Optimization of Transverse Gradient Coils with Coaxial Return Paths by Simulated Annealing

M.L. Buszko , M.F. Kempka , E. Szczesniak , D.C. Wang , E.R. Andrew
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引用次数: 16

Abstract

Coils with coaxial return paths are used to generate transverse magnetic field gradients. This paper describes optimization of such coils by the method of simulated annealing, a method known to be able to find the global minimum of a function. The adaptive simulated annealing (ASA) program has been analyzed and applied to optimization of a family of coils with 8–16 building blocks, each carrying equal current. Positions of the blocks along the longitudinal axis of the coils were optimized. A new subclass of coils is proposed; the diameter of return paths of this subclass of coils is not fixed but may be varied. The new coils provide greater gradient uniformity than those for which only positions of the blocks are optimized. All optimized coils should find applications in high-precision and high-resolution imaging and spectroscopic experiments.

用模拟退火法优化具有同轴返回路径的横向梯度线圈
带同轴返回路径的线圈用于产生横向磁场梯度。本文描述了用模拟退火的方法来优化这类线圈,这种方法已知能够找到函数的全局最小值。分析了自适应模拟退火(ASA)程序,并将其应用于具有8-16个单元的线圈族的优化,每个单元携带等电流。优化了沿线圈纵轴的块位置。提出了一种新的线圈子类;这类线圈的回路直径不是固定的,可以改变。新线圈比那些只优化了块的位置的线圈提供了更大的梯度均匀性。所有优化的线圈都应该在高精度和高分辨率的成像和光谱实验中找到应用。
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