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    • 1. 发明申请
    • A METHOD AND SYSTEM FOR CALIBRATING RESONATING PRESSURE SENSORS AND CALIBRATABLE RESONATING PRESSURE SENSORS
    • 用于校准共振压力传感器和可校准共振压力传感器的方法和系统
    • WO2005024367A3
    • 2005-11-17
    • PCT/IL2004000807
    • 2004-09-07
    • MICROSENSE CARDIOVASCULAR SYSMELAMUD ALEXANDERLOKCHINE STANISLAVGIRMONSKI DORONKAPLAN SHAY
    • MELAMUD ALEXANDERLOKCHINE STANISLAVGIRMONSKI DORONKAPLAN SHAY
    • A61B5/0215A61B8/04G01L20060101G01L9/00G01L27/00
    • A61B8/04A61B5/0215A61B2560/0223A61B2562/02G01L9/0016G01L27/002
    • A calibratable pressure sensor group having a working pressure range. The sensor group may include a first resonating pressure sensor having a single resonance frequency extremum point at a known flipping point pressure value within a working pressure range, and at least a second resonating pressure sensor having a single resonance frequency extremum point at another different flipping point pressure value within the working pressure range. Methods for calibrating the sensor groups may include measuring the resonance frequency of the first sensor at the known flipping point pressure values of the first sensor and second sensor, measuring the resonance frequency of the second sensor at the flipping point pressure value of the first sensor, measuring the resonance frequency of the first sensor at the flipping point pressure value of the second sensor and computing calibration curve parameters for one or more of the sensors in the sensor group. For a periodically varying pressure the measurements may be repeated for multiple cycles and averaged values may be used in the computations. Methods and systems are provided for calibrating sensors of the group.
    • 具有工作压力范围的可校准压力传感器组。 传感器组可以包括在工作压力范围内具有已知翻转点压力值的单个共振频率极值点的第一谐振压力传感器,以及在另一不同翻转点处具有单个共振频率极值点的至少第二谐振压力传感器 工作压力范围内的压力值。 用于校准传感器组的方法可以包括以第一传感器和第二传感器的已知翻转点压力值测量第一传感器的共振频率,在第一传感器的翻转点压力值处测量第二传感器的共振频率, 在第二传感器的翻转点压力值处测量第一传感器的共振频率,并计算传感器组中的一个或多个传感器的校准曲线参数。 对于周期性变化的压力,可以对多个周期重复测量,并且可以在计算中使用平均值。 提供了用于校准组的传感器的方法和系统。
    • 2. 发明申请
    • WIRELESS SYSTEM FOR MEASURING PRESSURE AND FLOW IN TUBES
    • 用于测量管道中的压力和流量的无线系统
    • WO2004031709A3
    • 2004-07-22
    • PCT/US0331326
    • 2003-10-02
    • KAIN ARON ZEV
    • KAIN ARON ZEV
    • G01L20060101G01M3/24G08B23/00
    • G01M3/24
    • A remote sensor (100) is remotely placed within a vessel containing a fluid in order to sense a pressure generated by the fluid. The sensor includes an antenna (10) for capturing an externally-generated interrogation signal and for transmitting a response signal, a response circuit (20, 30) coupled to the antenna (10) for receiving the interrogation signal and for generating the response signal, and a sensor element (40) coupled to the response circuit. One or more electrical characteristics of the response circuit (20, 30) change in relation to the sensed pressure, thereby determining measurable characteristics of the response signal. Importantly, the response circuit (20, 30) operates to delay the transmission of the response signal to a time separated from and following transmission of artifacts of the interrogation signal.
    • 远程传感器(100)远程放置在容纳流体的容器中,以便感测由流体产生的压力。 传感器包括用于捕获外部产生的询问信号并发送响应信号的天线(10),耦合到天线(10)的响应电路(20,30),用于接收询问信号并产生响应信号, 以及耦合到所述响应电路的传感器元件(40)。 响应电路(20,30)的一个或多个电特性相对于检测到的压力而变化,从而确定响应信号的可测量特性。 重要的是,响应电路(20,30)用于将响应信号的传输延迟到与传送询问信号的伪影分离的时间。
    • 6. 发明申请
    • AUTOMATED TRANSCRIPTION SYSTEM AND METHOD USING TWO SPEECH CONVERTING INSTANCES AND COMPUTER-ASSISTED CORRECTION
    • 自动转录系统和使用两个语音转换器和计算机辅助校正的方法
    • WO00049601A1
    • 2000-08-24
    • PCT/US2000/004210
    • 2000-02-18
    • G06F3/16G01L20060101G06F12/00G06F17/30G10L20060101G10L15/00G10L15/18G10L15/22G10L15/26G10L15/28
    • G01L1/00G06F3/16G06F12/00G06F17/30G10L15/00G10L15/18G10L15/22G10L15/26G10L15/28
    • A system for substantially automating transcription services for one or more voice users is disclosed. This system receives a voice dictation file from a current user, which is automatically converting into a first written text based on a first set of conversion variables. The same voice dictation file is automatically converted into a second written text based on a second set of conversion variables. The first and second sets of conversion variables have at least one difference, such as different speech recognition programs, different vocabularies, and the like. The system further includes a program for manually editing a copy of the first and second written texts to create a verbatim text of the voice dictation file (40). This verbatim text can then be delivered to the current user as transcribed text. The verbatim text can also be fed back into each speech recognition instance toward improving the accuracy of each instance with respect to the human voice in the file.
    • 公开了一种用于使一个或多个语音用户基本自动化转录服务的系统。 该系统从当前用户接收语音听写文件,该语音听写文件基于第一组转换变量自动转换成第一写入文本。 基于第二组转换变量,相同的语音听写文件被自动地转换成第二写入文本。 第一组和第二组转换变量具有至少一个差异,例如不同的语音识别程序,不同的词汇等。 该系统还包括用于手动编辑第一和第二书写文本的副本以创建语音听写文件(40)的逐字文本的程序。 然后,这个逐字文本可以作为转录文本传递给当前用户。 逐字文本也可以反馈到每个语音识别实例中,以提高每个实例相对于文件中的人声的准确性。
    • 7. 发明申请
    • TRANSMISSION/DISTRIBUTION LINE FAULT INDICATOR WITH REMOTE POLLING AND CURRENT SENSING AND REPORTING CAPABILITY
    • 传输/分配线故障指示器,具有远程检测和电流检测和报告能力
    • WO2005059491A3
    • 2006-09-28
    • PCT/US2004042608
    • 2004-12-13
    • JOSLYN HI VOLTAGE CORPDONOVAN DAVID LJOYCE ROBERT ESABADOS LANCE P
    • DONOVAN DAVID LJOYCE ROBERT ESABADOS LANCE P
    • H04M11/04G01L20060101G08B21/00
    • H02G7/00G01R31/085G08C25/00
    • The present invention includes a fault indicator (12) for an electrical transmission line (10) comprising: a fault indicator circuit; and a remote communicator operatively coupled to the fault indicator circuit to transmit condition data to a remote location (14), where such condition data includes current load data. The invention also includes a method of monitoring and responding to current faults and load variations across an electrical transmission network (16), the method comprising: insulating two fault indicators (12) in electrical communication with an electrical transmission network (16) and including two-way communication capability: generating, by the two fault directors (12), condition data specific to a respective location of each of the two fault indicators (12), where such condition data includes current load data; transmitting the condition data from the two fault indicators (12) to a remote location (18); receiving, at the remote location (18), the condition data transmitted from the two fault indicators (12); and, monitoring and processing the condition data received.
    • 本发明包括用于电力传输线(10)的故障指示器(12),包括:故障指示器电路; 以及可操作地耦合到所述故障指示器电路以将条件数据发送到远程位置(14)的远程通信器,其中所述条件数据包括当前负载数据。 本发明还包括一种监测和响应电气传输网络(16)上的当前故障和负载变化的方法,所述方法包括:将两个故障指示器(12)与电气传输网络(16)进行电气通信,并且包括两个 - 通信能力:由两个故障指令(12)产生特定于两个故障指示器(12)中的每一个的相应位置的条件数据,其中这些条件数据包括当前负载数据; 将所述条件数据从所述两个故障指示器(12)发送到远程位置(18); 在所述远程位置(18)处接收从所述两个故障指示器(12)发送的条件数据; 以及监视和处理接收到的条件数据。
    • 8. 发明申请
    • RADIAL EXPANSION FORCE MEASUREMENT TECHNOLOGY
    • 径向膨胀力测量技术
    • WO2005047839A3
    • 2005-10-27
    • PCT/US2004037481
    • 2004-11-10
    • MACH SOLUTIONS INCGOFF EDWARDMOTSENBOCKER TOM
    • GOFF EDWARDMOTSENBOCKER TOM
    • A47K1/00F16L3/08G01L20060101G01L7/10G01N3/00G01N3/02G01N3/08
    • G01N3/08G01L5/166G01N2203/0017G01N2203/0037G01N2203/021G01N2203/027
    • An apparatus for measuring force, particularly the radial expansion force or hoop force associated with a stmt or other article. The apparatus comprises an article engagement mechanism. The article engaging mechanism includes at least one stationary plate member; at least one rotatable force collector member which is moveable in relation to the stationary member, and a plurality of force element segments, each having a predetermined wedge shape with a proximal end and a distal end. Each segment also has a distal point which is pivotally coupled to the stationary plate member and a proximal point which is pivotally coupled to the rotatable force collector member. The segments are arranged so that the segment distal ends are disposed adjacent a central aperture into which the article is placed. The segment distal ends move to engage the article upon rotation of the rotatable member in a predetermined direction. The apparatus further includes an actuator for rotating the rotatable force collector member; and a transducer communicatively connected to the actuator for detecting force associated with rotating the rotatable member, and hence the force elements to engage the article. A method of detecting force associated with an article is also disclosed. The method comprises the steps of providing an article engagement mechanism having a design of the apparatus. An article is placed in the central aperture. An engaging force is applied to the article with the distal ends of the segments by rotating the force collector. The force required to rotate the force collector, and hence move the force elements against the article is used as a measure of radial expansion force of the article.
    • 用于测量力的装置,特别是与一个或多个物品相关联的径向膨胀力或箍筋。 该装置包括物品接合机构。 物品接合机构包括至少一个固定板构件; 至少一个相对于固定构件可移动的可旋转的力收集构件,以及多个力元件段,每个力元件段具有预定的楔形形状,其具有近端和远端。 每个段还具有枢转地联接到固定板构件的远端点和枢转地联接到可旋转的力收集构件的近端点。 这些片段被布置成使得片段远端邻近放置物品的中心孔设置。 当可旋转构件沿预定方向旋转时,段远端移动以接合物品。 该装置还包括用于使可转动的力收集器构件旋转的致动器; 以及传感器,其通信地连接到致动器,用于检测与旋转可旋转构件旋转相关联的力,并且因此用于接合制品的力元件。 还公开了一种检测与制品相关联的力的方法。 该方法包括提供具有设备设计的物品接合机构的步骤。 一件物品放置在中央孔中。 通过使力收集器旋转,通过片段的远端将制品施加到制品上。 用于旋转力收集器并因此将力元件抵靠制品移动所需的力被用作制品的径向膨胀力的量度。