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    • 1. 发明申请
    • METHOD FOR SIZING PRODUCTION LOT STARTS WITHIN A LINEAR SYSTEM PROGRAMMING ENVIRONMENT
    • 在线性系统编程环境中生产最大起点的方法
    • US20050096771A1
    • 2005-05-05
    • US10605854
    • 2003-10-31
    • Brian DentonJohn ForrestRobert Milne
    • Brian DentonJohn ForrestRobert Milne
    • G06F19/00G06Q10/00
    • G06Q10/087G06Q10/06
    • Allocating limited manufacturing resources to achieve a feasible production plan that is consistent with customer demand is a difficult and common problem faced in many manufacturing industries. For large-scale multi-stage manufacturing systems, existing methods are typically based either on allocating limited resources sequentially, according to a priority ranked list of production starts, or on linear programming based models. The output of such planning models is a production plan which specifies the quantity of each part to produce at each plant, using resources available to the enterprise. Typically there are lot-sizing rules defining the permissible production start quantities. The invention disclosed herein is a method for applying these rules to the lot-sizing of production starts within a linear program. It employs advanced heuristics that consider both established operational objectives (e.g. customer service, short lead times, low inventory, and prioritized allocation of supply and capacity) and lot-size rules to efficiently compute a feasible production plan for the division.
    • 分配有限的制造资源,实现符合客户需求的可行的生产计划是许多制造业面临的一个困难和常见的问题。 对于大型多级制造系统,现有方法通常基于依次分配有限资源,根据优先排序的生产启动列表,或基于线性规划的模型。 这种规划模型的产出是一个生产计划,其中规定了每个工厂生产的每个部件的数量,使用企业可用的资源。 通常,定义许可生产开始数量的批量规则。 本文公开的发明是一种将这些规则应用于在线性程序内的生产开始批量生产的方法。 它采用先进的启发式方法,考虑既定的经营目标(例如客户服务,交货时间短,库存量低,供应和容量优先分配)和批量规则,以有效地计算出该部门的可行生产计划。
    • 2. 发明申请
    • A METHOD FOR CONSIDERING HIERARCHICAL PREEMPTIVE DEMAND PRIORITIES IN A SUPPLY CHAIN OPTIMIZATION MODEL
    • 一种考虑供应链优化模型中分层预测需求优先级的方法
    • US20050171828A1
    • 2005-08-04
    • US10707979
    • 2004-01-29
    • Brian DentonJohn ForrestRobert Milne
    • Brian DentonJohn ForrestRobert Milne
    • G06Q10/00G06F17/60
    • G06Q10/087G06Q10/0631G06Q10/06312G06Q10/06314G06Q10/06315G06Q10/06375
    • The invention comprises a method for achieving consideration of preemptive priorities within a supply chain optimization model. More specifically, the invention provides a method of allocating resources to a hierarchy of demand priorities in a linear programming production planning system. In particular, the invention aggregates the demand priorities into different priority groups and allocates the resources to the highest priority group of demand priorities using a first linear programming model. Next, the invention allocates remaining resources to the next highest priority group of demand priorities using a second linear programming model. The second linear programming model uses results from the first linear programming model. The invention continues this process by iteratively repeating the process of allocating remaining resources to the remaining groups of demand priorities, in order of priority. The system and method were employed to integrate the consideration of preemptive prioritization of customer demands with an advanced planning system for optimizing established planning objectives (e.g. customer service, short lead times, low inventory, and prioritized allocation of supply and capacity) to compute a feasible production plan for the division.
    • 本发明包括一种在供应链优化模型中实现对抢占优先级的考虑的方法。 更具体地,本发明提供了一种在线性规划生产计划系统中将资源分配给需求优先级的层级的方法。 特别地,本发明将需求优先级集中到不同的优先级组中,并且使用第一线性规划模型将资源分配给最优先级的需求优先级组。 接下来,本发明使用第二线性规划模型将剩余资源分配给下一个最高优先级的需求优先级组。 第二个线性规划模型使用第一个线性规划模型的结果。 本发明通过重复地按照优先次序重复将剩余资源分配给剩余的需求优先级组的过程来继续该过程。 采用系统和方法将客户需求先发优先考虑的考虑与先进的规划系统结合起来,以优化既定的规划目标(例如客户服务,交货期短,库存量低,供应和容量的优先配置),以计算可行 生产计划部门。
    • 3. 发明申请
    • Method, system and program product for determining objective function coefficients of a mathematical programming model
    • 用于确定数学规划模型的目标函数系数的方法,系统和程序产品
    • US20070038657A1
    • 2007-02-15
    • US11203603
    • 2005-08-11
    • Brian DentonRobert MilneRahul NaharMark PleszkochVivek Sharma
    • Brian DentonRobert MilneRahul NaharMark PleszkochVivek Sharma
    • G06F7/00
    • G06Q10/04
    • A method and system for determining a plurality of coefficients of an objective function of a mathematical programming model. Attributes of the model are identified. A first set of coefficient values determining a first solution and initially representing the plurality of coefficients is determined by employing a specified ranking of the attributes. A prevailing solution is initialized to the first solution. Additional sets of coefficient values are generated, each set determining a corresponding additional solution of the model. The additional solutions are evaluated (e.g., by the Analytic Hierarchy Process) to provide a ranking of the solutions, where the ranking is dependent upon the attributes. The ranking of the additional solutions is used to select a second solution. The prevailing solution is set to the second solution if the second solution exceeds a sum of the prevailing solution and a specified tolerance.
    • 一种用于确定数学规划模型的目标函数的多个系数的方法和系统。 识别模型的属性。 通过采用指定的属性等级来确定确定第一解并且最初表示多个系数的第一组系数值。 一个普遍的解决方案被初始化为第一个解决方案。 生成额外的系数值集合,每组确定模型的相应附加解。 评估附加解决方案(例如,通过分析层级过程)以提供解决方案的排名,其中排名取决于属性。 附加解决方案的排名用于选择第二个解决方案。 如果第二个解决方案超过了主要解决方案和指定公差的总和,则将主要解决方案设置为第二个解决方案。
    • 10. 发明申请
    • A METHOD FOR SUPPLY CHAIN COMPRESSION
    • 一种供应链压缩方法
    • US20050171827A1
    • 2005-08-04
    • US10707978
    • 2004-01-29
    • Brian DentonRobert Milne
    • Brian DentonRobert Milne
    • G06Q10/00G06F17/60
    • G06Q10/087G06Q10/06312G06Q10/06314G06Q10/06315G06Q10/06316G06Q30/0201
    • The invention provides a method and system comprising the identification of live stocking points and the filtering of files to include only live stocking points. The inventive stocking points reflect not only the part number but also the location within the bills of materials supply chain. The invention also provides a method and system for identifying live stocking points which efficiently handles circular supply chain flows such as those occurring due to: plants shipping to each other, planned rework, and part numbers being substituted for each other. In addition, the invention identifies live stocking points where only parts and locations that may be supplied are identified as live. The invention identifies the ability to substitute parts (“suppliability”) by examining component supply, inventory, capability to build, planned receipts, and capability of supplying the parts through substitution of other part(s).
    • 本发明提供了一种方法和系统,包括识别现场放养点和过滤文件以仅包括现场放养点。 本发明的储存点不仅反映了材料供应链中的部件号,而且反映了物料清单中的位置。 本发明还提供了一种用于识别实际存放点的方法和系统,其有效地处理循环供应链流动,例如由于:相互运输的工厂,计划的返工和部件号被彼此替代。 此外,本发明确定了只有可能提供的部件和位置被识别为活的实际存货点。 本发明通过检查部件供应,库存,建立能力,计划收据以及通过替换其他部件来提供部件的能力来确定替代部件(“供应”)的能力。