OEO (optoelectronic oscillator) based wide-range and high-precision absolute distance measurement system with self-calibration function

An absolute distance and measurement system technology, applied in the field of optical carrier microwave ranging system, can solve the problems of limited extinction ratio, mutual interference, high frequency output drift, etc., to improve the quality of microwave signals, easy operation, anti-interference ability strong effect

Inactive Publication Date: 2015-09-30
TIANJIN UNIV
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Problems solved by technology

Since the OEO system uses long-length optical fibers (usually on the order of km) for energy storage, the cavity length is easily changed by the influence of ambient temperature and stress, and the resulting change in the fundamental frequency will cause the high-frequency output of OEO to occur Severe drift or even mode hopping, and it is impossible to distinguish between the change of the cavity length of the test system itself and the change of the distance to be measured
It is impossible to obtain f without any stabilization measures N and f b The exact value of the distance to be measured cannot be obtained
[0017] f N There is another limiting factor in the measurement accuracy: that is, it must be ensured that the OEO works in a single-frequency oscillation state, excluding f N The interference of the side mode on the test results
In fact, if no additional measures are taken, due to the limitation of microwave filter bandwidth (usually on the order of 10MHz), there are often multiple modes in its passband (OEO fundamental frequency is on the order of more than ten kHz), and at frequency There will be mutual interference in the measurement
In previous studies, the optical domain double loop constructed by using polarization beam splitter / combiner can improve the side mode suppression ratio of OEO, but due to the limited extinction ratio of polarization beam splitter / combiner (about 20dB), the two There is still random noise caused by interference between two orthogonally polarized lights of the same wavelength, which will deteriorate the output signal quality of the OEO, which will also adversely affect the accuracy of distance measurement.

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  • OEO (optoelectronic oscillator) based wide-range and high-precision absolute distance measurement system with self-calibration function
  • OEO (optoelectronic oscillator) based wide-range and high-precision absolute distance measurement system with self-calibration function
  • OEO (optoelectronic oscillator) based wide-range and high-precision absolute distance measurement system with self-calibration function

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[0039] The technical scheme of the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments. The specific implementation described is example The present invention is only explained and explained and not used to limit the present invention.

[0040] figure 1 It shows the principle of distance measurement by an electro-optical oscillator (OEO). The electro-optical oscillator (OEO) is a new type of microwave signal generator that uses a longer optical fiber to store energy. It is mainly composed of lasers, electro-optic modulators, optical fibers, and A positive feedback loop formed by the detector and the microwave filter. The length of the resonant cavity is generally on the order of km. For most long-range distance measurements, this distance is sufficient. In other words, the measured length can be used as part of the OEO cavity length. The change in length at this time is converted into a change in ...

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Abstract

The invention discloses an OEO (optoelectronic oscillator) based wide-range and high-precision absolute distance measurement system with a self-calibration function. The system comprises four lasers, two wavelength division multiplexers, an electro-optic modulator, an erbium-doped optical fiber amplifier, an optical add-drop multiplexer, two optical fibers with different lengths, two optical fiber tensioners, three optical couplers, two photoelectric detectors, two microwave filters with different center frequencies, two microwave amplifiers, two microwave power beam splitters and a microwave synthesizer. An oscillation loop comprises an optical path part and a circuit / microwave part. By means of OEOs, the accumulative amplification principle is applied to the wide-range absolute distance length measurement scheme for large-scale absolute distance measurement (km magnitude), and very high measurement precision (mu m magnitude) can be realized; the system can be widely applied to fields of industrial measurement and control, precision instrument manufacture and the like, is high in interference resisting capacity and good in stealthiness and has very good application prospect in the military field.

Description

Technical field [0001] The invention relates to a light-borne microwave ranging system, in particular to a large-range, high-precision absolute distance measurement system with self-calibration function based on two photoelectric oscillators. Background technique [0002] The development of measurement technology is the prerequisite and basis for all scientific and technological development. Length is one of the seven basic physical quantities. It and angle measurement form the basis of all geometric measurement. Its development determines the ability of mankind to understand and transform the world, and it is also a symbol of measuring a country's measurement technology level. [0003] Although the current method of using laser interferometer can reach the measurement accuracy of nm in the range of tens of meters. However, it can only measure the relative change of distance (also called relative distance measurement). This requires a precision rail larger than the object to be me...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01S17/08
CPCG01S17/08
Inventor 于晋龙王菊谢田元于洋
Owner TIANJIN UNIV
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