Abstract

The large-caliber steady-state magnetic-field testing system is an important device for the International Thermonuclear Experimental Reactor, which is mainly used for electromagnetic compatibility tests in a strong magnetic field environment. The uniform magnetic field area needs to be measured to ensure the correctness of the design after the completion of the platform. This paper mainly analyzes the relationship between the magnetic field probe and error, studies the detection effect of different arrangement methods of magnetic field probe points, and obtains a more accurate probe arrangement method through comparative analysis. Then, the principle and structure of the acquisition and detection system are studied, and the multipoint synchronous Hall array magnetic field detection system of the magnetic field is built by using the Hall probe to realize the omnidirectional measurement of the magnetic field. Finally, the Hall probe is calibrated and tested by experiments, and a test platform is built to test the magnetic field. The results verify the correctness of the analysis.

Highlights

  • The magnetic field immunity test is of great significance to the safe and stable operation of electromagnetic equipment

  • The large-scale scientific research facilities similar to the International Thermonuclear Experimental Reactor (ITER) need to carry out immunity testing for all types of electrical and electronic devices

  • The coil structure design of the large-caliber steadystate magnetic-field testing system that meets the requirements of the uniform magnetic field has been completed, including the magnetic field calculation and test16,17 and thermal stability study

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Summary

INTRODUCTION

The large-caliber steady-state magnetic-field testing system is used to generate a uniform magnetic field by the coil structure, and there are many design schemes. The coil structure design of the large-caliber steadystate magnetic-field testing system that meets the requirements of the uniform magnetic field has been completed, including the magnetic field calculation and test and thermal stability study.. The power supply system (two sets) and data acquisition system are part of the control scheme of uniform high-intensity magnetic compatibility test equipment. The ITER PF power supply system can provide stable and controllable DC for the large-caliber steady-state magnetic-field testing system. This paper will not discuss it anymore It only studies the power supply system and data acquisition system for the large-caliber steady-state magnetic-field testing system

POWER CONTROL SYSTEM
DATA MEASUREMENT AND ACQUISITION SYSTEM
Deviation error analysis of the magnetic probe
Scheme of magnetic probe arrangement
Method of uniform arrangement
Method of stereoscopic surround
Characteristics of the magnetic field detector
Design of the measurement and acquisition system
Calibration of the Hall probe
Findings
CONCLUSIONS
Full Text
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