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    • 1. 发明授权
    • Multiple temperature sensor system
    • 多温度传感器系统
    • US09448124B2
    • 2016-09-20
    • US13883113
    • 2010-11-16
    • Paul J HaysCraig B. McAnallyAndrew S. Kravitz
    • Paul J HaysCraig B. McAnallyAndrew S. Kravitz
    • G01K7/16G01K3/04G01K13/00G01F1/84G01K1/02G01K7/20G01F15/02
    • G01K13/00G01F1/84G01F1/8418G01F1/8431G01F1/8436G01F1/8468G01F1/849G01F15/022G01K1/026G01K7/20
    • A multiple temperature sensor system (120) includes a temperature sensor network (180) including temperature-sensing resistors RT1 and RT2 (186, 187) and frequency-selective filters (184, 185) coupled to the plurality of temperature-sensing resistors RT1 and RT2 (186, 187). The frequency-selective filters (184, 185) pass distinct time-varying signals into the temperature sensor network (180) and pass attenuated distinct time-varying signals out. The system (120) further includes a temperature measurement N controller (161) coupled to the temperature sensor network (180) and configured to inject the distinct time-varying signals into the temperature sensor network (180), receive the attenuated distinct time-varying signals in response to the injection, with the attenuated distinct time-varying signals being attenuated by the temperature sensing resistors (186, 187), and generate two or more substantially simultaneous temperature values from the attenuated distinct time-varying signals.
    • 多温度传感器系统(120)包括温度传感器网络(180),温度传感器网络(180)包括耦合到多个温度感测电阻器RT1的温度感测电阻器RT1和RT2(186,187)和频率选择滤波器(184,185) RT2(186,187)。 频率选择滤波器(184,185)将不同的时变信号传递到温度传感器网络(180)中,并且通过衰减的不同时变信号。 系统(120)还包括耦合到温度传感器网络(180)并被配置为将不同的时变信号注入到温度传感器网络(180)中的温度测量N控制器(161),接收衰减的不同时变 响应于注入的信号,衰减的不同时变信号被温度感测电阻器(186,187)衰减,并且从衰减的不同时变信号产生两个或更多个基本上同时的温度值。
    • 2. 发明申请
    • MULTIPLE TEMPERATURE SENSOR SYSTEM
    • 多温度传感器系统
    • US20130223480A1
    • 2013-08-29
    • US13883113
    • 2010-11-16
    • Paul J HaysCraig B. McAnallyAndrew S. Kravitz
    • Paul J HaysCraig B. McAnallyAndrew S. Kravitz
    • G01K13/00G01F1/84
    • G01K13/00G01F1/84G01F1/8418G01F1/8431G01F1/8436G01F1/8468G01F1/849G01F15/022G01K1/026G01K7/20
    • A multiple temperature sensor system (120) includes a temperature sensor network (180) including temperature-sensing resistors RT1 and RT2 (186, 187) and frequency-selective filters (184, 185) coupled to the plurality of temperature-sensing resistors RT1 and RT2 (186, 187). The frequency-selective filters (184, 185) pass distinct time-varying signals into the temperature sensor network (180) and pass attenuated distinct time-varying signals out. The system (120) further includes a temperature measurement N controller (161) coupled to the temperature sensor network (180) and configured to inject the distinct time-varying signals into the temperature sensor network (180), receive the attenuated distinct time-varying signals in response to the injection, with the attenuated distinct time-varying signals being attenuated by the temperature sensing resistors (186, 187), and generate two or more substantially simultaneous temperature values from the attenuated distinct time-varying signals.
    • 多温度传感器系统(120)包括温度传感器网络(180),温度传感器网络(180)包括耦合到多个温度感测电阻器RT1的温度感测电阻器RT1和RT2(186,187)和频率选择滤波器(184,185) RT2(186,187)。 频率选择滤波器(184,185)将不同的时变信号传递到温度传感器网络(180)中,并且通过衰减的不同时变信号。 系统(120)还包括耦合到温度传感器网络(180)并被配置为将不同的时变信号注入到温度传感器网络(180)中的温度测量N控制器(161),接收衰减的不同时变 响应于注入的信号,衰减的不同时变信号被温度感测电阻器(186,187)衰减,并且从衰减的不同时变信号产生两个或更多个基本上同时的温度值。
    • 4. 发明授权
    • Flow meter and method for detecting a cable fault in a cabling of the flow meter
    • 用于检测流量计布线中的电缆故障的流量计和方法
    • US08135552B2
    • 2012-03-13
    • US13084992
    • 2011-04-12
    • Paul J HaysCraig B McAnally
    • Paul J HaysCraig B McAnally
    • G01D18/00G01R31/00
    • G01F15/024G01F1/8413G01F1/8436G01F1/8477G01F25/0007
    • A method for detecting a cable fault in a cabling of a flow meter is provided according to an embodiment of the invention. The method includes testing one or more first pickoff wires and one or more second pickoff wires of the cabling for pickoff open wire faults. The method further includes testing the first pickoff wires and the second pickoff wires for pickoff connection orientation faults if no pickoff open wire faults are determined in the first pickoff wires and the second pickoff wires. The method further includes testing one or more driver wires of the cabling for driver open wire faults. The method further includes testing the driver wires for a driver connection orientation fault if no driver open wire faults are determined in the driver wires.
    • 根据本发明的实施例提供了一种用于检测流量计布线中的电缆故障的方法。 该方法包括测试用于拾取断开线故障的布线的一个或多个第一检测线和一个或多个第二检测线。 该方法还包括如果在第一检测线和第二检测线中确定没有检出断线故障,则测试第一检测线和第二检测线用于检测连接取向故障。 该方法还包括测试用于驱动器开路故障的布线的一个或多个驱动器线。 该方法还包括如果在驱动器线中没有确定驱动器断线故障,则测试用于驱动器连接取向故障的驱动器线。
    • 10. 发明授权
    • Method and apparatus for determining a zero offset in a vibrating flow meter
    • 用于确定振动流量计中零点偏移的方法和装置
    • US08720281B2
    • 2014-05-13
    • US13388488
    • 2009-08-12
    • Paul J HaysJoel Weinstein
    • Paul J HaysJoel Weinstein
    • G01F1/84
    • G01F1/8477G01F1/8436G01F15/024G01F25/0007
    • A method and apparatus for operating a vibrating flow meter is provided. The method comprises the steps of receiving sensor signals from the vibrating flow meter and determining a current zero offset for the vibrating flow meter. The current zero offset can be determined based on the received sensor signals. The method also comprises the step of determining one or more current operating conditions. The one or more current operating conditions can be compared to one or more previous operating conditions of the offset correlation. The method also includes the step of generating an average zero offset if the offset correlation includes a previously determined zero offset corresponding to the current operating conditions. The average zero offset can be based on the current zero offset and the previously determined zero offset.
    • 提供了一种操作振动流量计的方法和装置。 该方法包括从振动流量计接收传感器信号并确定振动流量计的当前零点偏移的步骤。 可以基于所接收的传感器信号来确定当前的零点偏移。 该方法还包括确定一个或多个当前操作条件的步骤。 可以将一个或多个当前操作条件与偏移相关的一个或多个先前操作条件进行比较。 该方法还包括产生平均零偏移的步骤,如果偏移相关包括与当前操作条件相对应的先前确定的零偏移。 平均零点偏移可以基于当前零点偏移和先前确定的零点偏移。