Measuring system with a tube arrangement having two measuring tubes flowed through in parallel, as well as method for monitoring the arrangement
    52.
    发明授权
    Measuring system with a tube arrangement having two measuring tubes flowed through in parallel, as well as method for monitoring the arrangement 有权
    具有并排流过的两个测量管的管装置的测量系统以及用于监视装置的方法

    公开(公告)号:US08359933B2

    公开(公告)日:2013-01-29

    申请号:US12926396

    申请日:2010-11-16

    CPC classification number: G01F1/8477 G01F1/8431 G01F1/8436 G01F15/00 G01F15/14

    Abstract: For monitoring the tube arrangement, the measuring system of the invention includes, connected to the transmitter electronics, a temperature measuring arrangement having a first temperature sensor for producing a temperature signal dependent on a temperature of a first of the measuring tubes of the tube arrangement and at least a second temperature sensor for producing a temperature signal dependent on a temperature of a second of the measuring tubes of the tube arrangement. In the method of the invention, it is provided that, in the case of medium flowing through the tube arrangement, a temperature difference existing between the at least two measuring tubes as a result plugging is ascertained and, in case the ascertained temperature difference deviates from a predetermined limit value for the temperature difference representing a non-plugged tube arrangement, a partial plugging of the tube arrangement, especially a plugging of exactly one of the measuring tubes, is signaled.

    Abstract translation: 为了监测管装置,本发明的测量系统包括连接到变送器电子装置的温度测量装置,该温度测量装置具有第一温度传感器,用于产生取决于管装置的第一测量管的温度的温度信号;以及 至少第二温度传感器,用于产生取决于所述管装置的第二测量管的温度的温度信号。 在本发明的方法中,规定在介质流经管装置的情况下,确定存在于至少两个测量管之间的温度差,结果是堵塞,并且在确定的温差偏离 用于表示非插塞管装置的温度差的预定极限值,管配置的局部堵塞,特别是恰好一个测量管的堵塞。

    METHOD FOR MEDIA RELIVING PLAYBACK
    53.
    发明申请
    METHOD FOR MEDIA RELIVING PLAYBACK 有权
    播放媒体的方法

    公开(公告)号:US20120213493A1

    公开(公告)日:2012-08-23

    申请号:US13031347

    申请日:2011-02-21

    Abstract: A method for viewing a collection of images or videos, includes analyzing the collection to determine properties of the images or videos and using the determined properties to produce icons corresponding to such properties; providing a time-varying display of the images or videos in the collection following an ordering of the images or videos in the collection and at least one of the corresponding icons; receiving a user selection of an icon; changing the time-varying display of the images or videos in the collection following a reordering of the images or videos in the collection in response to the user selection; storing the sequence of the user selections and associated timing in a script in a processor accessible memory; and playing back the viewing of the collection of images or videos using the script.

    Abstract translation: 一种用于查看图像或视频的集合的方法,包括分析所述集合以确定所述图像或视频的属性,并使用所确定的属性来产生与所述属性对应的图标; 在所述集合中的图像或视频的排序和所述对应图标中的至少一个之后提供所述集合中的所述图像或视频的时变显示; 接收用户对图标的选择; 响应于用户选择,在对集合中的图像或视频进行重新排序之后,改变集合中的图像或视频的时变显示; 将用户选择的顺序和关联定时存储在处理器可访问存储器中的脚本中; 并使用该脚本播放图像或视频的收藏。

    Method for registering flow and a thermal, flow measuring device
    54.
    发明申请
    Method for registering flow and a thermal, flow measuring device 有权
    注射流量的方法和热流量测量装置

    公开(公告)号:US20120209543A1

    公开(公告)日:2012-08-16

    申请号:US13503380

    申请日:2010-08-17

    CPC classification number: G01F1/6842 G01F1/69 G01F1/72 G01P13/04

    Abstract: Method for operating a thermal, flow measuring device and a thermal, flow measuring device having a first sensor having a first heatable, resistance thermometer and at least one additional, second sensor having a second heatable, resistance thermometer, wherein a decision coefficient is calculated according to the formula DC=(PC1−PC2)/PC1, wherein PC1(t=t1)=(t1)/(T1,heated;actual(t=t1)−Tmedium;actual(t=t1)) and P2,2(t=t2)=P2,2(t2)/(T2,heated;actual(t=t2)−Tmedium;actual(t=t2)), with P being the heating powers absorbed by the corresponding resistance thermometers at the points in time t and the temperature values T, wherein the value of the decision coefficient shows flow direction of a measured medium in the measuring tube.

    Abstract translation: 一种用于操作热流量测量装置和具有第一传感器的热流量测量装置的方法,所述第一传感器具有第一可加热电阻温度计和具有第二可加热电阻温度计的至少一个另外的第二传感器,其中,根据 其中PC1(t = t1)=(t1)/(T1,加热;实际(t = t1)-Tmedium;实际(t = t1))和P2,2 (t = t2)= P2,2(t2)/(T2,加热;实际(t = t2)-Tmedium;实际(t = t2)),其中P是相应电阻温度计在点处吸收的加热功率 时间t和温度值T,其中决定系数的值表示测量管中测量介质的流动方向。

    Vibration-type measuring transducer as well as measuring device with such a measuring transducer
    55.
    发明授权
    Vibration-type measuring transducer as well as measuring device with such a measuring transducer 有权
    振动型测量传感器以及带测量传感器的测量装置

    公开(公告)号:US08113064B2

    公开(公告)日:2012-02-14

    申请号:US12805252

    申请日:2010-07-21

    CPC classification number: G01F1/8477 G01F1/8409 G01F1/8431

    Abstract: A measuring transducer comprising at least one measuring tube for conveying a flowing medium. The measuring tube vibrates at least at times during operation. A sensor arrangement, which serves to register oscillations of the at least one measuring tube. The measuring tube extends with an oscillatory length between an inlet-side, first measuring tube end, and an outlet-side, second measuring tube end, and, during operation, oscillates about an oscillation axis, which is parallel to or coincides with an imagined connecting axis which imaginarily connects the two measuring tube ends. By means of a first oscillation sensor, the sensor arrangement produces a first primary signal of the measuring transducer representing vibrations of the measuring tube, and by means of a second oscillation sensor the sensor arrangement produces a second primary signal of the measuring transducer representing vibrations of the measuring tube, wherein a length of a region of the first measuring tube extending between the first oscillation sensor and the second oscillation sensor defines a measuring length of the measuring transducer. The oscillation sensors of the sensor arrangement are placed in the measuring transducer in such a way that a measuring transducer sensitivity, SACT, referenced to a theoretical sensitivity at a maximum measuring length corresponding to the oscillatory length, as well as a signal amplitude, of the primary signals actually achieved during operation, referenced to a theoretically maximum possible signal amplitude, AMAX, at the location of maximum oscillation amplitude, fulfill the condition ℛ = A ACT A MAX · S ACT S MAX ⁢ = ! ⁢ Max .

    Abstract translation: 一种测量传感器,包括用于传送流动介质的至少一个测量管。 至少在操作过程中,测量管至少会振动。 传感器装置,其用于记录至少一个测量管的振荡。 测量管以入口侧,第一测量管端和出口侧,第二测量管端之间的振荡长度延伸,并且在操作期间围绕摆动轴振荡,该振荡轴与想象的平行或重合 连接轴,其连接两个测量管端。 通过第一振动传感器,传感器装置产生表示测量管振动的测量传感器的第一主信号,并且借助于第二振荡传感器,传感器装置产生测量传感器的第二主信号,其表示振动 所述测量管,其中在所述第一振动传感器和所述第二振动传感器之间延伸的所述第一测量管的区域的长度限定所述测量换能器的测量长度。 传感器装置的振荡传感器被放置在测量传感器中,使得测量传感器灵敏度SACT以与振荡长度相对应的最大测量长度的理论灵敏度以及信号幅度参考 在最大振荡幅度的位置以理论上最大可能的信号幅度AMAX为参考,实际实现的主信号满足条件ℛ= A ACT A MAX·S ACT S MAX =! 最大

    MEASURING SYSTEM HAVING A MEASURING TRANSDUCER OF VIBRATION-TYPE
    56.
    发明申请
    MEASURING SYSTEM HAVING A MEASURING TRANSDUCER OF VIBRATION-TYPE 有权
    具有振动型测量传感器的测量系统

    公开(公告)号:US20110154912A1

    公开(公告)日:2011-06-30

    申请号:US12979521

    申请日:2010-12-28

    Abstract: The measuring system comprises: A measuring transducer of vibration-type, through which medium flows during operation and which produces primary signals corresponding to parameters of the flowing medium; as well as a transmitter electronics electrically coupled with the measuring transducer for activating the measuring transducer and for evaluating primary signals delivered by the measuring transducer. The measuring transducer includes: At least one measuring tube for conveying flowing medium; at least one electro-mechanical, oscillation exciter for exciting and/or maintaining vibrations of the at least one measuring tube; as well as at least a first oscillation sensor for registering vibrations at least of the at least one measuring tube and for producing a first primary signal of the measuring transducer representing vibrations at least of the at least one measuring tube. The transmitter electronics, in turn, delivers at least one driver signal for the exciter mechanism for effecting vibrations of the at least one measuring tube and generates, by means of the first primary signal, as well as with application of a damping, measured value, which represents an excitation power required for maintaining vibrations of the at least one measuring tube, and, respectively, a damping of vibrations of the at least one measuring tube as a result of inner friction in the medium flowing in the measuring transducer, a pressure difference, measured value, which represents a pressure difference occurring between two predetermined reference points in the flowing medium.

    Abstract translation: 测量系统包括:振动型测量传感器,介质在操作期间流动,并产生对应于流动介质参数的主要信号; 以及与用于激活测量换能器并用于评估由测量传感器传递的主要信号的测量传感器电耦合的发射机电子设备。 测量传感器包括:用于输送流动介质的至少一个测量管; 至少一个机电振荡激励器,用于激励和/或保持所述至少一个测量管的振动; 以及至少第一振荡传感器,用于至少记录至少一个测量管的振动,并且用于产生表示所述至少一个测量管中至少一个测量管的振动的测量换能器的第一主信号。 传感器电子装置又为激励器机构提供至少一个驱动信号,以实现至少一个测量管的振动,并且借助于第一主信号以及施加阻尼测量值, 其表示维持至少一个测量管的振动所需的激励功率,以及分别由于在测量换能器中流动的介质中的内摩擦而导致的至少一个测量管的振动的阻尼,压力差 测量值,其表示在流动介质中的两个预定参考点之间出现的压力差。

    Measuring transducer of a vibration-type
    59.
    发明申请
    Measuring transducer of a vibration-type 有权
    振动型测量传感器

    公开(公告)号:US20100031755A1

    公开(公告)日:2010-02-11

    申请号:US12458949

    申请日:2009-07-28

    CPC classification number: G01F1/8495 G01F1/8413

    Abstract: A measuring transducer comprises a measuring tube vibrating at least at times during operation, having a wall thickness (s) and at least one oscillation sensor, especially an electrodynamic oscillation sensor, for producing at least one primary signal of the measuring transducer representing vibrations of the measuring tube. In the measuring transducer at least one securement element, especially a metal securement element, fixedly encircling the measuring tube essentially along a circumferential line thereof and having a total width (B), for holding a component of the oscillation sensor, especially a magnet coil or a permanent magnet, on the measuring tube is provided. The securement element has an essentially rectangular outer perimeter with a projection protruding out therefrom by a height (h) and serving for holding the component of the oscillation sensor. The projection has a width (e), which is smaller than the total width (B) of the securement element.

    Abstract translation: 测量传感器包括至少在操作期间振动的测量管,具有壁厚和至少一个振荡传感器,特别是电动振动传感器,用于产生表示振动的测量传感器的至少一个主信号 测量管。 在测量传感器中,至少一个固定元件,特别是金属固定元件,基本上沿其圆周线固定地围绕测量管并具有总宽度(B),用于保持振荡传感器,特别是磁体线圈或 设置在测量管上的永磁体。 固定元件具有基本上矩形的外周边,具有从其突出高度(h)的突出部,并且用于保持振动传感器的部件。 突起的宽度(e)小于固定元件的总宽度(B)。

    BIT ERROR MANAGEMENT METHODS FOR WIRELESS AUDIO COMMUNICATION CHANNELS
    60.
    发明申请
    BIT ERROR MANAGEMENT METHODS FOR WIRELESS AUDIO COMMUNICATION CHANNELS 有权
    无线音频通信通道的位错误管理方法

    公开(公告)号:US20090282298A1

    公开(公告)日:2009-11-12

    申请号:US12431184

    申请日:2009-04-28

    CPC classification number: G10L19/005 H04L1/0045

    Abstract: Systems and methods are described for managing bit errors present in an encoded bit stream representative of a portion of an audio signal, wherein the encoded bit stream is received via a channel in a wireless communications system. The channel may comprise, for example, a Synchronous Connection-Oriented (SCO) channel or an Extended SCO (eSCO) channel in a Bluetooth wireless communications system.

    Abstract translation: 描述了用于管理存在于表示音频信号的一部分的编码比特流中的比特错误的系统和方法,其中经由无线通信系统中的信道接收编码比特流。 该信道可以包括例如蓝牙无线通信系统中的同步面向连接(SCO)信道或扩展SCO(eSCO)信道。

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