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    • 3. 发明授权
    • Selecting member sets for generating asymmetric queries
    • 选择用于生成非对称查询的成员集
    • US08103687B2
    • 2012-01-24
    • US12132075
    • 2008-06-03
    • Patrick John BaumgartnerLuming WangJason MalcolmXiaohong YangPeter Eberhardy
    • Patrick John BaumgartnerLuming WangJason MalcolmXiaohong YangPeter Eberhardy
    • G06F7/00G06F17/30
    • G06F17/30
    • Tools and techniques are described for selecting member sets for generating asymmetric queries. User interfaces provided by this description may include representations of different dimensions that include respective members. These dimensions define hierarchical data structures against which queries are run to generate requested reports. The user interfaces may include representations of members associated with different dimensions, with members from different dimensions arranged in selected orders. The user interfaces may also provide selection tools that activate symmetrical or asymmetrical rendering modes for constructing the query. In the symmetrical rendering mode, the query cross-joins all of the members selected from one dimension with all of the members selected from the other dimension. In the asymmetrical rendering mode, the query cross-joins the first-ordered member from one dimension with the first-ordered member from another dimension, cross-joins the second member from one dimension with the second member from another dimension, and so on.
    • 描述了用于选择用于生成非对称查询的成员集的工具和技术。 由该描述提供的用户界面可以包括包括相应成员的不同维度的表示。 这些维度定义了运行查询以生成请求的报告的分层数据结构。 用户界面可以包括与不同尺寸相关联的构件的表示,其中来自不同维度的成员以选定顺序排列。 用户界面还可以提供激活用于构建查询的对称或非对称呈现模式的选择工具。 在对称渲染模式中,查询交叉连接从一个维度中选择的所有成员,其中所有成员从另一个维度中选择。 在非对称渲染模式下,查询将来自一个维度的一阶成员与来自另一个维度的第一个成员交叉连接,第二个成员从一个维度与另一个维度的第二个成员进行交叉连接,依此类推。
    • 5. 发明申请
    • OBJECT ORIENTED DATA AND METADATA BASED SEARCH
    • 面向对象的数据和基于元数据的搜索
    • US20110231385A1
    • 2011-09-22
    • US12724764
    • 2010-03-16
    • Luming WangXiaohong YangHailei ZhangSonal Jain
    • Luming WangXiaohong YangHailei ZhangSonal Jain
    • G06F17/30
    • G06F17/30867G06F17/30864
    • An object oriented search mechanism extracts structural metadata and data based on type of document contents and data sources connected to the documents. Relationships between textual and non-textual elements within documents as well as metadata associated with the elements and data sources are utilized to generate a unified object model with the addition of semantic information derived from metadata and taxonomy, which are used to enhance search indexing, ranking of search results, and dynamic adjustment of result rendering user interface with fine tuned relevancy. Additional data from data sources connected to the documents may also be used to unlock hidden data such as data that has been filtered out in an original document.
    • 面向对象的搜索机制基于连接到文档的文档内容和数据源的类型提取结构元数据和数据。 文档中的文本和非文本元素之间的关系以及与元素和数据源相关联的元数据被用于生成统一的对象模型,其中添加了从元数据和分类法导出的语义信息,用于增强搜索索引,排名 的搜索结果,以及动态调整结果呈现用户界面与微调相关性。 连接到文档的数据源的附加数据也可用于解锁隐藏的数据,例如在原始文档中已被过滤的数据。
    • 6. 发明申请
    • Apparatus for wire or wireless ECG machine with only two leads
    • 用于线或无线心电图机的设备只有两根引线
    • US20100261991A1
    • 2010-10-14
    • US12386018
    • 2009-04-11
    • Guangren ChenDrew Maisen DiazXiaohong Yang
    • Guangren ChenDrew Maisen DiazXiaohong Yang
    • A61B5/0408
    • A61B5/0488A61B5/0006A61B5/04085A61B5/0428A61B5/04286
    • A disposable “Enhance Dynamic Flow Data” electrode, including: a flexible strips EDFD electrode and leads cable and voltage socket. Electrode with affixed program micro control chip, the chip having a positioned inside, the strips electrode have six electrode on one electrode with (V1,V2,V3,V4,V5,V6) attached of a receptor pad end connection with the skin for receiving electrical impulses and signal which is adapted for connection with an electro-cardiologram measuring on body chest apparatus. The specific enhance the dynamic flow signal configuration propriety for electrocardiography recording. An embodiment of the invention will be described in greater detail below with reference to the accompanying drawings which show an EDFD electrode and wire or wireless leads cable connect with device embodying the invention. Enhance bio-electrical signal's purity, thus enhances the test for more accuracy analysis finally.
    • 一次性“增强动态流量数据”电极,包括:柔性条EDFD电极和引线电缆和电压插座。 具有固定程序微控制芯片的电极,芯片具有定位在内部,带状电极在一个电极上具有六个电极,其中(V1,V2,V3,V4,V5,V6)附接有与皮肤接收的接收器垫端连接 电脉冲和信号,其适于与在胸部胸部装置上测量的电心图连接。 具体增强动态流量信号配置适用于心电图记录。 下面将参考附图更详细地描述本发明的实施例,附图示出了EDFD电极和有线或无线引线电缆与实施本发明的装置连接。 提高生物电信号的纯度,最终提高测试精度。
    • 7. 发明申请
    • Type-driven rules for financial intellegence
    • 类型驱动的财务知识规则
    • US20080208720A1
    • 2008-08-28
    • US11710702
    • 2007-02-26
    • Randy DongLewis C. LevinRou-Peng HuangPeiyuan YanXiaohong YangPeter BullScott Sebelsky
    • Randy DongLewis C. LevinRou-Peng HuangPeiyuan YanXiaohong YangPeter BullScott Sebelsky
    • G06Q40/00
    • G06Q40/06G06Q40/00
    • Financial intelligence architecture that employs financial types that are combined with rules to build financial behavior into the product. Types have behaviors such that types can be assigned that lead to the physical creation of underlying code which embodies the behaviors. Extensibility is provided at least by type parameterization and new type creation. Because types are a design time experience, types are two-way and can be modified, even after instantiation. This allows for mixing and matching of types and underlying behavior giving the system more flexibility at design time while providing a huge simplification of all the details that actually go into such financial applications. The type library is a set of rules that produce metadata, which metadata is later processed by a separate engine to produce the physical schema. The type library defines the basic interactions, data types, and behaviors for predefined dimensions in the system.
    • 金融情报架构,采用结合规则的金融类型,将财务行为纳入产品。 类型具有这样的行为,即可以分配类型,从而导致体现行为的底层代码的物理创建。 至少通过类型参数化和新类型创建来提供可扩展性。 因为类型是设计时间体验,所以类型是双向的,即使在实例化之后也可以进行修改。 这允许混合和匹配类型和底层行为,使系统在设计时更灵活,同时提供了实际进入这种财务应用程序的所有细节的巨大简化。 类型库是一组生成元数据的规则,后来由单独的引擎处理元数据以生成物理模式。 类型库定义系统中预定义维度的基本交互,数据类型和行为。
    • 9. 发明授权
    • Defining sub-cube scope based upon a query
    • 基于查询定义子立方体范围
    • US08990147B2
    • 2015-03-24
    • US13306156
    • 2011-11-29
    • Xiaohong YangLuming Wang
    • Xiaohong YangLuming Wang
    • G06F17/30G06F7/00
    • G06F17/30592
    • Technologies are described herein for defining the scope of a sub-cube based upon a database query. A request is received to perform a query of a multi-dimensional database, such as a cube, stored at a server computer. In response to the request, the scope for a sub-portion, called a sub-cube, of the multi-dimensional database is determined based upon the query. The scope of the sub-cube may be determined by identifying the minimum sub-portion of the cube necessary to perform the query. Once the scope has been determined, the sub-cube is generated at the server computer and transmitted to a client computer. The client computer stores the sub-cube locally and performs the requested database query on the sub-cube stored at the client computer. A user interface may be provided through which a user can modify the scope of the sub-cube determined based upon the query.
    • 本文描述了基于数据库查询来定义子立方体的范围的技术。 接收到请求,以执行存储在服务器计算机上的多维数据库(例如立方体)的查询。 响应于该请求,基于查询确定多维数据库的子部分(称为子立方体)的范围。 可以通过识别执行查询所需的立方体的最小子部分来确定子立方体的范围。 一旦确定了作用域,则在服务器计算机上生成子立方体,并将其发送到客户端计算机。 客户端计算机在本地存储子立方体,并对存储在客户端计算机上的子立方体执行请求的数据库查询。 可以提供用户界面,用户可以通过该界面来修改基于查询确定的子立方体的范围。
    • 10. 发明授权
    • Defining sub-cube scope based upon a query
    • 基于查询定义子立方体范围
    • US08082239B2
    • 2011-12-20
    • US12025696
    • 2008-02-04
    • Xiaohong YangLuming Wang
    • Xiaohong YangLuming Wang
    • G06F17/30
    • G06F17/30592
    • Technologies are described herein for defining the scope of a sub-cube based upon a database query. A request is received to perform a query of a multi-dimensional database, such as a cube, stored at a server computer. In response to the request, the scope for a sub-portion, called a sub-cube, of the multi-dimensional database is determined based upon the query. The scope of the sub-cube may be determined by identifying the minimum sub-portion of the cube necessary to perform the query. Once the scope has been determined, the sub-cube is generated at the server computer and transmitted to a client computer. The client computer stores the sub-cube locally and performs the requested database query on the sub-cube stored at the client computer. A user interface may be provided through which a user can modify the scope of the sub-cube determined based upon the query.
    • 本文描述了基于数据库查询来定义子立方体的范围的技术。 接收到请求,以执行存储在服务器计算机上的多维数据库(例如立方体)的查询。 响应于该请求,基于查询确定多维数据库的子部分(称为子立方体)的范围。 可以通过识别执行查询所需的立方体的最小子部分来确定子立方体的范围。 一旦确定了作用域,则在服务器计算机上生成子立方体,并将其发送到客户端计算机。 客户端计算机在本地存储子立方体,并对存储在客户端计算机上的子立方体执行请求的数据库查询。 可以提供用户界面,用户可以通过该界面来修改基于查询确定的子立方体的范围。