Magnetic field recovery technique based on distance weighting multipole expansion method

Author:

Liu Binbin,Yang Zhen,Qiang Li-e,Peng Xiaodong,Ma Xiaoshan,Xu PengORCID,Luo Ziren,Tang Wenlin,Zhang Yuzhu,Gao Chen

Abstract

Abstract A space-borne gravitational wave detector requires the test mass (TM) to be in an ultra-low disturbance state. However, magnetic field fluctuations will disturb the TM and produce acceleration noise. To assess the influence of the magnetic field on the TM, it is necessary to monitor and reconstruct the magnetic field near the TM in real time. In this paper, a distance weighting multipole expansion (DWME) method was proposed, and its magnetic field reconstruction accuracy was analyzed. The results demonstrated that the proposed DWME method significantly improved the reconstruction precision compared to traditional methods. It reduced the average reconstruction error of the sensitive axial magnetic field from 1.2% to 0.8% and the maximum error from 16% to 8%. In the in-orbit situation, the DWME method also outperforms traditional methods.

Funder

National Key Research and Development Program of China

Youth Fund Project of National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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