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    • 3. 发明授权
    • System and method for managing construction machinery
    • 施工机械管理制度及方法
    • US07162347B2
    • 2007-01-09
    • US10492428
    • 2003-01-14
    • Kazuhiro ShibamoriGenroku SugiyamaHiroyuki AdachiKoichi ShibataHideki Komatsu
    • Kazuhiro ShibamoriGenroku SugiyamaHiroyuki AdachiKoichi ShibataHideki Komatsu
    • B60R25/10E02F9/20G06F19/00
    • B60R25/045B60R25/00B60R25/042B60R25/33E02F9/24E02F9/26
    • Construction machine management, permitting operation of a construction machine only under specified conditions and inhibiting its operation in case it is in a state incongruent with preset working conditions. Working conditions for each construction machine are set up by a working conditions setup means, including a geographically divided working area and a working time zone in which a construction machine is allowed to operate in a specified working area. Setup working conditions are stored in a memory means. At the time of starting a construction machine, the status of the construction machine is checked for by a status checkup means which is adapted to check for current position of the construction machine and current time against the working area and working time zone of the setup working conditions. In case a construction machine is found to be in a state incongruent with both of the working area and the working time zone of the preset working conditions, the management inhibits operation of that construction machine.
    • 施工机械管理,仅在特定条件下允许施工机械运行,并且在与预设工作条件不符的状态下禁止其运行。 每个施工机械的工作条件由工作条件设置手段设置,包括地理分割的工作区域和允许施工机械在指定的工作区域中操作的工作时区。 设置工作条件存储在存储器中。 在开始施工机械时,通过状态检查装置检查施工机械的状态,该状态检查装置适用于检查施工机械的当前位置和当前时间对工作区域和设置工作的工作时间段 条件。 如果发现施工机械处于与预设工作条件的工作区域和工作时间段不一致的状态的情况下,则管理禁止该施工机器的操作。
    • 4. 发明授权
    • Antitheft device
    • 防盗装置
    • US07489049B2
    • 2009-02-10
    • US10538883
    • 2003-12-16
    • Hideki KomatsuGenroku SugiyamaHiroyuki AdachiKazuhiro ShibamoriKoichi Shibata
    • Hideki KomatsuGenroku SugiyamaHiroyuki AdachiKazuhiro ShibamoriKoichi Shibata
    • B60R25/00
    • G08G1/205B60R25/04B60R25/102B60R25/33B60W2550/402G08B13/1409
    • An antitheft system can be provided by constructing such that, when a stop signal has been inputted from an engine 7, a main controller 2 outputs, until a first predetermined time Ts elapses, a turn-on signal to switches 8, 9 to perform a similar antitheft processing as in an operation of the engine 7 and after an elapse of the first predetermined time Ts, instructs the switch 9 to repeat a turn-on and turn-off at predetermined time intervals Δt, and, whenever the switch 9 is brought into a turned-on position, detects a position at that time by a position detecting controller 3 and compares the position with a position at the time of an engine stop to determine whether or not a theft has taken place. Owing to this construction, it is no longer necessary to always feed power to the position detecting controller 3 during the stop of the engine 7, thereby making it possible to cut down the feeding of as much power to the controller 3 as a time elapsed during which the switch 9 is kept off. The antitheft system can, therefore, minimize the power consumption of a control system during the engine stop.
    • 可以通过构造使得当从发动机7输入停止信号时提供防盗系统,主控制器2输出直到第一预定时间Ts经过开关8,9的接通信号,以执行 与发动机7的操作类似的防盗处理和经过第一预定时间Ts之后,指示开关9以预定的时间间隔Deltat重复打开和关闭,并且每当开关9被带动时 进入接通位置时,通过位置检测控制器3检测此时的位置,并将该位置与发动机停止时的位置进行比较,以确定是否发生了盗窃。 由于这种结构,在发动机7的停止期间不再需要总是向位置检测控制器3供电,从而可以将控制器3的动力供给量减少到如下时间: 开关9被关闭。 因此,防盗系统可以在发动机停止期间最小化控制系统的功率消耗。
    • 9. 发明授权
    • Method and system for managing construction machine, and arithmetic processing apparatus
    • 管理施工机械的方法和系统以及运算处理装置
    • US06449884B1
    • 2002-09-17
    • US09979078
    • 2001-11-16
    • Hiroshi WatanabeKoichi ShibataHiroyuki AdachiToichi HirataGenroku SugiyamaHideki Komatsu
    • Hiroshi WatanabeKoichi ShibataHiroyuki AdachiToichi HirataGenroku SugiyamaHideki Komatsu
    • E02F920
    • G07C5/008E02F9/2054E02F9/2292E02F9/2296E02F9/26E02F9/267G07C5/085
    • Hydraulic excavators 1 working in fields each include a controller 2, and an operating time is measured for each of an engine 32, a front 15, a swing body 13 and a track body 12. The measured data is stored in a memory of the controller 2, transferred to a base station computer 3 through satellite communication, an FD, etc., and stored in a database 100 of the base station computer 3. In the base station computer 3, the data stored in the database 100 is read out for each of the hydraulic excavators to obtain a value of an index (e.g., a travel ratio) regarding the state of use of a particular one of the hydraulic excavators and a distribution of the number of operated hydraulic excavators of the same model as the particular hydraulic excavator with respect to the index. The index value and that distribution are compared with each other to determine whether the particular hydraulic excavator is an optimum model. It is therefore possible to make an evaluation after confirming how a customer employs a machine, and to give an advice about the optimum model depending on the state of use of the machines.
    • 在各个领域中工作的液压挖掘机1包括控制器2,并且测量发动机32,前15,摇摆体13和轨道体12中的每一个的操作时间。测量数据存储在控制器的存储器中 2,通过卫星通信,FD等传送到基站计算机3,并存储在基站计算机3的数据库100中。在基站计算机3中,读出存储在数据库100中的数据, 每个液压挖掘机获得关于特定一个液压挖掘机的使用状态的指标值(例如,行驶比率)和与特定液压挖掘机相同型号的操作液压挖掘机的数量的分布 挖掘机相对于索引。 将指标值和分布进行比较,以确定特定液压挖掘机是否是最佳模型。 因此,可以在确认客户如何使用机器之后进行评估,并且根据机器的使用状态给出关于最佳模型的建议。