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    • 13. 发明申请
    • Part Number Set Substitution
    • 零件号集合替换
    • US20100042516A1
    • 2010-02-18
    • US12191170
    • 2008-08-13
    • Ivory Wellman KnipferFraser Allan SymeMatthew H. Zemke
    • Ivory Wellman KnipferFraser Allan SymeMatthew H. Zemke
    • G06Q10/00
    • G06Q10/00G06Q10/0875
    • An improved manufacturing system for controlling the interchangeability of sets of parts during product installation. In response to receiving a request for an order, a parts list is created for the order. The illustrative embodiments determine whether each part in the parts list is present in current inventory stock. If any of a first group of parts in the parts list is not present in current inventory stock, the illustrative embodiments allow for determining that a second group of parts in the current inventory stock is a valid substitution group for replacing the first group of parts, wherein the number of parts in the first group of parts is not equal to the number of parts in the second group of parts. The illustrative embodiments then update the order by replacing the first group of parts in the parts list with the identified second group of parts.
    • 改进的制造系统,用于在产品安装期间控制零件组的互换性。 响应于接收订单的请求,为订单创建零件列表。 说明性实施例确定部件列表中的每个部件是否存在于当前库存库存中。 如果部件列表中的第一组零件中的任何一个不存在于当前库存库存中,则说明性实施例允许确定当前库存库存中的第二组零件是用于替换第一组零件的有效替换组, 其中所述第一组零件中的零件数量不等于所述第二组零件中的零件数量。 说明性实施例然后通过用识别的第二组部件替换部件列表中的第一组零件来更新订单。
    • 14. 发明授权
    • Method for manufacturing with engineering change override
    • 使用工程变更覆盖制造方法
    • US07437205B2
    • 2008-10-14
    • US11466190
    • 2006-08-22
    • Ivory Wellman KnipferFraser Allan SymeMatthew H. Zemke
    • Ivory Wellman KnipferFraser Allan SymeMatthew H. Zemke
    • G06F19/00
    • G06Q10/087G06Q10/0631G06Q10/06315
    • The illustrative embodiments provide a computer implemented method, apparatus, and computer usable program code for processing orders. A request for delivery by a requested delivery date is received for an order having an original delivery date. The ordered product is broken down into one or more materials required for manufacturing the ordered product. For at least one material required for manufacturing the ordered product, a date when an engineering change becomes effective for the material is specified. An alternate bill of materials is created based on the specified date when the engineering change becomes effective for the material. An alternate manufacturing plan based on the alternate bill of materials is created. Manufacturing is initiated based on the alternate manufacturing plan. If manufacturing can be completed in time for delivery by the requested delivery date, the original delivery date of the order is replaced with the requested delivery date.
    • 说明性实施例提供了用于处理订单的计算机实现的方法,装置和计算机可用程序代码。 收到要求的交货日期的交货请求,具有原始交货日期的订单。 有序产品被分解成制造订购产品所需的一种或多种材料。 对于制造订购产品所需的至少一种材料,指定工程变更对材料生效的日期。 根据工程变更对材料生效的指定日期,创建备用材料清单。 创建了基于备用物料清单的替代制造计划。 基于替代制造计划启动制造。 如果生产可以按要求的交货日期及时完成交货,则订单的原始交货日期将替换为所要求的交货日期。
    • 16. 发明授权
    • Controlled self-adjusting process for reducing selected dimensions of electronic products
    • 用于减少电子产品选定尺寸的可控自调整过程
    • US07269474B1
    • 2007-09-11
    • US11532365
    • 2006-09-15
    • Ivory Wellman KnipferMatthew H. Zemke
    • Ivory Wellman KnipferMatthew H. Zemke
    • G06F7/00
    • G06Q10/08G06Q10/04G06Q10/0875G06Q50/30
    • A method provides a self-learning mechanism for developing a database of information to be used in guiding selection of parts for temporary removal from a product, in order to reduce product dimensions for shipping and delivery or the like. In one embodiment a product is of a specified type, such as a specified computer product, and comprises a configuration of parts. A procedure is first carried out to select parts for removal from the product, in order to reduce one or more dimensions by pre-specified corresponding amounts. The selected parts are removed, and also listed in a Reduction History Record constructed to indicate the parts removed from successive orders of the specified product type. A work reduction unit is created that comprises the selected parts, and a routing is generated for the work unit, for use in guiding delivery and re-installation of the selected parts back into the product.
    • 一种方法提供了一种自学习机制,用于开发用于指导从产品中临时移除的部件的选择中使用的信息数据库,以便减少用于运输和递送等的产品尺寸。 在一个实施例中,产品是指定类型的,例如指定的计算机产品,并且包括部件的配置。 首先进行一个程序来选择要从产品中取出的零件,以便通过预先规定的相应量减少一个或多个尺寸。 所选择的部分被删除,并且也被列在一个减少历史记录中,用于指示从指定产品类型的连续顺序中删除的零件。 创建包括所选择的部件的工作减少单元,并且为工作单元生成路线,用于将所选择的部件的交付和重新安装回产品。
    • 19. 发明授权
    • Activity based real-time production instruction adaptation
    • 基于活动的实时生产指导适应
    • US07920935B2
    • 2011-04-05
    • US12194274
    • 2008-08-19
    • Ivory Wellman KnipferEng Hin KohSer Huay TanMatthew H. Zemke
    • Ivory Wellman KnipferEng Hin KohSer Huay TanMatthew H. Zemke
    • G06F19/00
    • G09B25/02G05B19/042G09B19/003
    • A manufacturing process for automatically delivering an appropriate level of instructions to a manufacturing operator on demand based on the manufacturing operator's level of activity and performance, the particular characteristics of the product being manufactured, and the particular production environment. Responsive to receiving an order for a product, the manufacturing process identifies an authorization level assigned to an operator performing a particular manufacturing activity on a part in the product and assigns a default level of instructions to the operator based on the authorization level. The process collects and models characteristics about the manufacturing environment, performance history of the operator, and knowledge decay of the operator to determine an appropriate level of instructions to provide to the operator performing a particular manufacturing activity. The manufacturing instructions associated with the appropriate level of instructions are then provided to the operator.
    • 基于制造操作者的活动和性能水平,正在制造的产品的特定特性以及特定的生产环境,根据需要自动地向制造操作者提供适当水平的指令的制造过程。 响应于接收产品的订单,制造过程识别分配给在产品的部件上执行特定制造活动的操作者的授权级别,并且基于授权级别向操作者分配默认的指令级别。 该过程收集和建模关于制造环境的特征,操作员的性能历史和操作者的知识衰减,以确定提供给操作者执行特定制造活动的适当指令级别。 然后将与适当指令级别相关联的制造说明提供给操作者。
    • 20. 发明申请
    • Activity Based Real-Time Production Instruction Adaptation
    • 基于活动的实时生产指令适应
    • US20100332008A1
    • 2010-12-30
    • US12194274
    • 2008-08-19
    • Ivory Wellman KnipferEng Hin KohSer Huay TanMatthew H. Zemke
    • Ivory Wellman KnipferEng Hin KohSer Huay TanMatthew H. Zemke
    • G06F19/00
    • G09B25/02G05B19/042G09B19/003
    • A manufacturing process for automatically delivering an appropriate level of instructions to a manufacturing operator on demand based on the manufacturing operator's level of activity and performance, the particular characteristics of the product being manufactured, and the particular production environment. Responsive to receiving an order for a product, the manufacturing process identifies an authorization level assigned to an operator performing a particular manufacturing activity on a part in the product and assigns a default level of instructions to the operator based on the authorization level. The process collects and models characteristics about the manufacturing environment, performance history of the operator, and knowledge decay of the operator to determine an appropriate level of instructions to provide to the operator performing a particular manufacturing activity. The manufacturing instructions associated with the appropriate level of instructions are then provided to the operator.
    • 基于制造操作者的活动和性能水平,正在制造的产品的特定特性以及特定的生产环境,根据需要自动地向制造操作者提供适当水平的指令的制造过程。 响应于接收产品的订单,制造过程识别分配给在产品的部件上执行特定制造活动的操作者的授权级别,并且基于授权级别向操作者分配默认的指令级别。 该过程收集和建模关于制造环境的特征,操作员的性能历史和操作者的知识衰减,以确定提供给操作者执行特定制造活动的适当指令级别。 然后将与适当指令级别相关联的制造说明提供给操作者。