Phase frequency characteristic measurement method for tunable fiber Fabry-Perot (FFP) filter and application

A technology of phase-frequency characteristics and measurement method, which is applied in the direction of measurement device, measurement of electrical variables, phase angle between voltage and current, etc., to achieve the effect of small loss, strong practicability and small voltage amplitude

Inactive Publication Date: 2011-09-14
HUAZHONG UNIV OF SCI & TECH
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Problems solved by technology

Although this method does not discuss the phase-frequency characteristics of the filter and its measurement method, but because it has the advantages of high measurement speed, small measurement error and convenient measurement, its measurement principle and method are all important to the phase-frequency characteristic measurement method of the tunable filter. Has a certain reference value

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  • Phase frequency characteristic measurement method for tunable fiber Fabry-Perot (FFP) filter and application
  • Phase frequency characteristic measurement method for tunable fiber Fabry-Perot (FFP) filter and application
  • Phase frequency characteristic measurement method for tunable fiber Fabry-Perot (FFP) filter and application

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Embodiment Construction

[0029] The working principle of the present invention: when the driving signal frequency is low, adjust the DC bias voltage of the tunable FFP filter so that the center wavelength of the filter is aligned with the center wavelength of the single-wavelength laser, and the output signal will appear the second order of the driving signal Harmonics, and within one cycle of the drive signal, the time components of the two minimum values ​​of the output signal correspond to the time components of the maximum and minimum values ​​of the drive signal, respectively. After the frequency increases, due to the delay characteristic of the tuning device PZT, the phase of multi-beam interference in the tunable FFP filter changes, the central wavelength of the tunable FFP filter changes, and the central wavelength of the filter is misaligned with the laser wavelength . This change causes the minimum time component of the output signal corresponding to the maximum value of the drive signal to ...

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Abstract

The invention provides a phase frequency characteristic measurement method for a tunable fiber Fabry-Perot (FFP) filter and application. The method comprises the following steps of: when the input signal frequency is low, adjusting the direct-current bias voltage of the tunable FFP filter so that the central wavelength of the filter is aligned with the wavelength of a laser device; when the inputsignal frequency is increased, recording time components of the peak value of input signals and the local minimal value of output optical signals through a digital storage oscilloscope; and calculating the phase difference between the local minimal value of the output optical signals and the peak value of the input signals by using the relationship between the period and the phase in a trigonometric function to obtain the phase frequency characteristics of the tunable FFP filter under different frequencies. By using the measurement result, the measurement error of the central wavelength of the tunable FFP filter can be calculated, and important reference basis is provided for time constant design of a locked loop in a wavelength locking controller.

Description

technical field [0001] The present invention relates to a tunable fiber Fabry-Perot (Fiber Fabry-Perot, FFP) filter, in particular to a tunable fiber Fabry-Perot (Fiber Fabry-Perot, FFP) filter phase-frequency characteristic New methods and applications of measurement. Background technique [0002] In optical communication, sensing signal demodulation and high-precision spectral analysis, it is necessary to design a controller with tunable FFP filter to scan or track the wavelength of the light source. Since the electrical characteristics of the tuning device PZT (piezoelectric ceramic) in the tunable FFP filter are similar to those of the capacitor, the time constant of the different input signal frequencies will change, so that the output signal of the tunable FFP filter is different from the input signal. time delay. This time delay will cause a change in the phase of multi-beam interference in the FFP filter, resulting in a change in the central wavelength of the tunab...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R25/00
Inventor 齐海兵余永林
Owner HUAZHONG UNIV OF SCI & TECH
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