Surendra
    • Joseph L. HellersteinKaan KatirciogluMaheswaran Surendra
    • G06F17/30
    • G06Q10/06Y10S707/99933Y10S707/99935Y10S707/99943
    • Techniques are provided for use in accordance with relates to computing utilities. For example, in one aspect of the invention, a method for use in a computing utility, wherein the computing utility comprises a plurality of application service provider systems and a utility controller, and each application service provider system comprising an application controller, comprises the following steps. An application request to one of the plurality of application service provider systems is obtained. Then, in response to the application request, at least one of: (i) the application controller of the application service provider system to which the application request is directed computes a value of a business metric associated with a resource action; and (ii) the utility controller computes a value of a business metric associated with a resource action.
    • 根据与计算实用程序有关的技术被提供用于使用。 例如,在本发明的一个方面,一种在计算实用程序中使用的方法,其中所述计算实用程序包括多个应用服务提供者系统和效用控制器,并且包括应用控制器的每个应用服务提供商系统包括以下 脚步。 获得对多个应用服务提供商系统之一的应用请求。 然后,响应于所述应用请求,至少一个:(i)应用请求所针对的应用服务提供商系统的应用控制器计算与资源动作相关联的业务量度的值; 和(ii)公用事业控制器计算与资源动作相关联的业务度量的值。
    • 2. 发明授权
    • Resource optimizations in computing utilities
    • 计算实用程序中的资源优化
    • US07953729B2
    • 2011-05-31
    • US12197593
    • 2008-08-25
    • Joseph L. HellersteinKaan KatirciogluMaheswaran Surendra
    • Joseph L. HellersteinKaan KatirciogluMaheswaran Surendra
    • G06F17/30
    • G06Q10/06Y10S707/99933Y10S707/99935Y10S707/99943
    • Techniques are provided for use in accordance with relates to computing utilities. For example, in one aspect of the invention, a method for use in a computing utility, wherein the computing utility comprises a plurality of application service provider systems and a utility controller, and each application service provider system comprising an application controller, comprises the following steps. An application request to one of the plurality of application service provider systems is obtained. Then, in response to the application request, at least one of: (i) the application controller of the application service provider system to which the application request is directed computes a value of a business metric associated with a resource action; and (ii) the utility controller computes a value of a business metric associated with a resource action.
    • 根据与计算实用程序有关的技术被提供用于使用。 例如,在本发明的一个方面,一种在计算实用程序中使用的方法,其中所述计算实用程序包括多个应用服务提供者系统和效用控制器,并且包括应用控制器的每个应用服务提供商系统包括以下 脚步。 获得对多个应用服务提供商系统之一的应用请求。 然后,响应于所述应用请求,至少一个:(i)应用请求所针对的应用服务提供商系统的应用控制器计算与资源动作相关联的业务度量的值; 和(ii)公用事业控制器计算与资源动作相关联的业务度量的值。
    • 3. 发明授权
    • Resource optimizations in computing utilities
    • 计算实用程序中的资源优化
    • US07496564B2
    • 2009-02-24
    • US10993269
    • 2004-11-19
    • Joseph L. HellersteinKaan KatirciogluMaheswaran Surendra
    • Joseph L. HellersteinKaan KatirciogluMaheswaran Surendra
    • G06F17/30
    • G06Q10/06Y10S707/99933Y10S707/99935Y10S707/99943
    • Techniques are provided for use in accordance with relates to computing utilities. For example, in one aspect of the invention, a method for use in a computing utility, wherein the computing utility comprises a plurality of application service provider systems and a utility controller, and each application service provider system comprising an application controller, comprises the following steps. An application request to one of the plurality of application service provider systems is obtained. Then, in response to the application request, at least one of: (i) the application controller of the application service provider system to which the application request is directed computes a value of a business metric associated with a resource action; and (ii) the utility controller computes a value of a business metric associated with a resource action.
    • 根据与计算实用程序有关的技术被提供用于使用。 例如,在本发明的一个方面,一种在计算实用程序中使用的方法,其中所述计算实用程序包括多个应用服务提供者系统和效用控制器,并且每个包括应用控制器的应用服务提供商系统包括以下 脚步。 获得对多个应用服务提供商系统之一的应用请求。 然后,响应于所述应用请求,至少一个:(i)应用请求所针对的应用服务提供商系统的应用控制器计算与资源动作相关联的业务度量的值; 和(ii)公用事业控制器计算与资源动作相关联的业务度量的值。
    • 4. 发明申请
    • Systems and methods for business-level resource optimizations in computing utilities
    • 计算实用程序中业务级资源优化的系统和方法
    • US20060112075A1
    • 2006-05-25
    • US10993269
    • 2004-11-19
    • Joseph HellersteinKaan KatirciogluMaheswaran Surendra
    • Joseph HellersteinKaan KatirciogluMaheswaran Surendra
    • G06F17/30
    • G06Q10/06Y10S707/99933Y10S707/99935Y10S707/99943
    • Techniques are provided for use in accordance with relates to computing utilities. For example, in one aspect of the invention, a method for use in a computing utility, wherein the computing utility comprises a plurality of application service provider systems and a utility controller, and each application service provider system comprising an application controller, comprises the following steps. An application request to one of the plurality of application service provider systems is obtained. Then, in response to the application request, at least one of: (i) the application controller of the application service provider system to which the application request is directed computes a value of a business metric associated with a resource action; and (ii) the utility controller computes a value of a business metric associated with a resource action.
    • 根据与计算实用程序有关的技术被提供用于使用。 例如,在本发明的一个方面,一种在计算实用程序中使用的方法,其中所述计算实用程序包括多个应用服务提供者系统和效用控制器,并且包括应用控制器的每个应用服务提供商系统包括以下 脚步。 获得对多个应用服务提供商系统之一的应用请求。 然后,响应于所述应用请求,至少一个:(i)应用请求所针对的应用服务提供商系统的应用控制器计算与资源动作相关联的业务度量的值; 和(ii)公用事业控制器计算与资源动作相关联的业务度量的值。
    • 5. 发明申请
    • Method and System for Adaptive Project Risk Management
    • 自适应项目风险管理方法与系统
    • US20080255910A1
    • 2008-10-16
    • US11735699
    • 2007-04-16
    • Sugato BagchiStephen BuckleyLea A. DelerisShubir KapoorKaan KatirciogluRichard B. Lam
    • Sugato BagchiStephen BuckleyLea A. DelerisShubir KapoorKaan KatirciogluRichard B. Lam
    • G06F9/46
    • G06Q10/06G06Q10/0635
    • A computer implemented method for improving project risk management based on (a) a quantitative analysis of risks affecting activities, i.e., the root factors leading to cost and time overruns on an activity by activity basis, and (b) an optimization of the resources allocation to each activity in the project plan, is employed to maximize the probability of completing projects on time and within-budget. The method can be employed prior to proceeding with one or more projects, but is also advantageous in that it is adaptive in the sense that more information can be learned during the course of a project about the risk factors present in the project, and this information is used to enable dynamically re-allocating resources to ensure a better outcome given an updated risk profile. Preferably, a Bayesian Belief Network (BBN) is used to capture how risk factors identified by project managers influence individual activity durations.
    • 一种用于改进项目风险管理的计算机实施方法,其基于(a)对影响活动的风险的定量分析,即导致成本和活动的活动的时间超支的根本因素,以及(b)优化资源分配 对于项目计划中的每项活动,都被用来最大限度地提高按时完成项目的预算。 该方法可以在进行一个或多个项目之前被使用,但也是有利的,因为在项目过程中可以在项目过程中学习更多的信息来描述项目中存在的风险因素,并且该信息是适应性的 用于实现动态重新分配资源,以确保更新的风险概况更好的结果。 优选地,贝叶斯信仰网络(BBN)用于捕获由项目经理确定的风险因素如何影响个人活动持续时间。
    • 7. 发明授权
    • Method, system, and storage medium for assessing and implementing an organizational transformation
    • 用于评估和实施组织转型的方法,系统和存储介质
    • US07792694B2
    • 2010-09-07
    • US10905117
    • 2004-12-16
    • Mamnoon JamilDaniel J. PetersKaan Katircioglu
    • Mamnoon JamilDaniel J. PetersKaan Katircioglu
    • G06F17/30
    • G06Q10/06G06Q10/063G06Q10/0635G06Q10/0637G06Q10/06393G06Q30/0201
    • A method, system, and storage medium for assessing and implementing an organizational transformation. The method includes identifying at least one process area for each management area targeted for assessment and evaluating at least one solution for the at least one process area. A pairing of a solution to a process area results in a functional area. The method further includes performing orthogonal assessments for each functional area. The orthogonal assessments include determining a need for organizational transformation by ranking each of the functional areas according to a perceived need for organizational transformation, evaluating each of the at least one process area against each of the at least one corresponding solution and calculating any performance gaps identified based upon the evaluating, and evaluating an implementation capability for each of the at least one solution. The method also includes presenting results of each of the orthogonal assessments.
    • 一种用于评估和实施组织转型的方法,系统和存储介质。 该方法包括针对用于评估和评估至少一个处理区域的至少一个解决方案的每个管理区域识别至少一个处理区域。 将处理区域的解决方案配对导致功能区域。 该方法还包括对每个功能区执行正交评估。 正交评估包括通过根据感知到的对组织变革的需求对每个功能区域进行排序来确定对组织变革的需求,根据所述至少一个相应解决方案中的每一个来评估所述至少一个处理区域中的每一个,并计算所识别的任何性能差距 基于对所述至少一个解决方案中的每一个的评估和评估实现能力。 该方法还包括呈现每个正交评估的结果。
    • 9. 发明申请
    • Method, System, And Storage Medium For Assessing And Implementing An Organizational Transformation
    • 方法,系统和存储介质,用于评估和实施组织转型
    • US20060136281A1
    • 2006-06-22
    • US10905117
    • 2004-12-16
    • Daniel PetersMamnoon JamilKaan Katircioglu
    • Daniel PetersMamnoon JamilKaan Katircioglu
    • G06F17/30
    • G06Q10/06G06Q10/063G06Q10/0635G06Q10/0637G06Q10/06393G06Q30/0201
    • A method, system, and storage medium for assessing and implementing an organizational transformation. The method includes identifying at least one process area for each management area targeted for assessment and evaluating at least one solution for the at least one process area. A pairing of a solution to a process area results in a functional area. The method further includes performing orthogonal assessments for each functional area. The orthogonal assessments include determining a need for organizational transformation by ranking each of the functional areas according to a perceived need for organizational transformation, evaluating each of the at least one process area against each of the at least one corresponding solution and calculating any performance gaps identified based upon the evaluating, and evaluating an implementation capability for each of the at least one solution. The method also includes presenting results of each of the orthogonal assessments.
    • 一种用于评估和实施组织转型的方法,系统和存储介质。 该方法包括针对用于评估和评估至少一个处理区域的至少一个解决方案的每个管理区域识别至少一个处理区域。 将处理区域的解决方案配对导致功能区域。 该方法还包括对每个功能区执行正交评估。 正交评估包括通过根据感知到的对组织变革的需求对每个功能区域进行排序来确定对组织变革的需求,根据所述至少一个相应解决方案中的每一个来评估所述至少一个处理区域中的每一个,并计算所识别的任何性能差距 基于对所述至少一个解决方案中的每一个的评估和评估实现能力。 该方法还包括呈现每个正交评估的结果。
    • 10. 发明申请
    • Method for business process mapping, design, analysis and performance monitoring
    • 业务流程映射,设计,分析和性能监控的方法
    • US20060111950A1
    • 2006-05-25
    • US10994231
    • 2004-11-23
    • Kaan KatirciogluThomas Ervolina
    • Kaan KatirciogluThomas Ervolina
    • G06F9/44
    • G06Q10/06G06Q10/0633G06Q10/0639G06Q20/108
    • A method of creating a systems requirement document by using a numerical modeling tool, such as a spreadsheet, to prototype an operational process in terms of a numerical picture of the goals, metrics, performance targets and constraints used by managers of the operational process. A process design blueprint is defined for the operational process, including data sources and data sinks. A representative model of the process design blueprint is created. If the model is not detailed enough for implementation by IT professionals, model objects and data flows are added to the blueprint and the representative model is modified to be consistent with the blueprint. Surrogate calculations may be made for computational task objects or, alternatively, separate process design blueprints may be generated for such computational task objects. This cycle is repeated until the model is detailed enough for implementation.
    • 通过使用诸如电子表格之类的数值建模工具来创建系统需求文档的方法,用于根据操作过程的管理者使用的目标,度量,性能目标和约束的数字图像对操作过程进行原型化。 为操作过程定义了一个流程设计蓝图,包括数据源和数据汇。 创建了流程设计蓝图的代表性模型。 如果模型不够详细,可以由IT专业人员实施,模型对象和数据流将被添加到蓝图中,代表模型被修改为与蓝图一致。 可以对计算任务对象进行替代计算,或者可以为这样的计算任务对象生成单独的过程设计蓝图。 重复此循环,直到模型为了实现而足够详细。