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    • 2. 发明授权
    • Apparatus for finishing optical surfaces, including a pad compensation device
    • 用于整理光学表面的设备,包括焊盘补偿装置
    • US06875090B2
    • 2005-04-05
    • US09952665
    • 2001-09-13
    • Michael GouletJonathan M. Dooley
    • Michael GouletJonathan M. Dooley
    • G02C7/02B24B13/00B24B13/005B24B13/01B24B13/02B24B49/14B24D13/14G02B1/10G02B3/00G02B3/06G02C13/00
    • B24B13/012B24B13/005B24B13/02B24B49/14B24D13/147
    • In a conformable lap and related method for finishing ophthalmic lens surfaces, a rigid base surface of the lap defines a nominal ophthalmic lens curvature corresponding to a predetermined range of curvatures. A work surface of the lap is defined by a thin, hard, polymeric material extending adjacent to the base surface for contacting a selected ophthalmic lens surface and conforming to the curvature of the selected surface. A selectively conformable substance consisting of a mixture of thermoplastic and metallic particles forms a layer extending between the rigid base surface and the work surface, and is selectively changeable between solid and non-solid forms. In its non-solid form the conformable substance permits movement of the work surface relative to the base surface to conform to the curvatures of any one of a plurality of ophthalmic lens curvatures within the predetermined range of curvatures, and in its solid form the substance fixes the work surface in a position conforming to the curvature of a selected lens surface and retains the conforming position during finishing of the lens surface.
    • 在用于完成眼科镜片表面的适形膝盖和相关方法中,膝盖的刚性基面限定了对应于预定曲率范围的标称眼镜透镜曲率。 膝部的工作表面由相邻于基部表面延伸的薄的,硬的聚合材料限定,用于接触所选择的眼镜片表面并符合所选择的表面的曲率。 由热塑性和金属颗粒的混合物组成的选择性贴合物质形成在刚性基底表面和工作表面之间延伸的层,并且可以在固体和非固体形式之间选择性地变化。 在其非固体形式中,适形物质允许工作表面相对于基底表面的移动以符合预定曲率范围内的多个眼镜片曲率中的任何一个的曲率,并且在其固体形式中物质固定 该工作表面处于与所选择的透镜表面的曲率相符的位置,并且在透镜表面的整理期间保持适形位置。
    • 3. 发明申请
    • Selective Reporting Of Upstream Transaction Trace Data
    • 上游交易跟踪数据的选择报告
    • US20110016207A1
    • 2011-01-20
    • US12504451
    • 2009-07-16
    • Michael GouletStuart Todd RaderAbhijit Sawant
    • Michael GouletStuart Todd RaderAbhijit Sawant
    • G06F15/173
    • G06Q10/06
    • Technology for monitoring transactions in a computing environment is disclosed. Execution of a transaction by a first application is monitored by a first software entity executing on a first computing device. Performance data that relates to execution of the transaction by a first application is generated. Execution of the transaction by a second application is monitored by a second software entity. The transaction is executed by the second application based on a request from the first application. A determination is made, based on the monitoring, that the first software entity should report the performance data to a third software entity that executes on a second computing device. Based on determining that the first software entity should report the performance data, data is propagated that indicates that the first software entity should report the performance data. The first software entity reports the performance data to the third software entity.
    • 公开了用于在计算环境中监视事务的技术。 由第一应用执行的交易由在第一计算设备上执行的第一软件实体来监视。 生成与第一应用程序执行事务有关的性能数据。 由第二应用程序执行交易由第二软件实体监视。 该交易由第二应用基于来自第一应用的请求来执行。 基于监视,确定第一软件实体应该将性能数据报告给在第二计算设备上执行的第三软件实体。 基于确定第一软件实体应该报告性能数据,传播数据,其指示第一软件实体应该报告性能数据。 第一个软件实体向第三个软件实体报告性能数据。
    • 4. 发明授权
    • Detecting, logging and tracking component dependencies in web service transactions
    • 检测,记录和跟踪Web服务事务中的组件依赖关系
    • US08327377B2
    • 2012-12-04
    • US12433593
    • 2009-04-30
    • Anand KrishnamurthyStewart ThainTodd RaderMichael Goulet
    • Anand KrishnamurthyStewart ThainTodd RaderMichael Goulet
    • G06F9/54G06F9/44
    • G06F11/3612G06F11/3495G06F11/3664G06F2201/865
    • Relationships between components in an application and the services they provide are identified, including redundant caller-callee sequences. Specific components of interest are instrumented to obtain data when they execute. Data structures are created which identify the components and their dependencies on one other. To avoid excessive overhead costs, redundant dependencies are identified. A dependency data structure can be provided for each unique dependency. When repeated instances of a dependency are detected, the associated dependency data structure can be augmented with correlation data of the repeated instances, such as transaction identifiers and sequence identifiers. Sequence identifiers identify an order in which a component is called. A flag can be used to force the creation of a new dependency data structure, and a calling component's name can be used instead of a sequence identifier. Agents report the dependency data structures to a manager to provide graph data in a user interface.
    • 识别应用程序中的组件与它们提供的服务之间的关系,包括冗余的调用方调用程序序列。 感兴趣的特定组件在执行时被用来获取数据。 创建数据结构,它们标识组件及其依赖关系。 为了避免过多的间接成本,确定了冗余依赖关系。 可以为每个唯一的依赖关系提供依赖关系数据结构。 当检测到依赖关系的重复实例时,可以利用重复实例的相关数据(诸如事务标识符和序列标识符)来增强相关联的依赖关系数据结构。 序列标识符标识组件被调用的顺序。 可以使用标志强制创建新的依赖关系数据结构,并且可以使用调用组件的名称而不是序列标识符。 代理将依赖数据结构报告给管理器,以在用户界面中提供图形数据。
    • 8. 发明授权
    • Selective reporting of upstream transaction trace data
    • 选择性报告上游事务跟踪数据
    • US08392556B2
    • 2013-03-05
    • US12504451
    • 2009-07-16
    • Michael GouletStuart Todd RaderAbhijit Sawant
    • Michael GouletStuart Todd RaderAbhijit Sawant
    • G06F15/173
    • G06Q10/06
    • Technology for monitoring transactions in a computing environment is disclosed. Execution of a transaction by a first application is monitored by a first software entity executing on a first computing device. Performance data that relates to execution of the transaction by a first application is generated. Execution of the transaction by a second application is monitored by a second software entity. The transaction is executed by the second application based on a request from the first application. A determination is made, based on the monitoring, that the first software entity should report the performance data to a third software entity that executes on a second computing device. Based on determining that the first software entity should report the performance data, data is propagated that indicates that the first software entity should report the performance data. The first software entity reports the performance data to the third software entity.
    • 公开了用于在计算环境中监视事务的技术。 由第一应用执行的交易由在第一计算设备上执行的第一软件实体来监视。 生成与第一应用程序执行事务有关的性能数据。 由第二应用程序执行交易由第二软件实体监视。 该交易由第二应用基于来自第一应用的请求来执行。 基于监视,确定第一软件实体应该将性能数据报告给在第二计算设备上执行的第三软件实体。 基于确定第一软件实体应该报告性能数据,传播数据,其指示第一软件实体应该报告性能数据。 第一个软件实体向第三个软件实体报告性能数据。
    • 9. 发明申请
    • DETECTING NON-REDUNDANT COMPONENT DEPENDENCIES IN WEB SERVICE INVOCATIONS
    • 检测网络服务协议中的非冗余组件依赖关系
    • US20100281488A1
    • 2010-11-04
    • US12433593
    • 2009-04-30
    • Anand KrishnamurthyStewart ThainTodd RaderMichael Goulet
    • Anand KrishnamurthyStewart ThainTodd RaderMichael Goulet
    • G06F9/46G06F3/048
    • G06F11/3612G06F11/3495G06F11/3664G06F2201/865
    • Relationships between components in an application and the services they provide are identified, including redundant caller-callee sequences. Specific components of interest are instrumented to obtain data when they execute. Data structures are created which identify the components and their dependencies on one other. To avoid excessive overhead costs, redundant dependencies are identified. A dependency data structure can be provided for each unique dependency. When repeated instances of a dependency are detected, the associated dependency data structure can be augmented with correlation data of the repeated instances, such as transaction identifiers and sequence identifiers. Sequence identifiers identify an order in which a component is called. A flag can be used to force the creation of a new dependency data structure, and a calling component's name can be used instead of a sequence identifier. Agents report the dependency data structures to a manager to provide graph data in a user interface.
    • 识别应用程序中的组件与它们提供的服务之间的关系,包括冗余的调用方调用程序序列。 感兴趣的特定组件在执行时被用来获取数据。 创建数据结构,它们标识组件及其依赖关系。 为了避免过多的间接成本,确定了冗余依赖关系。 可以为每个唯一的依赖关系提供依赖关系数据结构。 当检测到依赖关系的重复实例时,可以利用重复实例的相关数据(诸如事务标识符和序列标识符)来增强相关联的依赖关系数据结构。 序列标识符标识组件被调用的顺序。 可以使用标志强制创建新的依赖关系数据结构,并且可以使用调用组件的名称而不是序列标识符。 代理将依赖数据结构报告给管理器,以在用户界面中提供图形数据。