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    • 1. 发明授权
    • System for construction machine maintenance based on predicted service life
    • 基于预计使用寿命的施工机维修系统
    • US08533018B2
    • 2013-09-10
    • US11992535
    • 2006-09-29
    • Hirobumi MiwaTadashi TaninagaKoutarou HoriIchio Ichikawa
    • Hirobumi MiwaTadashi TaninagaKoutarou HoriIchio Ichikawa
    • G06Q10/00
    • E02F9/20E02F9/26G06Q10/06G06Q10/06314G06Q10/087G06Q10/20G06Q50/04Y02P90/30
    • To predict the service life of a construction machine more accurately, and to make it possible to draw up an appropriate overhaul implementation plan at an early stage.A first service life prediction unit 311 predicts the service lives of main components such as an engine and the like, based upon their actual wear states. And a second service life prediction unit 312 predicts the service lives of the same components, based upon their cumulative load amounts. An order setting unit 320 selects the ones of these two predicted service lives which are the shorter, and sets a priority order for overhaul in order of shortness of predicted service life. An overhaul schedule table generation unit 330 creates a schedule table D1 based upon this priority order. The contents of this schedule table D1 are decided upon by a judgment unit 340, and, if necessary, are corrected by a correction unit 341. And a plan creation unit 350 creates an overhaul implementation plan document D2 and the like, based upon the corrected schedule table D1a. The result of the overhaul task and the present states of components are tested, and these test results are reflected by the service life prediction units 311 and 312.
    • 更准确地预测施工机械的使用寿命,并尽早制定适当的大修实施计划。 第一使用寿命预测单元311基于其实际磨损状态来预测诸如发动机等的主要部件的使用寿命。 并且第二使用寿命预测单元312基于其累积负载量来预测相同组件的使用寿命。 订单设置单元320选择这两个较短的预期使用寿命中的一个,并且按预测的使用寿命的顺序设置大修的优先顺序。 大修时间表生成单元330基于该优先级顺序创建调度表D1。 该调度表D1的内容由判断单元340决定,并且如果需要,由校正单元341进行校正。并且,计划生成单元350基于校正单元340来创建大修实施计划文档D2等。 时间表D1a。 测试了大修任务的结果和组件的当前状态,并且这些测试结果由服务寿命预测单元311和312反映。
    • 2. 发明申请
    • Working Machine Maintenance Work Management System
    • 工作机维修工作管理系统
    • US20090259507A1
    • 2009-10-15
    • US11992535
    • 2006-09-29
    • Hirobumi MiwaTadashi TaninagaKoutarou HoriIchio Ichikawa
    • Hirobumi MiwaTadashi TaninagaKoutarou HoriIchio Ichikawa
    • G06Q10/00G06Q50/00G06N7/02
    • E02F9/20E02F9/26G06Q10/06G06Q10/06314G06Q10/087G06Q10/20G06Q50/04Y02P90/30
    • A first service life prediction unit 311 predicts the service lives of main components, such as an engine, based upon their actual wear states. A second service life prediction unit 312 predicts the service lives of the same components, based upon their cumulative load amounts. An order setting unit 320 selects the shorter predicted service lives and sets a priority order for overhaul based thereon. An overhaul schedule table generation unit 330 creates a schedule table D1 based upon this priority order. The contents of this schedule table D1 are corrected, if necessary, by a correction unit 341. A plan creation unit 350 creates an overhaul implementation plan document D2 and the like, based upon the corrected schedule table D1a. The result of the overhaul task and the present states of components are tested, and these test results are reflected by the service life prediction units 311 and 312.
    • 第一使用寿命预测单元311基于其实际磨损状态来预测诸如发动机的主要部件的使用寿命。 第二使用寿命预测单元312基于其累积负载量来预测相同组件的使用寿命。 订单设置单元320基于此来选择较短的预测使用寿命并设置用于大修的优先顺序。 大修时间表生成单元330基于该优先级顺序创建调度表D1。 如果需要,通过校正单元341校正该调度表D1的内容。计划创建单元350基于校正的调度表D1a来创建大修实施计划文档D2等。 测试了大修任务的结果和组件的当前状态,并且这些测试结果由服务寿命预测单元311和312反映。
    • 5. 发明授权
    • Loading system and transporter
    • 装载系统和运输车
    • US09221659B2
    • 2015-12-29
    • US13821037
    • 2012-09-14
    • Hisataka FukasuTadashi TaninagaTakashi ItoiTakahiro Ueda
    • Hisataka FukasuTadashi TaninagaTakashi ItoiTakahiro Ueda
    • G01G19/08B66F17/00E02F9/26E02F9/20B60P1/00
    • B66F17/00B60P1/00E02F9/2029E02F9/26G01G19/08
    • A loading system that includes a transporter and a loader or a transporter is provided. It includes a load-amount measuring unit installed on the transporter that measures a load amount of an object loaded on the transporter; a difference computing unit computing a difference between the load amount measured by the load-amount measuring unit when the object is loaded, and a load amount measured by the load-amount measuring unit after a measurement when the object is loaded and at a time of traveling; a storage unit storing a difference value data indicating the difference computed by the difference computing unit; a correcting unit correcting the load amount measured by the load-amount measuring unit when the object is loaded, based on a correction rule calculated based on the difference value data stored in the storage unit; and a display unit displaying a corrected load amount obtained by correcting the load amount.
    • 提供了一种包括运输机和装载机或运输机的装载系统。 它包括安装在运送器上的负载量测量单元,其测量装载在运送器上的物体的载荷量; 差分计算单元,计算当加载物体时由负载量测量单元测量的负载量与负载量测量单元测量的负载量之间的差异,该测量单元在加载物体后测量时的负载量和 旅行 存储单元,存储指示由差分计算单元计算出的差的差值数据; 校正单元,基于基于存储在存储单元中的差值数据计算出的校正规则,校正由加载量测量单元测量的加载量; 以及显示单元,显示通过校正负载量而获得的校正负载量。
    • 8. 发明申请
    • MINING MACHINE INFORMATION COLLECTION SYSTEM
    • 采矿机信息采集系统
    • US20140229055A1
    • 2014-08-14
    • US13824800
    • 2012-09-13
    • Takashi ItoiTadashi TaninagaHisataka FukasuTakahiro Ueda
    • Takashi ItoiTadashi TaninagaHisataka FukasuTakahiro Ueda
    • G07C5/00
    • G07C5/008H04Q9/00H04Q2209/40
    • An information collection device of an information collection system of a mining machine collects operation information from the dump truck. The information collection device transmits a position information request command to request the transmission of position information about the dump truck through a second wireless communication device at a predetermined time. When the dump truck whose response to the position information request command is received by the second wireless communication device can stay in the communication range of an in-vehicle wireless communication device until the communication of the operation information of the dump truck ends, the information collection device collects the operation information of the dump truck whose response is received by the second wireless communication device.
    • 挖掘机的信息收集系统的信息收集装置从自卸车收集操作信息。 信息收集装置发送位置信息请求命令,以在预定时间通过第二无线通信装置请求发送关于自卸车的位置信息。 当由第二无线通信装置接收到对位置信息请求命令的响应的自卸车可以停留在车载无线通信装置的通信范围内,直到自卸车的操作信息的通信结束为止,信息收集 设备收集由第二无线通信设备接收到响应的自卸车的操作信息。
    • 9. 发明授权
    • Mining machine information collection system
    • 采矿机信息采集系统
    • US09105137B2
    • 2015-08-11
    • US13824800
    • 2012-09-13
    • Takashi ItoiTadashi TaninagaHisataka FukasuTakahiro Ueda
    • Takashi ItoiTadashi TaninagaHisataka FukasuTakahiro Ueda
    • G07C5/00H04Q9/00
    • G07C5/008H04Q9/00H04Q2209/40
    • An information collection device of an information collection system of a mining machine collects operation information from the dump truck. The information collection device transmits a position information request command to request the transmission of position information about the dump truck through a second wireless communication device at a predetermined time. When the dump truck whose response to the position information request command is received by the second wireless communication device can stay in the communication range of an in-vehicle wireless communication device until the communication of the operation information of the dump truck ends, the information collection device collects the operation information of the dump truck whose response is received by the second wireless communication device.
    • 挖掘机的信息收集系统的信息收集装置从自卸车收集操作信息。 信息收集装置发送位置信息请求命令,以在预定时间通过第二无线通信装置请求发送关于自卸卡车的位置信息。 当由第二无线通信装置接收到对位置信息请求命令的响应的自卸车可以停留在车载无线通信装置的通信范围内,直到自卸车的操作信息的通信结束为止,信息收集 设备收集由第二无线通信设备接收到响应的自卸车的操作信息。
    • 10. 发明授权
    • Control system for construction machines
    • 施工机械控制系统
    • US06778893B2
    • 2004-08-17
    • US09951403
    • 2001-09-14
    • Taku MurakamiMegumi MuraseTadashi Taninaga
    • Taku MurakamiMegumi MuraseTadashi Taninaga
    • G06F1900
    • G08G1/20
    • Abnormality can be judged accurately by considering information other than a sensor-detected value. Determination of an abnormality degree, namely an urgency degree, is enabled, and an abnormality can be processed accurately according to the determined result. Only information really useful is given to the side of an administrator, and the communications cost is suppressed. Server unit 11 of manufacturer 10 judges the abnormality degree of a construction machine on the basis of a combination of all or two of first to third construction machine information D1, D2, D3 collected. The server unit 11 of the manufacturer 10 ranks the abnormality degree of the construction machine in respective levels of Rank 1 (Normal), Rank 2 (Warning), Rank 3 (Abnormal) and Rank 4 (Emergency) on the basis of the number of occurred times of error codes collected for the unit time.
    • 可以通过考虑不同于传感器检测值的信息来准确判断异常。 能够确定异常度即紧急程度,并且可以根据确定的结果精确地处理异常。 只有信息真正有用,给管理员一方,通信费用被抑制。 制造商10的服务器单元11基于收集的第一到第三施工机器信息D1,D2,D3中的全部或者两个的组合来判断建筑机械的异常度。 制造商10的服务器单元11以等级1(正常),等级2(警告),等级3(异常)和等级4(紧急)的各个级别的等级排列施工机械的异常度 出现单位时间收集的错误代码的时间。