Meng Qingzhi, Wang Zelin, Lin Qijing, Ju Dengfeng, Liang Xianfeng, Xian Dan
State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
School of Instrument Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
Nanomaterials (Basel). 2024 Mar 19;14(6):538. doi: 10.3390/nano14060538.
Considering the magnetic shielding requirements of both geomagnetic field and 50 Hz power-line frequency in the complex working conditions of the power grid, an electromagnetic shielding system combining active and passive modes is proposed in this article. A three-dimensional Helmholtz coil with a magnetic shielding barrel nested inside is established by the COMSOL simulation tool, and the magnetic shielding efficiency of the system is analyzed. Comparing different materials, the simulation results indicate that permalloy alloy exhibits better shielding performance than pure iron and nickel materials. Additionally, the overall shielding efficiency of the shielding barrel increases linearly with the number of multiple layers. Under the combined active and passive electromagnetic shielding conditions, the system achieves a shielding efficiency of = 113.98 dB, demonstrating excellent performance in shielding both AC and DC interference magnetic fields. This study provides theoretical guidance for the construction of magnetic shielding systems in electromagnetic interference environment.
考虑到电网复杂工况下地磁场和50Hz工频的磁屏蔽要求,本文提出了一种有源与无源模式相结合的电磁屏蔽系统。利用COMSOL仿真工具建立了内部嵌套磁屏蔽筒的三维亥姆霍兹线圈,并对该系统的磁屏蔽效率进行了分析。通过比较不同材料,仿真结果表明坡莫合金比纯铁和镍材料具有更好的屏蔽性能。此外,屏蔽筒的整体屏蔽效率随层数的增加呈线性提高。在有源与无源电磁屏蔽相结合的条件下,该系统实现了屏蔽效率=113.98dB,在屏蔽交流和直流干扰磁场方面表现出优异的性能。本研究为电磁干扰环境下磁屏蔽系统的构建提供了理论指导。