Optimized Unilateral Magnetic Resonance Sensor with Constant Gradient and Its Applications in Composite Insulators

Author:

Guo Pan1,Yang Chenjie1,Wu Jiamin23,Xu Zheng4ORCID

Affiliation:

1. College of Physics and Electronic Engineering, Chongqing Normal University, Chongqing 401331, China

2. Shenzhen Academy of Aerospace Technology, Shenzhen 518057, China

3. School of Mechatronics Engineering, Harbin Institute of Technology, Harbin 150006, China

4. School of Electrical Engineering, Chongqing University, Chongqing 400044, China

Abstract

In this study, an optimized unilateral magnetic resonance sensor with a three-magnet array is presented for assessing the aging of composite insulators in power grids. The sensor’s optimization involved enhancing the static magnetic field strength and the homogeneity of the RF field while maintaining a constant gradient in the direction of the vertical sensor surface and maximizing homogeneity in the horizontal direction. The center layer of the target area was positioned 4 mm from the coil’s upper surface, resulting in a magnetic field strength of 139.74 mT at the center point of the area, with a gradient of 2.318 T/m and a corresponding hydrogen atomic nuclear magnetic resonance frequency of 5.95 MHz. The magnetic field uniformity over a 10 mm × 10 mm range on the plane was 0.75%. The sensor measured 120 mm × 130.5 mm × 76 mm and weighed 7.5 kg. Employing the optimized sensor, magnetic resonance assessment experiments were conducted on composite insulator samples utilizing the CPMG (Carr–Purcell–Meiboom–Gill) pulse sequence. The T2 distribution provided visualizations of the T2 decay in insulator samples with different degrees of aging.

Funder

National Science Foundation of China

Chongqing Natural Science Foundation project

Science and Technology Funds of the Chongqing Municipal Education Commission

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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