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    • 2. 发明授权
    • Diagnosis system
    • 诊断系统
    • US5748496A
    • 1998-05-05
    • US700043
    • 1996-08-20
    • Fuminobu TakahashiMasahiro KoikeShunsuke UchidaHaruo FujimoriIzumi YamadaTakaharu FukuzakiMakoto Nagase
    • Fuminobu TakahashiMasahiro KoikeShunsuke UchidaHaruo FujimoriIzumi YamadaTakaharu FukuzakiMakoto Nagase
    • G01M99/00G05B23/02G21C17/00G21C7/36
    • G21C17/00G05B23/0227G05B23/0272Y10S706/912Y10S706/915
    • A diagnosis system having sensors for supervising a plant, signal processors for processing signals of the sensors, and a state quantity arithmetic operation unit. The state quantity arithmetic operation unit calculates a quantity of state expressing the environment of the plant on the basis of supervisory information inputted through the signal processors. A state quantity prediction unit predictively calculates a quantity of state after a predetermined time on the basis of the quantity of state, supervisory information and a time change of the quantity of state inputted through the state quantity arithmetic operation unit. A future event prediction unit predicts a future event on the basis of predicted information of the quantity of state inputted through the state quantity prediction unit. An image information processor converts the quantity of state given by the state quantity arithmetic operation unit into image information and indicates the image information on a display unit. An image information processor converts the predicted quantity of state after the predetermined time, given by the state quantity prediction unit, into image information and indicates the image information on a display unit. An image information processor converts the future event predicted by the future event prediction unit into image information and indicates the image information on a display unit.
    • 具有用于监视设备的传感器,用于处理传感器的信号的信号处理器以及状态量算术运算单元的诊断系统。 状态量算术运算部根据通过信号处理部输入的监视信息来计算表示工厂环境的状态量。 状态量预测单元基于通过状态量算术运算单元输入的状态量,监视信息和状态量的时间变化,预测计算了预定时间之后的状态量。 未来事件预测单元基于通过状态量预测单元输入的状态量的预测信息来预测未来事件。 图像信息处理器将由状态量算术运算单元给出的状态量转换为图像信息,并在显示单元上指示图像信息。 图像信息处理器将由状态量预测单元给出的预定时间之后的预测状态量转换为图像信息,并在显示单元上指示图像信息。 图像信息处理器将未来事件预测单元预测的未来事件转换成图像信息,并在显示单元上指示图像信息。
    • 3. 发明授权
    • Plant monitoring and diagnosing method and system, as well as plant
equipped with the system
    • 植物监测和诊断方法和系统,以及配备该系统的植物
    • US5817958A
    • 1998-10-06
    • US691007
    • 1996-08-05
    • Shunsuke UchidaHaruo FujimoriFuminobu TakahashiTakaharu FukuzakiIzumi Yamada
    • Shunsuke UchidaHaruo FujimoriFuminobu TakahashiTakaharu FukuzakiIzumi Yamada
    • G21C7/36G21D3/04
    • G21D3/04G21C7/36Y02E30/39
    • Plant operating conditions 1, apparatus operating conditions 2 and environment conditions 3 are accumulated, combined and put together as a set of plant status variables 8 through a monitor 6, while water chemistry information 4 is accumulated as another set of plant status variables 9. The set of status variables 8 is updated and the past data are accumulated in the set of status variables 9. Periodical inspection data 5 are also accumulated in the set of status variables 9 along with the water chemistry information 4. The set 9 is compressed and stored as a plant chart 11 such as a personal clinical chart. A status variable prediction 12 is performed in consideration of the personality of a plant. Both data of the sets 8 and 10 are compared with each other by comparison means 13. If both the data nearly coincide with each other, the plant is diagnosed to the normal and, if not, it is diagnosed to be abnormal. When the plant is diagnosed to abnormal, an abnormal apparatus and an abnormal factor are identified.
    • 工厂操作条件1,设备操作条件2和环境条件3通过监控器6被累积,组合并作为一组工厂状态变量8组合,而水化学信息4被累积为另一组工厂状态变量9. 一组状态变量8被更新,过去的数据被累积在一组状态变量9中。定期检查数据5也与水化学信息4一起积累在状态变量组9中。集合9被压缩和存储 作为植物图11,如个人临床图表。 考虑到植物的个性来执行状态变量预测12。 通过比较装置13将组8和10的两个数据相互比较。如果这两个数据彼此几乎一致,则将该植物诊断为正常,如果不是则被诊断为异常。 当植物诊断为异常时,鉴定出异常装置和异常因素。
    • 7. 发明授权
    • Apparatus for displaying plant data
    • 用于显示植物数据的装置
    • US4149155A
    • 1979-04-10
    • US785850
    • 1977-04-08
    • Shoichi KishiTakaharu FukuzakiYukio Nagaoka
    • Shoichi KishiTakaharu FukuzakiYukio Nagaoka
    • G05B23/02G01D7/02G01R13/20G06F3/048G06F3/14G06F9/00G07C3/00G09G1/12G09G3/00G09G5/00G08B29/00
    • G01D7/02G01R13/208G07C3/00
    • A standard picture such as a circle, of which the magnitude can be varied in response to the present value of a main plant data signal (or significant data), is displayed in a picture-plane of a display means. The present values of a large amount of plant data being monitored is displayed along the above-mentioned standard picture. When all of the plant data represents the normal state to the present value of the significant data, a picture constructed by plotting spots which indicates the plant data in a picture plane of display means, may be identified with the standard picture. Thus, the present value of the significant data can be determined by the magnitude of the standard picture, and whether the plant state is normal or abnormal can be determined by the picture constructed by plotting the spots of the plant data.
    • 在显示装置的图像平面中显示诸如圆的标准图像,其大小可以响应于主工厂数据信号(或有效数据)的当前值而改变。 沿着上述标准图像显示正在监视的大量植物数据的当前值。 当所有工厂数据表示与有效数据的当前值的正常状态时,可以用标准画面来识别通过绘制指示显示装置的画面中的植物数据的斑点构成的图像。 因此,有效数据的当前值可以通过标准图像的大小来确定,并且可以通过绘制植物数据的斑点构建的图像来确定植物状态是正常还是异常。