TY - JOUR
T1 - Design of Biplanar Excitation Magnetic Field Coils With Small-Size and Large Uniform Area in Near-Zero Magnetic Cell Incubator
AU - Zhao, Xiuqi
AU - Zhang, Lu
AU - Zhang, Xu
AU - Dou, Shuai
AU - Yang, Jianzhi
AU - Zheng, Shiqiang
N1 - Publisher Copyright:
© 1963-2012 IEEE.
PY - 2023
Y1 - 2023
N2 - Low-frequency excitation magnetic field coils are potent tools for studying the effects of magnetic fields on cells. However, the existing excitation magnetic field coils are vulnerable to external magnetic fields and difficult to generate a high uniform excitation magnetic field with a small size. Thus, this study proposes a novel optimization design method combining the target field method (TFM), thickness mirror image method, and fruit fly optimization algorithm (FOA) to design a new type of biplanar excitation magnetic field coil placed in a near-zero magnetic cell incubator. Based on the optimization design method, three biplanar coils of ${B}_{x}$ , $B_{y}$ , and $B_{z}$ with the paralleled arrangement in a near-zero magnetic cell incubator with the size of $365\times 336\times200$ mm were designed and measured. The coil constants of $B_{x}$ ( $B_{y}$ ) and $B_{z}$ are 8860 and 100 640 nT/A, respectively. The nonuniformity of the $B_{x}$ ( $B_{y}$ ) and ${B}_{z}$ coils is less than 5% and 1% over the central volume of $80\times 80\times80$ and $100\times 100\times100$ mm, respectively, meeting the most requirement of working space and the amplitude of magnetic field for cell research.
AB - Low-frequency excitation magnetic field coils are potent tools for studying the effects of magnetic fields on cells. However, the existing excitation magnetic field coils are vulnerable to external magnetic fields and difficult to generate a high uniform excitation magnetic field with a small size. Thus, this study proposes a novel optimization design method combining the target field method (TFM), thickness mirror image method, and fruit fly optimization algorithm (FOA) to design a new type of biplanar excitation magnetic field coil placed in a near-zero magnetic cell incubator. Based on the optimization design method, three biplanar coils of ${B}_{x}$ , $B_{y}$ , and $B_{z}$ with the paralleled arrangement in a near-zero magnetic cell incubator with the size of $365\times 336\times200$ mm were designed and measured. The coil constants of $B_{x}$ ( $B_{y}$ ) and $B_{z}$ are 8860 and 100 640 nT/A, respectively. The nonuniformity of the $B_{x}$ ( $B_{y}$ ) and ${B}_{z}$ coils is less than 5% and 1% over the central volume of $80\times 80\times80$ and $100\times 100\times100$ mm, respectively, meeting the most requirement of working space and the amplitude of magnetic field for cell research.
KW - Biplanar coil
KW - fruit fly optimization algorithm (FOA)
KW - image method
KW - magnetic shielding
KW - uniform exciting magnetic field
UR - https://www.scopus.com/pages/publications/85159811255
U2 - 10.1109/TIM.2023.3269116
DO - 10.1109/TIM.2023.3269116
M3 - 文章
AN - SCOPUS:85159811255
SN - 0018-9456
VL - 72
JO - IEEE Transactions on Instrumentation and Measurement
JF - IEEE Transactions on Instrumentation and Measurement
M1 - 4005210
ER -