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    • 1. 发明专利
    • 記録フォーム作成装置、品質管理システム、記録フォームの作成方法及び品質管理方法
    • 记录形式创建装置,质量管理系统,记录形式创建方法和质量管理方法
    • JP2015032165A
    • 2015-02-16
    • JP2013161830
    • 2013-08-02
    • 三菱重工業株式会社Mitsubishi Heavy Ind Ltd
    • KAWACHI MOTOKOKITAGAWA TOMOAKI
    • G06Q50/04G05B19/418
    • Y02P90/30
    • 【課題】製品の品質を管理するために使用される記録フォームを、製品ごとに容易に作成することができる記録フォーム作成装置等を提供する。【解決手段】入力部31と、入力部31からの入力に基づいて、製品の品質を管理するために使用される記録フォームを生成する制御部33と、を備え、記録フォームは、製品を識別するための製品識別項目を有する基本属性と、基本属性に対応する製品の計測に関する事項を示す計測項目と、計測項目に対応する製品の計測結果が入力される入力項目と、を少なくとも含み、制御部33は、入力部31からの入力に基づいて製品識別項目及び計測項目がそれぞれ設定されると、設定された製品識別項目及び計測項目に基づいて記録フォームを生成する。【選択図】図1
    • 要解决的问题:提供能够容易地创建用于管理每个产品的产品质量的记录表单的记录表单创建装置。解决方案:记录表单创建装置包括:输入部分31; 以及控制部分33,用于根据来自输入部分31的输入产生用于管理产品质量的记录形式。记录形式至少包括具有用于识别产品和测量的产品标识项的基本属性 指示与对应于与测量项目相对应的产品的测量结果的基本属性和输入项相对应的产品的测量相关的主题的项目。 当根据来自输入部31的输入分别设定产品识别项目和测量项目时,控制部件33基于设定的产品识别项目和测量项目生成记录表格。
    • 2. 发明专利
    • Server device, and state information transmission method
    • 服务器设备和状态信息传输方法
    • JP2012004947A
    • 2012-01-05
    • JP2010139494
    • 2010-06-18
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KAWACHI MOTOKONOMURA MASUMI
    • H04L12/46
    • PROBLEM TO BE SOLVED: To reduce the load of a communication server or a public communication network, and to prevent waste in a throughput of the communication server or in a band of the public communication network.SOLUTION: When a value of state information acquired by an information acquisition part 101 satisfies a condition stored in a sampling period storage part 104, a irregular sampling part 107 samples the state information acquired by the information acquisition part 101 with a second sampling period shorter than a first sampling period and which corresponds to the condition stored in the sampling period storage part 104. The transmission part 110 transmits the state information to a data server.
    • 要解决的问题:为了减少通信服务器或公共通信网络的负载,并且防止通信服务器的吞吐量或公共通信网络的频带中的浪费。 解决方案:当由信息获取部分101获取的状态信息的值满足存储在采样周期存储部分104中的条件时,不规则采样部分107用信息获取部分101获取的状态信息用第二采样 期间比第一采样周期短,并且对应于存储在采样周期存储部分104中的条件。发送部分110将状态信息发送到数据服务器。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Construction site area evaluation device and construction site area evaluation method
    • 施工现场评估装置和施工现场评估方法
    • JP2012248008A
    • 2012-12-13
    • JP2011119373
    • 2011-05-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KAWACHI MOTOKOINAMI KATSUTOYAJI TETSUYA
    • G06Q50/08
    • PROBLEM TO BE SOLVED: To provide a user with information which is: convenient for the user; and for accurately evaluating an area of a construction site.SOLUTION: A construction site area evaluation device: stores occupation information, in an HDD, indicating a construction period during which construction using a component is executed as well as an occupation area which is a site area that the component occupies for each component to be a construction material; extracts the occupation area, for each component in each evaluation period, from the occupation information stored in the HDD; generates total information indicating a total value of the occupation area in each evaluation period; and outputs, to an image display section, an image capable of identifying the occupation area of each component in each evaluation period together with the total value in each evaluation period indicated by the total information.
    • 要解决的问题:为用户提供一个方便用户的信息; 并准确评估施工现场的面积。 解决方案:施工现场区域评估装置:在HDD中存储指示执行使用组件的构造的构造周期的占用信息以及作为每个组件占据的部位的区域的占用区域 作为建筑材料; 从存储在HDD中的职业信息中提取每个评估周期中的每个组件的占用面积; 生成表示各评价期间的占用面积的总值的总信息; 并且向图像显示部分输出能够在每个评估期间识别每个分量的占用面积的图像以及由总信息指示的每个评估周期中的总值。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Course planning method of mobile object
    • 移动对象课程规划方法
    • JP2003330536A
    • 2003-11-21
    • JP2002134508
    • 2002-05-09
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KAWACHI MOTOKOFUJISE TOKUOMORIMURA KOICHIKITA AKIRAMURATA RYOICHI
    • B63H25/04G05B13/02G05D1/00
    • PROBLEM TO BE SOLVED: To provide a course planning method of a mobile object which flexibly conducts a course planning without necessity of adjustment of membership function in each case for same kinds of mobile objects which have different movement functions.
      SOLUTION: The course planning method of the mobile object, which finds a reference degree of a veering point after next, according to a prescribed fuzzy control rule, from a first membership function value decided from a fuzzy set of product of the closest time up to a next veering point and its speed by inputting a position of the veering point, a position of the mobile object itself, and speed, and a second membership function value decided from the fuzzy set of the closest distance up to the next veering point, and which calculates a command course based on this reference degree of a veering point after next, is provided with a step which sets a targeted value about the closest distance, and a step which changes domain of the first membership function and/or the second membership function so that difference between the closest distance and the targeted value satisfies a prescribed constraint condition.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种灵活地进行课程规划的移动对象的课程规划方法,而不需要在具有不同移动功能的相同种类的移动对象的情况下调整隶属函数。

      解决方案:根据规定的模糊控制规则,从最接近的模糊集合的第一隶属函数值确定移动对象的课程规划方法,其根据规定的模糊控制规则找到下一个后退点的参考度 通过输入转向点的位置,移动对象本身的位置和速度,以及从最近距离的模糊集合决定的第二隶属函数值直到下一个转向点的速度,以及其速度 点,并且根据下一步之后的转向点的参考度来计算命令进程,提供设置关于最近距离的目标值的步骤,以及改变第一隶属函数的域和/或 第二隶属函数,使得最近距离与目标值之间的差异满足规定的约束条件。 版权所有(C)2004,JPO

    • 5. 发明专利
    • Method for diagnosing function of plant, and plant monitoring device
    • 用于诊断植物和植物监测装置的功能的方法
    • JP2012008782A
    • 2012-01-12
    • JP2010143810
    • 2010-06-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • NOMURA MASUMIKAWACHI MOTOKO
    • G05B23/02F01D25/00F02C9/00G01M99/00
    • PROBLEM TO BE SOLVED: To diagnose function of a plant easily and accurately.SOLUTION: A measurement data acquisition part 101 acquires measurement data and influence data from a plant. Next, an efficiency calculation part 102 substitutes the measurement data acquired by the measurement data acquisition part 101 for a calculation formula of efficiency expressed by preliminarily determined measurement data, and generates an efficiency parameter. Then, a correction efficiency calculation part 103 generates a correction efficiency parameter showing efficiency of a gas turbine in a reference state which is an operation condition to be the reference by using the efficiency parameter generated by the efficiency calculation part 102 and the influence data acquired by the measurement data acquisition part 101. Subsequently, a correction efficiency collection part 104 collects the correction efficiency parameters and forms a correction efficiency group. Then a function of the plant is diagnosed using a correction quality parameter group and a latest correction quality parameter.
    • 要解决的问题:易于准确地诊断植物的功能。 解决方案:测量数据获取部分101获取测量数据并影响来自工厂的数据。 接下来,效率计算部102将由测量数据获取部101获取的测量数据代入由预先确定的测量数据表示的效率的计算公式,并生成效率参数。 然后,校正效率计算部103通过使用由效率计算部102生成的效率参数和作为参考的运算条件的运算条件,生成校正效率参数,该修正效率参数表示作为参考的运转状态的燃气轮机的效率, 测量数据获取部分101.随后,校正效率收集部分104收集校正效率参数并形成校正效率组。 然后使用校正质量参数组和最新校正质量参数来诊断植物的功能。 版权所有(C)2012,JPO&INPIT
    • 6. 发明专利
    • Inventory management device and inventory management method
    • 库存管理设备和库存管理方法
    • JP2010198340A
    • 2010-09-09
    • JP2009042657
    • 2009-02-25
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • NAKANOMORI MASAYATAKATANI TAKUYAFUJIWARA NAOYUKIKAWACHI MOTOKO
    • G05B19/418G06Q50/00G06Q50/04
    • Y02P90/14Y02P90/30
    • PROBLEM TO BE SOLVED: To obtain detailed information about inventory shortages even if a plurality of kinds of products are managed collectively. SOLUTION: Inventory information 21 showing the inventory of each of products of a plurality of kinds, receiving schedule information 22 created for each product based on a production plan, and delivery schedule information 23 created for each product based on a sales plan are input. Based on the information, inventory plan information showing an expected amount of inventory is created. A first lower limit value showing a lower limit reference value of the amount of inventory determined in advance for each product and a first period determined in advance for managing the inventory of each product are stored. Based on the inventory plan information and the first period, a first point of time at which inventory drops to or below the first lower limit value within the first period is determined. For the first point of time, an alarm is displayed for each product, and an alarm for the product whose first point of time is earlier is preferentially displayed. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使集体管理多种产品,也可获得关于库存短缺的详细信息。

      解决方案:显示各种产品的库存的库存信息21,基于生产计划为每个产品创建的接收进度信息22以及基于销售计划为每个产品创建的交货计划信息23 输入。 根据信息,创建显示预期库存量的库存计划信息。 存储显示为每个商品预先确定的库存量的下限参考值的第一下限值和用于管理每个商品的库存的预先确定的第一周期。 基于库存计划信息和第一期间,确定在第一期间内库存下降到或低于第一下限值的第一时间点。 对于第一时间点,对于每个产品显示警报,并且优先显示其第一时间点较早的产品的警报。 版权所有(C)2010,JPO&INPIT

    • 7. 发明专利
    • Operation control system and operating method of heat accumulation type air conditioner and heat source device
    • 热空气调节器和热源装置的操作控制系统和操作方法
    • JP2003050037A
    • 2003-02-21
    • JP2001236951
    • 2001-08-03
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KAWACHI MOTOKONOMURA MASUMIIBA HIROYUKIMAEHARA NORIYASU
    • F24F5/00F24F11/02
    • PROBLEM TO BE SOLVED: To provide an operation control system, improving an operation efficiency by determining the peak-cut value of a heat accumulation type air conditioner employed in parallel to a heat source device while considering the load factor and the number of operating sets of the heat source device. SOLUTION: The operation control system is provided with a heat accumulating amount control unit 1 for controlling the accumulating amount of heat, a predictive calculation unit 2 for predicting a predictive demanding heat amount for a given period, an instrument operation operating unit 3 for operating the number of operating sets and the load factor of the heat source device 8 based on the predictive demanding heat amount and a peak-cut operation unit 4 for operating the peak-cut value whereat the heat source device 8 can be operated within an objective load factor based on the heat accumulating amount, the predictive demanding heat amount and the operation efficiency. The peak-cut operation unit 4 operates an operation constitution and the peak-cut value which permit the operation within the range of the objective load factor when the peak-cut value and the number of operating sets of the heat source device 8 are changed.
    • 要解决的问题:提供一种操作控制系统,通过确定与热源装置并联使用的蓄热式空调器的峰值,提高操作效率,同时考虑负载因子和操作组的数量 热源装置。 解决方案:操作控制系统设置有用于控制累积热量的蓄热量控制单元1,用于预测给定期间的预测要求热量的预测计算单元2,用于操作 基于预测要求热量的热源装置8的操作组数和负载系数,以及用于操作热切换值8的峰值切割操作单元4,其中热源装置8能够在目标负载因子 基于蓄热量,预测要求的热量和操作效率。 峰值切断操作单元4在改变热源装置8的峰值和操作组的数量时,操作允许在目标负载因子的范围内的操作的操作构造和峰值切换值。
    • 8. 发明专利
    • Maintenance service support device, maintenance service support method, and program
    • 维护服务支持设备,维护服务支持方法和程序
    • JP2014174891A
    • 2014-09-22
    • JP2013049157
    • 2013-03-12
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • ITO SHINGONOMURA MASUMITATEISHI HIROKIKAWACHI MOTOKOSAKAI TATSUYA
    • G06Q50/10F01D25/00F02C7/00
    • PROBLEM TO BE SOLVED: To present an appropriate maintenance measure principle.SOLUTION: An inspection/maintenance support device includes: a storage unit for storing maintenance reference data in which a type of damage, a measuring object of the damage, and an evaluation reference value of the damage are associated with each other; a damage data acquirement unit for acquiring damage data in which the type of each damage, the measuring object of the damage, and the measured value are associated with each other; an overall evaluation value calculation unit for calculating the overall evaluation value that is obtained by overall evaluating the measured value of the damages having the same damage type, of the damage data; and a maintenance principle determination unit for comparing the overall evaluation value with the maintenance reference data and determining a maintenance principle.
    • 要解决的问题:提出适当的维护措施原理。解决方案:检查/维护支持设备包括:存储单元,用于存储维护参考数据,其中损坏类型,损坏的测量对象和评估参考值 的损害相互关联; 用于获取损伤数据的损伤数据获取单元,其中每个损伤的类型,损伤的测量对象和测量值彼此相关联; 整体评估值计算单元,计算通过综合评价具有相同损伤类型的损伤的测量值而得到的综合评价值的损伤数据; 以及维护原理确定单元,用于将整体评估值与维护参考数据进行比较并确定维护原理。
    • 9. 发明专利
    • Plant monitoring system, plant monitoring method and server device
    • 植物监测系统,植物监测方法和服务器装置
    • JP2012008855A
    • 2012-01-12
    • JP2010145032
    • 2010-06-25
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KAWACHI MOTOKONOMURA MASUMI
    • G05B23/02
    • PROBLEM TO BE SOLVED: To create snap shot data without manual operation and to immediately perform simulation at a remote simulator device.SOLUTION: A communication server 10 obtains state information in time series from a monitoring object device and uses a plurality of state information different from each other in terms of time to create condition information for replaying the state of the monitoring object device at a certain time of date. A simulator device 30 receives snap shot data from the communication server 10 and uses the snap shot data to perform simulation of the operation state of the monitoring object device.
    • 要解决的问题:创建没有手动操作的快照数据,并在远程模拟器设备上立即进行仿真。 解决方案:通信服务器10从监视对象设备获取时间序列的状态信息,并且使用在时间上彼此不同的多个状态信息来创建用于在监视对象设备的状态下重放监视对象设备的状态的条件信息 一定的日期。 模拟器装置30从通信服务器10接收快照数据,并使用快照数据来执行监视对象装置的操作状态的模拟。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Inspection system determination device and inspection system determination method and program
    • 检查系统确定设备和检查系统确定方法和程序
    • JP2011221743A
    • 2011-11-04
    • JP2010089499
    • 2010-04-08
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TATEISHI HIROKIMATSUO MINORUHORI SHINICHIROKAWACHI MOTOKO
    • G05B19/418G06Q10/00G06Q50/00G06Q50/04
    • Y02P90/22Y02P90/30
    • PROBLEM TO BE SOLVED: To provide an appropriate inspection system for preventing the precision of sampling inspection from being changed, and for facilitating countermeasures even to the occurrence of the change of quality due to temporal change.SOLUTION: An incompatible article rate calculation part 105 reads the incompatible article rate of the past lot of a product shown by a model number read by a product information reading part 101 from an inspection result storage part 103. Also, a weighted summation calculation part 106 calculates the weighted summation of the incompatible article rate of the product by applying a sampling coefficient showing a larger value according as the lot is new to the incompatible article rate of the past lot read by the incompatible article rate calculation part 105. Then, a quality point calculation part 109 calculates quality points showing a lower value according as the weighted summation of the incompatible article rate is large by using the weighted summation of the incompatible article rate calculated by the weighted summation calculation part 106. Then, an inspection system determination part 111 determines the inspection system of the lot as an inspection system with a larger sample size according as the quality points calculated by the quality point calculation part 109 is low.
    • 要解决的问题:提供一种适当的检查系统,用于防止抽样检查的精度被改变,并且为了便于对策,甚至由于时间变化而导致质量变化的发生。

      解决方案:不兼容的物品率计算部件105从检查结果存储部件103读取由产品信息读取部件101读取的型号所示的产品的过去批次的不兼容物品率。另外,加权求和 计算部分106通过应用显示较大值的抽样系数来计算产品的不兼容物品率的加权和,根据由不兼容的物品率计算部分105读取的过去批次的不兼容物品率的数量是新的。然后 质量点计算部109通过使用由加权求和计算部106计算出的不兼容物品率的加权求和来计算不兼容物品率的加权总和,显示较低值的质量点。然后,检查系统 确定部111将批次的检查系统确定为具有较大样本的检查系统 根据由质量点计算部109计算的质量点的尺寸较小。 版权所有(C)2012,JPO&INPIT