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    • 5. 发明申请
    • SYSTEM AND METHOD FOR CORRELATING PAST ACTIVITIES, DETERMINING HIDDEN RELATIONSHIPS AND PREDICTING FUTURE ACTIVITIES
    • 用于相关活动的系统和方法,确定隐藏关系和预测未来活动
    • WO2011014471A1
    • 2011-02-03
    • PCT/US2010/043301
    • 2010-07-27
    • SENSIS CORPORATIONKUECUEKYAN, Horen
    • KUECUEKYAN, Horen
    • G06F7/00
    • G06N99/005
    • A system and method of data correlation and analysis of past activities and prediction of future activity that includes establishing a database comprising structured metadata on at least one computer and a distributed system of networked computers having a plurality of access levels, configuring a database front-end to parse incoming data, the database front-end defining a plurality of entities and events, each having one or more attributes, and correlation IDs, which are user defined attribute relationships that correlate events and entities, collecting data, parsing the incoming data in the database front-end into structured metadata, the distributed analysis engine correlating the incoming structured metadata with structured metadata in the database and determining micro-patterns in the structured metadata, generating a graphical representation of a composite network of the determined micro-patterns as super-objects, and predicting future activity from the one or more super-objects representing the determined micro-patterns.
    • 数据相关和分析过去活动和对未来活动的预测的系统和方法,其包括在至少一台计算机上建立包括结构化元数据的数据库和具有多个访问级别的联网计算机的分布式系统,配置数据库前端 解析输入数据,数据库前端定义多个具有一个或多个属性的实体和事件,以及相关性ID,这些用户定义的属性关系将事件和实体相关联,收集数据,解析输入数据中的输入数据 数据库前端成为结构化元数据,分布式分析引擎将输入的结构化元数据与数据库中的结构化元数据相关联,并确定结构化元数据中的微模式,生成所确定的微模式的复合网络的图形表示, 对象,并从一个或多个超对象预测未来活动 代表确定的微观模式。
    • 10. 发明申请
    • SELECTIVE GLASS BATCHING METHODS FOR IMPROVING MELTING EFFICIENCY AND REDUCING GROSS SEGREGATION OF GLASS BATCH COMPONENTS
    • 选择玻璃填充方法提高熔融效率并减少玻璃块组分的分割
    • WO2003074434A1
    • 2003-09-12
    • PCT/US2003/005962
    • 2003-02-27
    • CARTY, William, Michael
    • CARTY, William, Michael
    • C03B3/00
    • C03B1/02C03B1/00C03C1/026Y02P40/57
    • A method of controlling reaction paths of glass batch components added to a resident glass melt is provided, including the steps of providing a plurality of raw material batch components according to a batch recipe, selectively combining a portion of the batch components into a first combination material having a melting temperature in a range of 60 to 90 % of a resident melt temperature (K) and a viscosity ³ a melt viscosity/100, and selectively combining another portion of the batch components into a second combination material having a reaction temperature in a range of 60 to 100 % of the resident melt temperature, the second combination material being capable of forming an intermediate compound via a solid state reaction before reacting with the glass melt. The first and second combination materials and any remaining batch components are mixed and introduced into a glass melter.
    • 提供了一种控制添加到常规玻璃熔体中的玻璃批次组分的反应路径的方法,包括以下步骤:根据批量配方提供多个原料批次组分,选择性地将部分批料组分合并成第一组合材料 具有熔融温度在常规熔体温度(K)的60至90%范围内和粘度3熔体粘度/ 100的范围内,并且将另一部分批料组分选择性地组合成具有反应温度的第二组合材料 范围为常驻熔体温度的60〜100%,第二组合材料能够在与玻璃熔体反应之前通过固态反应形成中间体化合物。 将第一和第二组合材料和任何剩余的批次组分混合并引入玻璃熔化器中。