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    • 5. 发明申请
    • DISTRIBUTED AND DYNAMICAL BRILLOUIN SENSING IN OPTICAL FIBERS
    • 光纤中的分布式和动态BRILLOUIN感测
    • US20130308682A1
    • 2013-11-21
    • US13981607
    • 2012-01-26
    • Moshe TurYair Peled
    • Moshe TurYair Peled
    • G01K11/32
    • G01K11/32G01D5/35303G01D5/35364G01K2011/322G01L1/242G01M11/319G01M11/39
    • A method of distributed and dynamical Brillouin sensing in optical fibers is provided herein. The method includes the following stages: deriving average characteristics of an optical fiber along its length; generating a variable frequency probe signal, such that the variable frequency is tailored to match, at specified points along the fiber, the respective average characteristics; injecting the variable frequency probe signal to a first end of the optical fiber and a periodic pulse signal to a second end of the optical fiber, wherein the injecting is synchronized such that a stimulated Brillouin scattering is carried out at each one of the specified points along the optical fiber, such that a frequency difference between the probe signal and the pump signal matches the average characteristics of the fiber; and measuring occurrences of the stimulated Brillouin scattering, to yield data indicative of strain and temperature at all points along the optical fiber.
    • 本文提供了光纤中分布式和动态布里渊传感的方法。 该方法包括以下阶段:导出沿其长度的光纤的平均特性; 产生可变频率探测信号,使得可变频率被调整为在沿着光纤的特定点处匹配相应的平均特性; 将所述可变频率探测信号注入所述光纤的第一端,并将周期性脉冲信号注入所述光纤的第二端,其中所述注入被同步,使得在所述特定点中的每一个处执行受激布里渊散射 光纤,使得探测信号和泵浦信号之间的频率差与光纤的平均特性匹配; 并测量受激布里渊散射的发生,以产生指示沿着光纤的所有点处的应变和温度的数据。
    • 6. 发明申请
    • Sweep-Free Stimulated Brillouin Scattering-Based Fiber Optical Sensing
    • 基于无扫描的布里渊散射光纤光学传感
    • US20130025374A1
    • 2013-01-31
    • US13411390
    • 2012-03-02
    • Asher VoskoboinikAlan E. WillnerMoshe Tur
    • Asher VoskoboinikAlan E. WillnerMoshe Tur
    • G01D5/32
    • G01D5/35364G01D5/35303G01D5/35387
    • Methods and systems used to perform sweep-free stimulated Brillouin scattering-based fiber optical sensing are described. In one aspect, a method includes interrogating different parts of a Brillouin gain spectrum using multiple optical tones in an optical fiber. The interrogating includes sending at least two pump tones into the optical fiber from one end of the optical fiber, such that a frequency spacing between the pump tones is larger than a width of the Brillouin gain spectrum. The interrogating also includes sending at least two probe tones into the optical fiber from another end of the optical fiber, such that a frequency spacing between the probe tones is different from the frequency spacing between the pump tones. The method further includes generating a sensing output based on the interrogating.
    • 描述了用于执行无扫描受激布里渊散射的光纤传感的方法和系统。 在一个方面,一种方法包括使用光纤中的多个光学色调来询问布里渊增益谱的不同部分。 询问包括从光纤的一端发送至少两个泵浦音调到光纤中,使得泵浦频率之间的频率间隔大于布里渊增益频谱的宽度。 询问还包括从光纤的另一端发送至少两个探测音调到光纤中,使得探测音之间的频率间隔与泵音之间的频率间隔不同。 该方法还包括基于询问产生感测输出。
    • 8. 发明授权
    • System and method for accurate loop length determination in fiber-optic
sensors and signal processors
    • 光纤传感器和信号处理器的精确环路长度确定的系统和方法
    • US4768880A
    • 1988-09-06
    • US877321
    • 1986-06-23
    • Moshe TurByoung Y. KimJanet L. BrooksHerbert J. Shaw
    • Moshe TurByoung Y. KimJanet L. BrooksHerbert J. Shaw
    • G01D5/353G01B9/02
    • G01D5/35303
    • A technique and system for accurate determination of differential propagation delays in fiber-optic circuits. The method includes providing a sinusoidally modulated optical signal to each of two waveguides defining optical paths. The optical signals received from the optical paths are combined to form a reference output signal which has a null waveform whenever the propagation delay between the optical signals contains an odd number of half periods of the optical signal waveforms. The difference in the sinusoidal modulation frequency producing a first and second null or constant waveform in the reference signal is determined. This difference value between adjacent frequencies forming the null or constant waveforms comprises the inverse of the difference of signal propagation delay in the two optical paths. Accuracy is improved by measuring the sinusoidal modulation frequencies corresponding to first and second waveforms which are not formed by adjacent frequencies. The difference between those nonadjacent frequencies is divided by the difference in the reference waveform orders of the null reference waveforms to obtain the inverse of the differential propagation delay. Further accuracy is achieved by measuring at least one of the waveform nulls at a high waveform order. Still further accuracy is achieved by monitoring the reference waveforms on a network analyzer and using a frequency synthesizer to more precisely match and identify the modulation frequencies corresponding to the null reference signal waveforms. A system is disclosed for implementing this technique optionally using optical sources having a short coherence length. Mathematical relationships are disclosed for use with measured values in obtaining further improved accuracy.
    • 一种用于精确确定光纤电路差分传播延迟的技术和系统。 该方法包括向定义光路的两个波导中的每一个提供正弦调制光信号。 每当光信号中的传播延迟包含光信号波形的奇数个半周期时,从光路接收的光信号被组合以形成具有零波形的参考输出信号。 确定在参考信号中产生第一和第二无效或恒定波形的正弦调制频率的差异。 形成零波形或恒定波形的相邻频率之间的差值包括两个光路中的信号传播延迟差的倒数。 通过测量对应于不由相邻频率形成的第一和第二波形的正弦调制频率来提高精度。 这些不相邻频率之间的差异除以空参考波形的参考波形次数的差异,以获得差分传播延迟的倒数。 通过以高波形顺序测量至少一个波形零点来实现进一步的精度。 通过监视网络分析仪上的参考波形并使用频率合成器更精确地匹配和识别与空参考信号波形相对应的调制频率,可以进一步提高精度。 公开了一种用于实现该技术的系统,其可选地使用具有短相干长度的光源。 公开了与测量值一起使用的数学关系,以获得进一步提高的准确度。
    • 9. 发明授权
    • Sweep-free stimulated Brillouin scattering-based fiber optical sensing
    • 基于无扫描的基于布里渊散射的光纤传感
    • US08800375B2
    • 2014-08-12
    • US13411390
    • 2012-03-02
    • Asher VoskoboinikAlan E. WillnerMoshe Tur
    • Asher VoskoboinikAlan E. WillnerMoshe Tur
    • G01D5/32
    • G01D5/35364G01D5/35303G01D5/35387
    • Methods and systems used to perform sweep-free stimulated Brillouin scattering-based fiber optical sensing are described. In one aspect, a method includes interrogating different parts of a Brillouin gain spectrum using multiple optical tones in an optical fiber. The interrogating includes sending at least two pump tones into the optical fiber from one end of the optical fiber, such that a frequency spacing between the pump tones is larger than a width of the Brillouin gain spectrum. The interrogating also includes sending at least two probe tones into the optical fiber from another end of the optical fiber, such that a frequency spacing between the probe tones is different from the frequency spacing between the pump tones. The method further includes generating a sensing output based on the interrogating.
    • 描述了用于执行无扫描受激布里渊散射的光纤传感的方法和系统。 在一个方面,一种方法包括使用光纤中的多个光学色调来询问布里渊增益谱的不同部分。 询问包括从光纤的一端发送至少两个泵浦音调到光纤中,使得泵浦频率之间的频率间隔大于布里渊增益频谱的宽度。 询问还包括从光纤的另一端发送至少两个探测音调到光纤中,使得探测音之间的频率间隔与泵音之间的频率间隔不同。 该方法还包括基于询问产生感测输出。