Integrated optical sensor probe for measuring broadband and high-amplitude current

An optical sensor and high-amplitude technology, applied in the direction of measuring current/voltage, only measuring current, measuring electrical variables, etc., can solve the problems of high insulation cost, small measuring range, slow dynamic response, etc., and achieve convenient and reliable installation, temporary The effect of good dynamic performance and wide frequency response

Pending Publication Date: 2020-01-24
GUIZHOU POWER GRID CO LTD
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the traditional electromagnetic current transformer has undergone on-site digital transformation, there are still many disadvantages when measuring transient current, such as high insulation cost, easy magnetic saturation, small measurement range, narrow frequency band, residual magnetism, slow dynamic response, and inability to Problems such as measuring high-order harmonics have seriously affected the real-time and accurate acquisition of transient current data

Method used

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  • Integrated optical sensor probe for measuring broadband and high-amplitude current
  • Integrated optical sensor probe for measuring broadband and high-amplitude current
  • Integrated optical sensor probe for measuring broadband and high-amplitude current

Examples

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Embodiment

[0018] Example: such as Figure 1-Figure 2 As shown, an integrated optical sensor probe for measuring broadband high-amplitude currents includes magneto-optical glass 5, which is fixedly connected in the housing, and collimator-3 and collimator-3 are fixedly connected to the two ends of the housing respectively Device two 8, the two ends of the magneto-optical glass 5 are provided with a circular sheet-shaped polarizer 4 and an analyzer 7, the polarizer 4 and the analyzer 7 are respectively insulated and packaged at the two ends of the magneto-optic glass 5, and the middle part An optical rotator 6 is provided, a collimator one 3 and a collimator two 8 are respectively connected to the input optical fiber 2 and the output optical fiber 9, the input optical fiber 2 and the output optical fiber 9 are respectively connected to the polarization laser 1 and the laser detector 10, and the collimator one 3 is used to convert polarized light into spatially parallel light, which acts o...

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Abstract

The invention discloses an integrated optical sensor probe for measuring broadband and high-amplitude current. The integrated optical sensor probe comprises magneto-optical glass, the magneto-opticalglass is fixedly connected into a shell, a first collimator and a second collimator are correspondingly and fixedly connected into the two ends of the shell, a polarizer and an analyzer are arranged at the two ends of the magneto-optical glass, an activizer is arranged in the middle of the magneto-optical glass, the first collimator and the second collimator are correspondingly connected with an input optical fiber and an output optical fiber, the input optical fiber and the output optical fiber are correspondingly connected to a polarization laser and a laser detector, the first collimator isused for converting polarized light into spatial parallel light to act on the magneto-optical glass, and the second collimator is sued for receiving spatial parallel light after the analyzer and transmitting to the output optical fiber. According to the integrated optical sensor probe, safety and reliability are achieved, impact on the insulation performance of line equipment is not produced, various types of current can be measured, integrated design is achieved, installation is convenient and reliable, frequency response is wide, and transient performance is good; volume is small, iron coreis avoided, high-low pressure isolation is achieved, and the requirements of a digital substation are met.

Description

technical field [0001] The invention relates to an integrated optical sensor probe for measuring wide-band and high-amplitude current, and belongs to the technical field of positioning of non-contact current measuring equipment. Background technique [0002] Current is one of the important observable state parameters of the power system. The transient current has rich information parameters, including waveform, frequency, amplitude and other characteristics. It is important information reflecting the disturbance and fault process of the power system. Real-time observation of the transient current It is an important requirement for power grid transient information acquisition and accident traceability. Although the traditional electromagnetic current transformer has undergone on-site digital transformation, there are still many disadvantages when measuring transient current, such as high insulation cost, easy magnetic saturation, small measurement range, narrow frequency band...

Claims

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Application Information

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IPC IPC(8): G01R19/00G01R15/24
CPCG01R19/0092G01R15/245
Inventor 谢荣斌马春雷
Owner GUIZHOU POWER GRID CO LTD
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