Method for enhancing measurement precision of proton magnetometer

A measurement accuracy, magnetometer technology, applied in measurement devices, electrical/magnetic exploration, geophysical measurement, etc., to achieve the effect of high-precision magnetic field observation

Inactive Publication Date: 2011-05-04
GUANGZHOU MARINE GEOLOGICAL SURVEY
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  • Application Information

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Problems solved by technology

In the past, the proton magnetometer showed insufficient observation accuracy (generally ±1nT) and poor stability in some observation fields. Therefore, most of these high-precision magnetic observations are expensive (nearly ten times more expensive than the proton magnetometer) ) imported optical pump magnetometer and OVERHAUSER magnetometer

Method used

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  • Method for enhancing measurement precision of proton magnetometer
  • Method for enhancing measurement precision of proton magnetometer
  • Method for enhancing measurement precision of proton magnetometer

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Experimental program
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Embodiment Construction

[0021] The structure and composition of the circuit for measuring the signal cycle of high-speed devices are as follows:

[0022] The circuit for measuring the signal period of high-speed devices includes an omnidirectional deep-sea proton probe 1, a probe polarization converter 2, a polarization controller 3, a tuning matcher 4, a frequency-selective amplifier 5, a signal shaper 6, a signal counter 7, and a counting gate 8. 30MHz standard pulse generator 9. 24-bit binary counter 10. The omnidirectional deep-sea proton probe 1 transmits the detected signal to the probe polarization converter 2, and the signal is transmitted to the polarization controller 3 and the tuning matcher 4 after conversion, and the signal is transmitted to the frequency selection after being matched by the tuning matcher 4 Amplifier 5, the signal is amplified and sent to the signal shaper 6, the signal is shaped and sent to the signal counter 7, the signal is counted and fed back to the tuning matcher ...

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Abstract

The invention provides a method and a circuit for improving the measurement precision of a proton magnetometer; the method adopts 1) a high-speed device cycle-measuring method which uses the period of the signal to be measured as the counting gate time of the standard pulse so as to calculate the period of the signal to be measured; 2) an evaluation and processing method for grade of real-time signal data, which automatically calculates the discreteness according to the difference of the magnetic field to be measured and the interference on the time domain characteristic and the attenuation characteristic of the spinning signal; and 3) a correction method for the temperature coefficient of devices, which adopts high-sensitiveness temperature integration sensor and an A / D (analog to digital) converter to directly carry out the correction in the measurement program. The circuit comprises an omni-directivity deep-sea proton magnetic probe, a probe polarization converter, a polarization controller, a tuning matcher, a frequency selective amplifier, a signal shaper, a signal counter, a counting gate, a standard pulse generator and a binary counter.

Description

technical field [0001] The invention relates to the technical field of proton magnetometer measurement, in particular to a method for improving the measurement accuracy of a proton magnetometer and a circuit thereof. Background technique [0002] The proton magnetometer is a magnetometer with high observation accuracy. Because of its clear and simple observation mechanism, it has become a relatively cheap magnetometer and has been widely used in many fields. In the past, the proton magnetometer showed insufficient observation accuracy (generally ±1nT) and poor stability in some observation fields. Therefore, most of these high-precision magnetic observations are expensive (nearly ten times more expensive than the proton magnetometer) ) imported optical pump magnetometer and OVERHAUSER magnetometer. According to the high stability of the hydrogen proton gyromagnetic ratio, as long as the resolution and stability of the hydrogen proton precession frequency signal counting ar...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01V3/40G01V3/38
Inventor 柴剑勇陆敬安严兴徐行黄晖黎珠博陈奇于彦江
Owner GUANGZHOU MARINE GEOLOGICAL SURVEY
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