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    • 1. 发明申请
    • PULSOMETER WORN ON WRIST AND ASSOCIATED CONTROL METHOD
    • 压力计在手表和相关控制方法上
    • US20080019218A1
    • 2008-01-24
    • US11781348
    • 2007-07-23
    • Francois KlopfensteinRolf VetterPhilippe ReneveyVictor NeumanChristophe Verjus
    • Francois KlopfensteinRolf VetterPhilippe ReneveyVictor NeumanChristophe Verjus
    • G04C17/00
    • A61B5/02416A61B5/02438A61B5/0245
    • The invention proposes a pulsometer (10) comprising a case (14) which contains an electronic optical pulse measuring device (18) and an electronic circuit, a tightening wristband (16) which holds the back cover of the case (14) pressed against the wrist (12), characterized in that the electronic optical measuring device (18) includes at least two light sources (E1, E2, E3) and at least two receivers (R1, R2, R3), in that the light sources (E1, E2, E3) and the receivers (R1, R2, R3) are arranged in the form of a matrix comprising two lines (L1, L2) each oriented along an orthogonal direction to the direction (D1) of the wrist (12), and at least two columns (C1, C2, C3), oriented parallel to the direction (D1) of the wrist (12), in that each line (L1, L2) of the matrix alternately contains a light source (E1, E2, E3) and a receiver (R1, R2, R3), and each column (C1, C2, C3) of the matrix contains a light source (E1, E2, E3) and a receiver (R1, R2, R3). The invention also proposes a control method for this pulsometer (10).
    • 本发明提出了一种脉冲发生器(10),其包括容纳电子光学脉冲测量装置(18)的壳体(14)和电子电路,紧固腕带(16),其保持壳体(14)的后盖抵抗 手腕(12),其特征在于,电子光学测量装置(18)包括至少两个光源(E 1,E 2,E 3)和至少两个接收器(R 1,R 2,R 3),其中 光源(E 1,E 2,E 3)和接收器(R 1,R 2,R 3)以矩阵的形式布置,包括沿着正交方向取向的两条线(L 1,L 2) 沿着手腕(12)的方向(D1)和平行于腕部(12)的方向(D 1)定向的至少两列(C 1,C 2,C 3) (L 1,L 2)交替地包含光源(E 1,E 2,E 3)和接收器(R 1,R 2,R 3)和每列(C 1,C 2,C 3)的矩阵包含光源 (E 1,E 2,E 3)和接收器(R 1,R 2,R 3)。 本发明还提出了一种用于该脉动计(10)的控制方法。
    • 2. 发明授权
    • Method and apparatus to define the velocity of a flowing fluid
    • 定义流动流体速度的方法和装置
    • US08451436B2
    • 2013-05-28
    • US12742849
    • 2008-11-13
    • Christophe VerjusPhilippe ReneveyVictor Neuman
    • Christophe VerjusPhilippe ReneveyVictor Neuman
    • G01J1/00G01N21/00
    • G01F1/6884G01F1/6847
    • To determine as precisely as possible the flow rate of a liquid flow inside a tube by means of minimal technical and especially minimal apparatus complexity the invention provides with a procedure and an apparatus to determine it. In this process the liquid is heated by means of an optical heating beam while the point of heating is shown through by an optical detection ray. The axis of the heating- and the detection beam coincide at least in the point of heating. The detection beam is absorbed via an array of detectors. In the apparatus the heating device which heats the interior area of a limited internal area of the liquid and the optical control unit of the laser beam are arranged that way that a measuring beam shines through the absolute heating point.
    • 为了尽可能精确地确定管内的液体流的流速,通过最小的技术特别是最小的设备复杂性,本发明提供了一种确定它的过程和装置。 在该过程中,通过光学加热束加热液体,同时通过光学检测光线显示加热点。 加热轴和检测轴至少在加热点重合。 检测光束通过一组检测器吸收。 在该设备中,加热液体的有限内部区域的内部区域和激光束的光学控制单元的加热装置被布置成使得测量光束通过绝对加热点照射。
    • 4. 发明授权
    • Method for processing audio-signals
    • 音频信号处理方法
    • US07761291B2
    • 2010-07-20
    • US10568610
    • 2004-08-19
    • Philippe ReneveyPhilippe VuadensRolf VetterStephan Dasen
    • Philippe ReneveyPhilippe VuadensRolf VetterStephan Dasen
    • G10L21/02
    • G10L21/0272G10L2021/065H04R3/005H04R25/407H04R25/505H04R25/552H04R2225/43
    • The invention regards a method for processing audio-signals whereby audio signals are captured at two spaced apart locations and subject to a transformation in the perceptual domain (Bar or Mel), whereupon: a) a (blind or supervised) source separation process is performed to give a first estimate of the wanted signal parts and the noise parts of the microphone signals and b) a coherence based separation process is performed to give a second estimate of the wanted signal parts and the noise parts of the microphone signals, and where further a sound field diffuseness detection is performed on the at least two signals, whereby further the sound field diffuseness detections is used to mix the output from the blind source separation and the coherence based separation process in order to achieve the best possible signal. The transfer functions calculated from the source separation are used to reconstruct a virtual stereophonic sound field in restore the spatial information about the source position in the enhanced signals.
    • 本发明涉及一种用于处理音频信号的方法,由此在两个间隔开的位置处捕获音频信号,并且在感知域(Bar或Mel)中进行变换,于是:a)执行(盲目或被监督)源分离处理 给出麦克风信号的有用信号部分和噪声部分的第一估计,以及b)执行基于相干的分离处理,以给出麦克风信号的有用信号部分和噪声部分的第二估计,并且其中进一步 对至少两个信号执行声场扩散检测,由此进一步使用声场扩散检测来混合来自盲源分离的输出和基于相干的分离过程,以便实现最佳可能的信号。 从源分离算出的传递函数用于重构虚拟立体声声场,以恢复增强信号中源位置的空间信息。
    • 5. 发明授权
    • Pulsometer worn on wrist and associated control method
    • 佩戴在手腕上的脉搏计和相关控制方法
    • US07372778B2
    • 2008-05-13
    • US11781348
    • 2007-07-23
    • François KlopfensteinRolf VetterPhilippe ReneveyVictor NeumanChristophe Verjus
    • François KlopfensteinRolf VetterPhilippe ReneveyVictor NeumanChristophe Verjus
    • G04B47/00A61B5/02
    • A61B5/02416A61B5/02438A61B5/0245
    • The invention proposes a pulsometer (10) comprising a case (14) which contains an electronic optical pulse measuring device (18) and an electronic circuit, a tightening wristband (16) which holds the back cover of the case (14) pressed against the wrist (12), characterized in that the electronic optical measuring device (18) includes at least two light sources (E1, E2, E3) and at least two receivers (R1, R2, R3), in that the light sources (E1, E2, E3) and the receivers (R1, R2, R3) are arranged in the form of a matrix comprising two lines (L1, L2) each oriented along an orthogonal direction to the direction (D1) of the wrist (12), and at least two columns (C1, C2, C3), oriented parallel to the direction (D1) of the wrist (12), in that each line (L1, L2) of the matrix alternately contains a light source (E1, E2, E3) and a receiver (R1, R2, R3), and each column (C1, C2, C3) of the matrix contains a light source (E1, E2, E3) and a receiver (R1, R2, R3).The invention also proposes a control method for this pulsometer (10).
    • 本发明提出了一种脉冲发生器(10),其包括容纳电子光学脉冲测量装置(18)的壳体(14)和电子电路,紧固腕带(16),其保持壳体(14)的后盖抵抗 手腕(12),其特征在于,电子光学测量装置(18)包括至少两个光源(E 1,E 2,E 3)和至少两个接收器(R 1,R 2,R 3),其中 光源(E 1,E 2,E 3)和接收器(R 1,R 2,R 3)以矩阵的形式布置,包括沿着正交方向取向的两条线(L 1,L 2) 沿着手腕(12)的方向(D1)和平行于腕部(12)的方向(D 1)定向的至少两列(C 1,C 2,C 3) (L 1,L 2)交替地包含光源(E 1,E 2,E 3)和接收器(R 1,R 2,R 3)和每列(C 1,C 2,C 3)的矩阵包含光源 (E 1,E 2,E 3)和接收器(R 1,R 2,R 3)。 本发明还提出了一种用于该脉动计(10)的控制方法。
    • 6. 发明申请
    • Method for processing audio-signals
    • 音频信号处理方法
    • US20070100605A1
    • 2007-05-03
    • US10568610
    • 2004-08-19
    • Philippe ReneveyPhillippe VuadensRolf VetterStephan Dasen
    • Philippe ReneveyPhillippe VuadensRolf VetterStephan Dasen
    • G10L21/00
    • G10L21/0272G10L2021/065H04R3/005H04R25/407H04R25/505H04R25/552H04R2225/43
    • The invention regards a method for processing audio-signals whereby audio signals are captured at two spaced apart locations and subject to a transformation in the perceptual domain (Bar or Mel), whereupon: a) a (blind or supervised) source separation process is performed to give a first estimate of the wanted signal parts and the noise parts of the microphone signals and b) a coherence based separation process is performed to give a second estimate of the wanted signal parts and the noise parts of the microphone signals, and where further a sound field diffuseness detection is performed on the at least two signals, whereby further the sound field diffuseness detections is used to mix the output from the blind source separation and the coherence based separation process in order to achieve the best possible signal. The transfer functions calculated from the source separation are used to reconstruct a virtual stereophonic sound field in restore the spatial information about the source position in the enhanced signals.
    • 本发明涉及一种用于处理音频信号的方法,由此在两个间隔开的位置处捕获音频信号,并且在感知域(Bar或Mel)中进行变换,于是:a)执行(盲目或被监督)源分离处理 给出麦克风信号的有用信号部分和噪声部分的第一估计,以及b)执行基于相干的分离处理,以给出麦克风信号的有用信号部分和噪声部分的第二估计,并且其中进一步 对至少两个信号执行声场扩散检测,由此进一步使用声场扩散检测来混合来自盲源分离的输出和基于相干的分离过程,以便实现最佳可能的信号。 从源分离算出的传递函数用于重构虚拟立体声声场,以恢复增强信号中源位置的空间信息。
    • 8. 发明授权
    • Method and device for pulse rate detection
    • 用于脉率检测的方法和装置
    • US07018338B2
    • 2006-03-28
    • US10255068
    • 2002-09-26
    • Rolf VetterPhilippe ReneveyRoland GentschJens KraussYves Depeursinge
    • Rolf VetterPhilippe ReneveyRoland GentschJens KraussYves Depeursinge
    • A61B5/02A61B6/00
    • A61B5/721A61B5/02416
    • Portable pulse rate detecting device for contact with human body tissue, including a light-emitting source for emitting radiant energy directed at through human body tissue; at least first and second light detectors for detecting intensity of radiant energy after propagation through human body tissue and for providing first and second input signals as a function of such propagation, a detecting device for providing a motion reference signal, and processing means for removing motion-related contributions from the first and second input signals and subtracting a calculated model based on the motion reference signal from each of the first and second input signals, wherein the processing means is also for removing measurement noise and residual non-modeled contributions from the first and second enhanced signals using a noise reduction algorithm.
    • 用于与人体组织接触的便携式脉搏检测装置,包括用于发射穿过人体组织的辐射能的发光源; 至少第一和第二光检测器,用于在通过人体组织传播之后检测辐射能的强度,并且用于提供作为这种传播的函数的第一和第二输入信号,用于提供运动参考信号的检测装置,以及用于去除运动的处理装置 来自第一和第二输入信号的相关贡献,并且基于来自第一和第二输入信号中的每一个的运动参考信号减去所计算的模型,其中处理装置还用于从第一和第二输入信号中去除测量噪声和剩余的非建模的贡献 和使用降噪算法的第二增强信号。