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    • 2. 发明申请
    • METHOD AND SYSTEM FOR ENHANCED HELP INSTRUCTIONS
    • 用于增强帮助指令的方法和系统
    • WO2013101360A1
    • 2013-07-04
    • PCT/US2012/065461
    • 2012-11-16
    • PITNEY BOWES INC.ZHANG, JunHONG, ZhenanANDREWS, David LWU, YulingCORDERY, Robert A
    • ZHANG, JunHONG, ZhenanANDREWS, David LWU, YulingCORDERY, Robert A
    • G06F15/177
    • G06F11/0772
    • A computerized method and system for providing enhanced help messages for equipment operation is described herein. A device having a processor automatically detects an error condition in the device, and determines that the error condition requires operator action. An appropriate message is selected that indicates a required operator action corresponding to the error condition. The message is configured to include a scannable barcode. The scannable barcode includes a website link to a website having more detailed information to assist an operator in performing the operator action. The message is displayed on a screen so that the operator can scan the barcode with his mobile device, and see the more detailed information on how to perform the required operator action. Alternatively, the message is configured as radio frequency data to be transmitted by the equipment using near field communication (NFC) technology to a mobile device having an NFC receiver.
    • 本文描述了一种用于为设备操作提供增强的帮助消息的计算机化方法和系统。 具有处理器的设备自动检测设备中的错误状况,并确定错误状况需要操作员操作。 选择一个适当的消息,指示与错误条件对应的所需操作员动作。 消息被配置为包括可扫描条形码。 可扫描条形码包括具有更详细信息的网站的网站链接,以帮助操作者执行操作者动作。 消息显示在屏幕上,以便操作员可以使用其移动设备扫描条形码,并查看有关如何执行所需操作员操作的更详细信息。 或者,该消息被配置为要由使用近场通信(NFC)技术的设备发射到具有NFC接收机的移动设备的射频数据。
    • 9. 发明申请
    • MONITORING FLUID FLOW IN A CONDUIT
    • 监测流体中的流体流动
    • WO2011070343A2
    • 2011-06-16
    • PCT/GB2010/051955
    • 2010-11-24
    • ATMOS WAVE LIMITEDHOFFMAN, AndrewZHANG, Jun
    • HOFFMAN, AndrewZHANG, Jun
    • G01M3/2807F17D5/04G01F1/34G01F1/712G01F1/74G01M3/2815
    • According to the present invention, there is provided a method of monitoring a fluid in a fluid carrying conduit comprising the steps of: monitoring a fluid characteristic at a first point and second point along the conduit substantially continuously; determining first and second quantities, being related to a differential with respect to time of the value of the fluid characteristic at the first and second points respectively; combining the first and second quantities to produce a two dimensional intensity function of time and a position variable and analysing the magnitude of the intensity function to derive information relating to the fluid. The intensity function may represent a substantially continuous probability function, wherein its absolute value is related to the probability of a leak or theft having occurred in the conduit. Furthermore, a method of determining the presence and location of leaks in, or thefts from, the conduit by determining whether or not the magnitude of the intensity function satisfies pre-determined criteria is disclosed. A method of determining the speed of pressure waves propagating through a fluid flowing in a fluid carrying conduit by analysing the two dimensional intensity function is also disclosed. An apparatus suitable for performing all of the above mentioned methods is also claimed.
    • 根据本发明,提供了一种监测流体输送管道中的流体的方法,包括以下步骤:基本上连续地沿着管道在第一点和第二点监测流体特性; 确定第一和第二量,分别与第一和第二点处的流体特性的值相对于时间的差异相关; 组合第一和第二数量以产生时间和位置变量的二维强度函数,并且分析强度函数的大小以导出与流体相关的信息。 强度函数可以表示基本上连续的概率函数,其中其绝对值与在导管中发生泄漏或盗窃的可能性有关。 此外,公开了一种通过确定强度函数的大小是否满足预定标准来确定管道中的泄漏存在和位置以及来自导管的方法。 还公开了一种通过分析二维强度函数来确定在流体输送导管中流动的流体传播的压力波的速度的方法。 还要求保护适于执行所有上述方法的装置。