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    • 2. 发明授权
    • 제조 공정 성숙 수준 평가 시스템 및 그 시스템의 정보 처리 방법
    • 制造过程成熟度评估方法与系统
    • KR101227879B1
    • 2013-01-31
    • KR1020110080463
    • 2011-08-12
    • 한국생산기술연구원
    • 조용주조현제최석우이혜진
    • G06Q50/04G06Q10/06G06Q10/10
    • G06Q50/04G06Q10/063112G06Q10/0639G06Q10/105
    • PURPOSE: A maturation process maturation level evaluation system and an information processing method in the system are provided to reduce a consulting cost for diagnosis and evaluation by easily collecting data for the diagnosis and evaluation. CONSTITUTION: Diagnosis groups are transmitted to a diagnosis inputter computer for diagnosing one or more targets(S11). Diagnosis input information of the target is obtained from the diagnosis inputter computer(S12). The diagnosis input information is stored and maturation process maturation level information of the target is generated(S13). [Reference numerals] (S11) Transmitting diagnosis groups related to one or more lower manufacturing strategy diagnosis components corresponding to manufacturing strategy, diagnosis groups related to one or more lower manufacturing organization diagnosis components corresponding to manufacturing organization, diagnosis groups related to one or more lower manufacturing IT diagnosis components corresponding to manufacturing IT, diagnosis groups related to one or more lower manufacturing process diagnosis components corresponding to manufacturing process, and diagnosis groups related to one or more lower manufacturing performance diagnosis components corresponding to manufacturing performance to a diagnosis inputter computer for diagnosing one or more diagnosis subjects; (S12) Receiving diagnosis input data about diagnosis of the subjects for the diagnosis groups related to manufacturing strategy diagnosis components, manufacturing organization diagnosis components, manufacturing IT diagnosis components, manufacturing process diagnosis components, and manufacturing performance diagnosis components from the diagnosis inputter computer; (S13) Storing the received diagnosis input data and creating process maturity evaluation data about the maturity of the subjects to manufacturing process from five points of view, including manufacturing strategy, manufacturing organization, manufacturing IT, manufacturing process, and manufacturing performance, by referring to process maturity evaluation standard policy data related to one or more of diagnosis groups, one or more lower diagnosis groups constituting the diagnosis groups, and one or more diagnosis indexes constituting the lower diagnosis groups with respect to the diagnosis input data
    • 目的:提供系统成熟过程成熟度评估系统和信息处理方法,通过轻松收集诊断和评估数据,减少诊断和评估的咨询成本。 规定:诊断组被传送到诊断输入计算机,用于诊断一个或多个目标(S11)。 从诊断输入器计算机获得目标的诊断输入信息(S12)。 存储诊断输入信息,生成目标的成熟过程成熟度信息(S13)。 (附图标记)(S11)与制造策略对应的一个以上的下行制造策略诊断部件相关的发送诊断部,与制造组织对应的一个以上的下行生产组织诊断部件相关的诊断部,与一个以下的下部 制造对应于制造IT的IT诊断部件,与对应于制造过程的一个或多个下面的制造过程诊断部件相关的诊断组以及与诊断输入器计算机进行诊断的与制造性能相对应的一个或多个较低制造性能诊断部件相关的诊断组 一个或多个诊断对象; (S12)从诊断输入器计算机接收关于与制造策略诊断部件相关的诊断组的对象的诊断输入数据,制造组织诊断部件,制造过程诊断部件,制造过程诊断部件以及制造性能诊断部件; (S13)从五个角度,包括制造策略,制造组织,制造业IT,制造过程和制造业绩等方面,将收到的诊断输入数据存储到制造过程成熟度的过程成熟度评估数据,参考 与诊断组中的一个或多个相关的过程成熟度评估标准策略数据,构成诊断组的一个或多个下位诊断组以及构成诊断输入数据的下诊断组的一个或多个诊断指标
    • 4. 发明授权
    • 시나리오 시뮬레이션 및 병목 공정 정보 처리를 포함하는 디지털 제조 최적화 시스템
    • 用于情景模拟和发现瓶颈过程的数字制造优化系统
    • KR101527080B1
    • 2015-06-09
    • KR1020130129119
    • 2013-10-29
    • 한국생산기술연구원
    • 조용주조현제김철
    • G06F19/00
    • 본발명은시나리오시뮬레이션및 병목공정정보처리를포함하는디지털제조최적화시스템에관한것이다. 본발명의디지털제조최적화시스템은 (A) 시나리오별로조절변수별로조절변수값 및성능특성치를입수받는단계; (B) 상기시나리오별로시뮬레이션을수행하고, 시뮬레이션수행결과에따른적어도하나이상의시뮬레이션분석정보를생성하는단계; (C) 상기시뮬레이션분석정보로적어도하나이상의병목공정을도출하고, 상기병목공정에대한기 설정된진단정보를생성하는단계;및 (D) 공정들의라인밸런싱정보를처리하는단계;를포함하는방식으로정보처리하는것을특징으로한다. 본발명을실시하면복수의시나리오에대한시뮬레이션을수행하여시뮬레이션결과병목공정을발견할수 있고, 병목공정에의한전체생산성저하를최소화할수 있고, t검정을통한최적시나리오를생성하고, 각시나리오들간의평균값 차이를보여줌으로써, 사용자가대안시나리오를검토및 채택하는데 큰도움을줄 수있으며, 각공정에서의설비능력변화를통해사용자가성능특성치를비교분석함으로써, 대안시나리오검토를효율적으로수행할수 있도록제공할수 있다.
    • 5. 发明授权
    • 제조공정 분석을 위한 흐름 모델링 기반 통계처리 시스템
    • 用于分析制造过程的流动模型统计处理系统
    • KR101192592B1
    • 2012-10-18
    • KR1020100127321
    • 2010-12-14
    • 한국생산기술연구원
    • 조용주조현제
    • G06F19/00G06F17/18G06F3/048
    • 통계처리 단위작업들로 구성된 통계처리 그래프를 생성하고, 데이터를 입력받아 그래프의 각 단위작업들을 처리하여 최종 처리 결과를 표시하는 흐름 모델링 기반 통계처리 시스템에 있어서, 데이터를 입력받는 데이터 획득부; 입력과 출력을 갖는 통계처리 단위작업과 단위작업 사이의 입출력 관계를 입력받아 데이터의 통계처리 그래프를 생성하되, 통계처리 그래프는 노드와 방향성 에지로 구성되고, 노드는 단위작업에 대응되고 방향성 에지의 시점은 단위작업의 출력에 대응되고 에지의 종점은 단위작업의 입력에 대응되도록 생성하는 흐름도 디자인부; 통계처리 그래프의 방향 순서대로 그래프의 단위작업을 처리하되, 그래프의 에지의 방향에 따라 단위작업의 출력을 단위작업의 입력으로 입력시켜 처리하는 흐름도 실행부; 및, 처리 결과를 표시하는 결과 표시부를 포함하는 구성을 마련한다.
      상기와 같은 시스템에 의하여, 이미 만들어진 통계처리 단위작업을 조합하여 하고자 원하는 통계분석을 수행함으로써, 현장에서 간단한 지식만으로 복잡한 통계분석을 간단하게 처리할 수 있다.
    • 7. 发明公开
    • 디지털 제조 최적화 시스템
    • 数字制造优化系统
    • KR1020130125527A
    • 2013-11-19
    • KR1020120049108
    • 2012-05-09
    • 한국생산기술연구원
    • 조용주조현제김철
    • G06Q50/04G06Q10/04G05B17/00G06F17/00G06F17/50
    • Y02P90/30G06Q50/04G05B17/00G06F17/00G06F17/5009G06Q10/04
    • The present invention relates to a digital manufacturing optimization system utilizing a simulation and process data. The digital manufacturing optimization system of the present invention comprises: an optimization functioning module producing at least two optimal operating variables for at least one target process that is a target to be optimized; an operating variable selecting module selecting at least two of the at least two operating variables produced by the optimization functioning module; and a process optimizing module deducing an optimal operating condition using a set of operating variables selected by the operating variable selecting module; and the digital manufacturing optimization system is characterized in that the optimization functioning module includes a type ��optimal operating variable deducing module and at least one type ��optimal operating variable deducing module. According to the present invention, it is possible to analyze performance of a specific manufacturing process or a digital manufacturing process, more accurately, to reduce the time required for solving problems during manufacturing, and to allow a more accurate analysis and decision-making. [Reference numerals] (1000) Digital manufacturing optimization system;(1100) Optimization functioning module;(1110) Module 1 (a type ��optimal operating variable deducing module );(1111) Sub module 1;(1112) Sub module 2;(1120) Module 2 (a type ��optimal operating variable deducing module);(1121) Sub module 3;(1122) Sub module 4;(1123) Sub module 5;(1130) Module 3 (an operating variable selecting module);(1140) Module 4 (an operating optimization module);(1141) Optimization result summary module;(1200) Input and output module;(2000) User computer;(3000) Wire/wireless network
    • 本发明涉及利用模拟和处理数据的数字制造优化系统。 本发明的数字制造优化系统包括:优化功能模块,为至少一个作为要优化的目标的目标过程产生至少两个最佳操作变量; 操作变量选择模块,其选择由优化功能模块产生的至少两个操作变量中的至少两个; 以及过程优化模块,使用由所述操作变量选择模块选择的一组操作变量来推导最优操作条件; 数字制造优化系统的特征在于优化功能模块包括一个类型的最佳操作变量推导模块和至少一种类型的最佳操作变量推导模块。 根据本发明,可以更精确地分析特定制造过程或数字制造过程的性能,以减少在制造过程中解决问题所需的时间,并且允许更准确的分析和决策。 (1000)数字制造优化系统;(1100)优化功能模块;(1110)模块1(类型最佳操作变量推导模块);(1111)子模块1;(1112)子模块2; (1120)模块2(类型最佳操作变量推导模块);(1121)子模块3;(1122)子模块4;(1123)子模块5;(1130)模块3(操作变量选择模块) ;(1140)模块4(操作优化模块);(1141)优化结果汇总模块;(1200)输入输出模块;(2000)用户计算机;(3000)有线/无线网络
    • 8. 发明授权
    • 기업 제조 공정 수준별 맞춤형 제조 실행 시스템 모듈 연계 정보 생성 시스템 및 그 시스템의 정보 처리 방법
    • 根据公司制造流程制造C-MES模块映射信息的方法和系统
    • KR101227881B1
    • 2013-01-31
    • KR1020110080490
    • 2011-08-12
    • 한국생산기술연구원
    • 조용주조현제최석우이혜진
    • G06Q10/06G06Q10/10G06Q50/04
    • Y02P90/30G06Q10/06393G06Q10/063112G06Q10/06398G06Q10/105G06Q50/04
    • PURPOSE: A company manufacture process level customized execution system module link information generating system and an information processing method thereof are provided to generate link information about a customized c-MES(Manufacturing Execution System) module based on manufacturing process diagnosis evaluation information. CONSTITUTION: Diagnosis groups are transmitted to a diagnosis inputter computer for diagnosing one or more targets(S11). Diagnosis input information of the target is obtained from the diagnosis inputter computer(S12). The diagnosis input information is stored and maturation process maturation level information of the target is generated(S13). [Reference numerals] (S11) Transmitting diagnosis groups related to one or more lower manufacturing strategy diagnosis components corresponding to manufacturing strategy, diagnosis groups related to one or more lower manufacturing organization diagnosis components corresponding to manufacturing organization, diagnosis groups related to one or more lower manufacturing IT diagnosis components corresponding to manufacturing IT, diagnosis groups related to one or more lower manufacturing process diagnosis components corresponding to manufacturing process, and diagnosis groups related to one or more lower manufacturing performance diagnosis components corresponding to manufacturing performance to a diagnosis inputter computer for diagnosing one or more diagnosis subjects; (S12) Receiving diagnosis input data about diagnosis of the subjects for the diagnosis groups related to manufacturing strategy diagnosis components, manufacturing organization diagnosis components, manufacturing IT diagnosis components, manufacturing process diagnosis components, and manufacturing performance diagnosis components from the diagnosis inputter computer; (S13) Storing the received diagnosis input data and creating process maturity evaluation data about the maturity of the subjects to manufacturing process from five points of view, including manufacturing strategy, manufacturing organization, manufacturing IT, manufacturing process, and manufacturing performance, by referring to process maturity evaluation standard policy data related to one or more of diagnosis groups, one or more lower diagnosis groups constituting the diagnosis groups, and one or more diagnosis indexes constituting the lower diagnosis groups with respect to the diagnosis input data; (S14) Creating MES module linked data corresponding to the created process maturity evaluation data
    • 目的:提供公司制造流程级定制执行系统模块链接信息生成系统及其信息处理方法,以基于制造过程诊断评估信息生成关于定制的c-MES(制造执行系统)模块的链接信息。 规定:诊断组被传送到诊断输入计算机,用于诊断一个或多个目标(S11)。 从诊断输入器计算机获得目标的诊断输入信息(S12)。 存储诊断输入信息,生成目标的成熟过程成熟度信息(S13)。 (附图标记)(S11)与制造策略对应的一个以上的下行制造策略诊断部件相关的发送诊断部,与制造组织对应的一个以上的下行生产组织诊断部件相关的诊断部,与一个以下的下部 制造对应于制造IT的IT诊断部件,与对应于制造过程的一个或多个下面的制造过程诊断部件相关的诊断组以及与诊断输入器计算机进行诊断的与制造性能相对应的一个或多个较低制造性能诊断部件相关的诊断组 一个或多个诊断对象; (S12)从诊断输入器计算机接收关于与制造策略诊断部件相关的诊断组的对象的诊断输入数据,制造组织诊断部件,制造过程诊断部件,制造过程诊断部件以及制造性能诊断部件; (S13)从五个角度,包括制造策略,制造组织,制造业IT,制造过程和制造业绩等方面,将收到的诊断输入数据存储到制造过程成熟度的过程成熟度评估数据,参考 与诊断组中的一个或多个相关的过程成熟度评估标准策略数据,构成诊断组的一个或多个下位诊断组以及构成诊断输入数据的下诊断组的一个或多个诊断指标; (S14)创建与创建的流程成熟度评估数据相对应的MES模块链接数据
    • 10. 发明公开
    • 시나리오 시뮬레이션 및 병목 공정 정보 처리를 포함하는 디지털 제조 최적화 시스템
    • 数字化制造优化系统,用于场景模拟和发现基于BOTTLENECK的过程
    • KR1020150049077A
    • 2015-05-08
    • KR1020130129119
    • 2013-10-29
    • 한국생산기술연구원
    • 조용주조현제김철
    • G06F19/00
    • G06F19/00
    • 본발명은시나리오시뮬레이션및 병목공정정보처리를포함하는디지털제조최적화시스템에관한것이다. 본발명의디지털제조최적화시스템은 (A) 시나리오별로조절변수별로조절변수값 및성능특성치를입수받는단계; (B) 상기시나리오별로시뮬레이션을수행하고, 시뮬레이션수행결과에따른적어도하나이상의시뮬레이션분석정보를생성하는단계; (C) 상기시뮬레이션분석정보로적어도하나이상의병목공정을도출하고, 상기병목공정에대한기 설정된진단정보를생성하는단계;및 (D) 공정들의라인밸런싱정보를처리하는단계;를포함하는방식으로정보처리하는것을특징으로한다. 본발명을실시하면복수의시나리오에대한시뮬레이션을수행하여시뮬레이션결과병목공정을발견할수 있고, 병목공정에의한전체생산성저하를최소화할수 있고, t검정을통한최적시나리오를생성하고, 각시나리오들간의평균값 차이를보여줌으로써, 사용자가대안시나리오를검토및 채택하는데 큰도움을줄 수있으며, 각공정에서의설비능력변화를통해사용자가성능특성치를비교분석함으로써, 대안시나리오검토를효율적으로수행할수 있도록제공할수 있다.
    • 本发明涉及包括场景模拟和瓶颈处理信息处理的数字生产优化系统。 本发明的数字化生产优化系统包括以下步骤:(A)通过场景调整变量接收调整变量值和性能特征值; (B)根据场景进行模拟,并根据模拟结果产生至少一条仿真分析信息; (C)从仿真分析信息诱导至少一个瓶颈过程,并产生关于瓶颈过程的预定诊断信息; 和(D)处理流程的线路平衡信息。 在本发明中,执行关于多个场景的模拟,从而从模拟结果发现瓶颈过程并且最小化由瓶颈过程引起的总生产率的降低。 通过t检验产生最佳场景,并显示场景平均值的差异,从而显着帮助用户查看和选择场景,并使用户能够通过比较和分析绩效特征来有效地审视替代场景 通过每个过程中的设施功能更改的价值。