SHIPPING INSTRUCTION DETERMINATION SYSTEM
    1.
    发明申请
    SHIPPING INSTRUCTION DETERMINATION SYSTEM 审中-公开
    运输指导确定系统

    公开(公告)号:US20120030132A1

    公开(公告)日:2012-02-02

    申请号:US13019034

    申请日:2011-02-01

    IPC分类号: G06Q10/00

    CPC分类号: G06Q10/08 G06Q10/083

    摘要: A shipping instruction determination system provides a storage device which stores a shipping request in a supply destination, a supply available schedule of a supply source, information of a packaging form indicating a combination of products and its number of units to be able to be packed in packaging boxes to be used for a shipment and a physical distribution cost for every packaging form, and a shipping instruction calculation unit which calculates a combination, a physical distribution cost of which becomes minimum, of a shipping date, the number of shipping units and a packaging form from among the shipping available combinations of the shipping date, the number of shipments and the packaging form, from the shipping request, the supply available schedule, the information of packaging form and the physical distribution cost for every packaging form to determine a shipping instruction.

    摘要翻译: 运输指示确定系统提供一种存储装置,其将供应目的地存储运送请求,供应源的供应可用时间表,指示产品的组合的包装形式的信息及其能够包装的单元的数量 用于装运的包装盒和每个包装形式的物理分配成本;以及运输指示计算单元,其计算运输日期,运输单元数量和运输单元数量的组合,其物理成本成为最小的组合 包装形式从运输日期,运输数量和包装形式的运输可用组合中,从运输要求,供应可用时间表,包装形式的信息和每个包装形式的物理分配成本确定运输 指令。

    Production planning method and production planning system
    2.
    发明授权
    Production planning method and production planning system 失效
    生产计划方法和生产计划制度

    公开(公告)号:US07693593B2

    公开(公告)日:2010-04-06

    申请号:US11732953

    申请日:2007-04-04

    IPC分类号: G06F19/00

    CPC分类号: G06Q10/06 G06Q10/04

    摘要: Embodiments of the present invention provide a production planning method and system. Where a manufacturing apparatus is shared by a plurality of products in a production line, if a manufacturing (production) availability number is changed, a cause parameter is automatically investigated so that a production plan with high precision can be prepared in a short time. With respect to a production plan as the previous/current comparison objects, a production process used in the production plan in which a change occurs, is extracted. From the production process, a parameter item to be used in the production capacity evaluation is extracted for all products, a difference comparison is made between the value of the previous parameter and the value of the current parameter, so that the parameter item as the cause is specified. The combination of the cause parameter items is calculated, and a cause parameter list is prepared. Next, from the specified parameter list, the parameter item is sequentially changed, and the manufacturing (production) availability number is recalculated. An influence index given to the manufacturing (production) unavailability number by the cause parameter, is calculated.

    摘要翻译: 本发明的实施例提供一种生产计划方法和系统。 在制造装置由生产线上的多个产品共享的情况下,如果改变制造(生产)可用性编号,则自动调查原因参数,以便能够在短时间内准备高精度的生产计划。 对于作为以前/当前比较对象的生产计划,提取在生产计划中用于发生变化的生产过程。 从生产过程中,针对所有产品提取要在生产能力评估中使用的参数项,在先前参数的值和当前参数的值之间进行差异比较,从而将参数项作为原因 被指定。 计算原因参数项的组合,并准备原因参数列表。 接下来,从指定的参数列表中,依次更改参数项,重新计算制造(生产)可用性编号。 计算由原因参数给予制造(生产)不可用数的影响指数。

    Production planning system
    3.
    发明授权

    公开(公告)号:US06226561B1

    公开(公告)日:2001-05-01

    申请号:US09100327

    申请日:1998-06-19

    IPC分类号: G06F1900

    CPC分类号: G06Q10/06

    摘要: A production planning system capable of adjusting a production plan comprises a data storage unit for storing production planning information, parts list information, parts stock information and parts warehousing schedule information; a MRP (material resource plan) explosion unit for calculating the required amount of material resources based on the production plan information and the parts list information stored in the data storage unit; and a superfluous parts adjusting unit for making adjustment to eliminate superfluous parts. The superfluous parts adjusting unit includes a superfluous parts calculation section for collating the required amount of material resources calculated by the MRP explosion unit with the parts stock information and the parts warehousing schedule information thereby to calculate the superfluous parts, and a superfluous parts elimination section for eliminating superfluous parts by changing the production plan based on the superfluous parts information calculated by the superfluous parts calculation section.

    Process for removal of viruses from solutions of physiologically active
substances
    4.
    发明授权
    Process for removal of viruses from solutions of physiologically active substances 失效
    从生理活性物质的溶液中除去病毒的方法

    公开(公告)号:US5173415A

    公开(公告)日:1992-12-22

    申请号:US640569

    申请日:1991-01-14

    摘要: A membrane filter of 0.025 to 0.05 .mu. in pore size is treated by passing the solution of a water-soluble high molecular substance such as albumin, dextran, polyvinylpyrrolidone, polysorbate 80, gelatin or the like through the membrane filter. Employing the filter thus treated, the solution of a physiologically active substance of human origin such as human growth hormone, kallikrein, trypsin inhibitor, epidermal growth factor, leucocyte interferon etc. is filtered at high recovery rate of the active substance avoiding the adsorption of the active substance onto the filter. By the filtration, harmful viruses such as Creutzfeldt-Jacob disease pathogen which may exist in the physiologically active substance can be removed.

    摘要翻译: 通过膜过滤器使诸如白蛋白,葡聚糖,聚乙烯吡咯烷酮,聚山梨醇酯80,明胶等的水溶性高分子物质的溶液进行处理,孔径为0.025〜0.05μm的膜过滤器。 使用如此处理的过滤器,以高回收率的活性物质过滤人类生理活性物质如人生长激素,激肽释放酶,胰蛋白酶抑制剂,表皮生长因子,白细胞干扰素等的溶液,避免吸附 活性物质过滤器。 通过过滤,可以除去可能存在于生理活性物质中的有害病毒如Creutzfeldt-Jacob病病原体。

    METHOD AND SYSTEM OF MANAGING REPLACEMENT TIMING INTERVAL OF MAINTENANCE PART
    5.
    发明申请
    METHOD AND SYSTEM OF MANAGING REPLACEMENT TIMING INTERVAL OF MAINTENANCE PART 审中-公开
    管理更换时间的方法和系统维护时间间隔部分

    公开(公告)号:US20150220875A1

    公开(公告)日:2015-08-06

    申请号:US14406268

    申请日:2012-06-13

    IPC分类号: G06Q10/08 G06Q10/06

    摘要: In a maintenance-part replacement timing interval management system 100, a machine working time information collection unit 107, a maintenance-part supply history information collection unit 109, a machine-basis demand forecast unit 102, an area-basis demand forecast unit 103, a demand-supply gap calculation unit 104, a replacement timing interval update unit 105, etc. are provided, so that a demand forecast simulation is performed by collecting the working time of each of a plurality of machines worked in target areas where machine working conditions are similar to each other, by collecting an accumulated total number of the actual maintenance-part supply of a maintenance part for the target area, by calculating the past part replacement timing of each of the machines in the target area from the maintenance-part replacement timing interval for which a tentative value is previously determined and from the working time, and by counting an accumulated total number of past maintenance-part replacement demand of all the machines in time series, and a maintenance-part demand-supply gap value which is the difference between the time-series accumulated total number of maintenance-part replacement demand and the accumulated total number of maintenance-part supply is calculated, an optimum estimation value of the maintenance-part replacement timing interval which minimizes the maintenance-part demand-supply gap value is calculated while changing the tentative value of the maintenance-part replacement timing interval, and a future demand for the maintenance part is forecasted by using the optimum estimation value of the maintenance-part replacement timing interval.

    摘要翻译: 在维护部件更换定时间隔管理系统100中,机器工作时间信息收集单元107,维护部件供给历史信息收集单元109,基于机器的需求预测单元102,基于区域的需求预测单元103, 提供需求供给间隙计算单元104,更换定时间隔更新单元105等,从而通过收集在机器工作条件的目标区域中工作的多个机器中的每一个的工作时间来执行需求预测模拟 通过从维护部件更换计算目标区域中的每个机器的过去部件更换定时,通过收集针对目标区域的维护部件的实际维护部件供应的累计总数, 预先确定暂定值的时间间隔和从工作时间开始的时间间隔,以及通过计算累积的过去维护费用总数 所有机器的时间序列的更换需求和作为维护部件更换需求的时间序列累积总数与维护部件供给的累计总数之间的差的维护部件需求供给间隙值是 计算出,在改变维护部件更换定时间隔的暂定值的同时计算使维护部件需求供给间隙值最小化的维护部件更换定时间隔的最佳估计值,并且维护部件的未来需求为 通过使用维护部位更换定时间隔的最佳估计值进行预测。

    PREDICTION SYSTEM AND PROGRAM FOR PARTS SHIPMENT QUANTITY
    6.
    发明申请
    PREDICTION SYSTEM AND PROGRAM FOR PARTS SHIPMENT QUANTITY 审中-公开
    部分运输量的预测系统和程序

    公开(公告)号:US20130332233A1

    公开(公告)日:2013-12-12

    申请号:US13981094

    申请日:2011-02-23

    IPC分类号: G06Q30/02

    CPC分类号: G06Q30/0202 G06Q10/08

    摘要: There is provided a system or others capable of predicting a parts shipment quantity varying in accordance with an assumed parts-purchase period (such as a charge-free warranty period of a product) (having a period length with taking a product shipping date as a starting point during which a customer is assumed to purchase parts) so that prediction accuracy can be increased more than a conventional one. In the prediction system (1) for the parts shipment quantity, a server (10) has a prediction unit (100) to which product data (D1), parts shipment data (D2), and a prediction condition (D3) containing information of the assumed parts-purchase period are inputted and which performs a process of predicting a future shipment quantity for each parts and of outputting prediction result data (D0). The prediction unit (100) performs a process of predicting the future shipment quantity for each parts in accordance with the assumed parts-purchase period.

    摘要翻译: 提供了一种系统或其他能够预测根据假定的零件购买期间(例如,产品的免费保修期)变化的零件出货量(具有将产品发货日期视为 假设客户购买零件的起点),以便可以比传统的预测精度提高预测精度。 在用于零件装运量的预测系统(1)中,服务器(10)具有产品数据(D1),零件装运数据(D2)和预测条件(D3)的预测单元(100) 输入假定的零件购买期间,并执行预测每个零件的未来出货量并输出预测结果数据(D0)的处理。 预测单元(100)根据假定的零件购买期间进行各零件的未来出货量的预测处理。

    COMPONENT ORDER QUANTITY DETERMINATION DEVICE AND COMPONENT ORDER QUANTITY DETERMINATION PROGRAM
    7.
    发明申请
    COMPONENT ORDER QUANTITY DETERMINATION DEVICE AND COMPONENT ORDER QUANTITY DETERMINATION PROGRAM 审中-公开
    组件订单数量确定设备和组件订单数量确定程序

    公开(公告)号:US20120173304A1

    公开(公告)日:2012-07-05

    申请号:US13378408

    申请日:2010-06-14

    IPC分类号: G06Q10/04

    CPC分类号: G06Q10/087 G06Q30/0202

    摘要: The part order quantity determination device has an input unit receiving an input such as an allowable out-of-stock rate of each product, a storage unit storing the allowable out-of-stock rate of each product, constituent parts of each product, the number of parts, a demand quantity distribution product by product, and an order quantity of each part, a part-by-part order information calculation unit virtually calculating a demand quantity in each calculation period from the demand quantity distribution of each product, calculating a necessary quantity of constituent parts by multiplying the calculated demand quantity with the number of constituent parts, calculating an order quantity of each part, calculating an out-of-stock rate of each product, calculating an out-of-stock rate of each part at which the out-of-stock rate of each product does not exceed the allowable out-of-stock rate, and determining the order quantity, and a display unit displaying the order quantity of each part.

    摘要翻译: 订单数量确定装置具有输入单元,其接收每个商品的可允许缺货率的输入,存储每个商品的可允许无库存率的存储单元,每个商品的组成部分, 部件数量,按产品的需求数量分配产品和每个部件的订单数量,逐个订单信息计算单元,从每个产品的需求量分布虚拟地计算每个计算周期中的需求量,计算一个 通过将计算出的需求量乘以组成部分的数量,计算各部分的订单数量,计算每个商品的库存率,计算每个部件的库存率,计算出零件的不合格数量, 每个产品的缺货率不超过允许的缺货率,并且确定订单数量,以及显示每个部件的订单数量的显示单元。

    COMPONENT SAFETY INVENTORY AMOUNT CALCULATING METHOD, PROGRAM FOR EXECUTING SAME, AND DEVICE FOR EXECUTING SAME
    8.
    发明申请
    COMPONENT SAFETY INVENTORY AMOUNT CALCULATING METHOD, PROGRAM FOR EXECUTING SAME, AND DEVICE FOR EXECUTING SAME 审中-公开
    组件安全库存计算方法,执行程序和执行相同的装置

    公开(公告)号:US20120089489A1

    公开(公告)日:2012-04-12

    申请号:US13141355

    申请日:2008-12-22

    IPC分类号: G06Q10/08

    摘要: A device (100) for calculating the amount of safety inventory of a common component commonly used in products comprises a required-amount deviation calculating section (111) for determining the required-amount standard deviation of the common component using the demand standard deviation of each product, an integrated required-amount deviation calculating section (112) for determining the required-amount standard deviation of the common component of all the products as an integrated required-amount standard deviation using the required-amount standard deviation of the common component of each product, and a safety inventory amount calculating section (116) for determining the safety inventory amount of the common component using the integrated required-amount standard deviation. The integrated required-amount deviation calculating section (112) has a correlation coefficient calculating block (113) for determining a correlation coefficient representing the correlation among the required amounts of the common component of the products from the past records of the required amount of the common component of each product and a primary integrated required-amount standard deviation block (114) for determining an integrated required-amount standard deviation using the correlation coefficient and the required-amount standard deviation of the common component of each product.

    摘要翻译: 用于计算产品中通常使用的共同成分的安全库存量的装置(100)包括:要求量偏差计算部(111),用于使用每个的需求标准偏差来确定公共部件的所需量标准偏差 产品,综合需求量偏差计算部分(112),用于使用每个公共部件的公共部件的所需量标准偏差来确定所有产品的共同部件的所需量标准偏差作为积分的所需量标准偏差 产品和安全库存量计算部分(116),用于使用综合的所需量标准偏差来确定公共部件的安全库存量。 积分要求量偏差计算部(112)具有相关系数计算部(113),用于根据所述共同要求量的过去记录来确定表示所述产品的共同部件的所需量之间的相关性的相关系数 并且使用相关系数和每个乘积的公共分量的所需量标准偏差来确定综合所需量标准偏差的主要积分需求量标准偏差块(114)。

    TRANSPORTATION SCHEDULE PLANNING SUPPORT SYSTEM AND TRANSPORTATION SCHEDULE PLANNING SUPPORT METHOD
    9.
    发明申请
    TRANSPORTATION SCHEDULE PLANNING SUPPORT SYSTEM AND TRANSPORTATION SCHEDULE PLANNING SUPPORT METHOD 审中-公开
    运输时间表计划支持系统和运输时间表计划支持方法

    公开(公告)号:US20110071955A1

    公开(公告)日:2011-03-24

    申请号:US12726620

    申请日:2010-03-18

    IPC分类号: G06Q30/00

    摘要: A transportation schedule planning support system receives an order of one or more types of products which requires a use-by date control, and transports the products from one or more stock-carrying bases to one or more delivery destinations. In the system, a user previously registers a transportation route candidate from a stock-carrying base to each delivery destination adoptable as a solution, as a base group. A necessary use-by date for a product to be delivered next is determined based on an actual delivery to each delivery destination. The number of vehicles allocatable to a transportation at each base according to a vehicle type, and a vehicle type not used in each base group are added to a restriction condition. A mixed integer programming is applied using an expected obtainable profit obtained by delivering each product as an objective function.

    摘要翻译: 运输进度计划支持系统接收一种或多种类型的产品的订单,这些产品需要使用日期控制,并将产品从一个或多个库存基地运送到一个或多个运送目的地。 在该系统中,用户预先将从携带基地的运输路线候选者登记到可作为解决方案采用的每个递送目的地作为基组。 根据每个发货目的地的实际交货确定下一个交付产品的必要使用日期。 根据车辆类型可分配给每个基地的运输的车辆的数量和在每个基本组中不使用的车辆类型被添加到限制条件。 使用通过递送每个产品作为目标函数获得的预期可获得的利润来应用混合整数规划。

    TRACEABILITY SYSTEM, TRACEABILITY METHOD AND TRACEABILITY PROGRAM
    10.
    发明申请
    TRACEABILITY SYSTEM, TRACEABILITY METHOD AND TRACEABILITY PROGRAM 审中-公开
    可追溯性系统,可追溯性方法和可追溯性计划

    公开(公告)号:US20080148365A1

    公开(公告)日:2008-06-19

    申请号:US11946605

    申请日:2007-11-28

    IPC分类号: G06F7/04

    CPC分类号: G06F16/9537 G06F16/29

    摘要: Provided is a traceability system 100 configured of: an access request receiving section 152 for receiving an access request to dispersedly located pieces of traceability information through a communication device, an access authority checking section 154 for checking access authority to the traceability information targeted by the access request, a location specification section 156 for specifying a location of a piece of traceability information to which the user requests access, in reference to a location management master database in which each piece of traceability information is associated with a location thereof, and an access request execution section 158 for executing an access request from the user, in accordance with the specified location of the traceability information.

    摘要翻译: 提供了一种可追溯性系统100,其被配置为:通过通信设备接收对分散定位的可追溯性信息的访问请求的访问请求接收部分152;访问权限检查部分154,用于检查访问所针对的可追溯性信息的访问权限 请求,用于指定用户请求访问的可追溯性信息的位置的位置指定部分156,其中每个跟踪信息与其位置相关联的位置管理主数据库和访问请求 执行部分158,用于根据可追溯性信息的指定位置执行来自用户的访问请求。