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Equivalent magnetic dipole method for designing gradient coils of the Halbach magnetic resonance device

机译:用于设计Halbach磁共振装置梯度线圈的等效磁性偶极方法

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摘要

Based on the equivalent magnetic dipole theory, a method for designing gradient coils of the Halbach magnet is proposed. Minimizing the energy consumption of the gradient coil is set as the optimal object, and the variance between the calculated and expected magnetic fields is taken as the penalty function. In this way, a quadratic optimization problem that cannot easily satisfy the magnetic field constraint condition can be easily transformed into an unconstrained optimization problem. By using the lsqnonlin optimization toolbox of Matlab, the distribution of the stream function on the cylindrical surface is calculated, and the three gradient coils of the Halbach magnet are obtained according to the contour of the stream function. To validate the designed coils, the Biot-Savart law is applied to calculate the distribution of the magnetic field. The results show that the magnetic field distribution agrees well with the design object. The gradient coils are fabricated and the magnetic field distributions in the region of interest are measured. The measured data are almost similar with the calculated data, and the measured gradient uniformity of x (y) and z coils are 4.47% and 2.34%, respectively, which are less than 5% of the commercial gradient coil requirements.
机译:基于等效磁偶极理论,提出了一种设计哈巴赫磁体的梯度线圈的方法。最小化梯度线圈的能量消耗被设定为最佳对象,并且计算出和预期磁场之间的方差被视为惩罚功能。以这种方式,不能容易地满足磁场约束条件的二次优化问题可以容易地转换为不受约束的优化问题。通过使用MATLAB的LSQNONINLIN优化工具箱,计算圆柱形表面上的流功能的分布,并且根据流功能的轮廓获得HALBACH磁体的三个梯度线圈。为了验证设计的线圈,将应用Biot-Savart定律来计算磁场的分布。结果表明,磁场分布与设计对象一致。制造梯度线圈,测量感兴趣区域中的磁场分布。测量的数据与计算的数据几乎相似,X(Y)和Z线圈的测量梯度均匀性分别为4.47%和2.34%,分别小于商业梯度线圈要求的5%。

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