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全球最优超导磁体 第一部分:最小储能(MSE)电流密度图

Globally optimal superconducting magnets part I: minimum stored energy (MSE) current density map.

作者信息

Tieng Quang M, Vegh Viktor, Brereton Ian M

机构信息

Centre for Magnetic Resonance, The University of Queensland, Brisbane, St. Lucia, Queensland, Australia.

出版信息

J Magn Reson. 2009 Jan;196(1):1-6. doi: 10.1016/j.jmr.2008.09.018. Epub 2008 Sep 26.

Abstract

An optimal current density map is crucial in magnet design to provide the initial values within search spaces in an optimization process for determining the final coil arrangement of the magnet. A strategy for obtaining globally optimal current density maps for the purpose of designing magnets with coaxial cylindrical coils in which the stored energy is minimized within a constrained domain is outlined. The current density maps obtained utilising the proposed method suggests that peak current densities occur around the perimeter of the magnet domain, where the adjacent peaks have alternating current directions for the most compact designs. As the dimensions of the domain are increased, the current density maps yield traditional magnet designs of positive current alone. These unique current density maps are obtained by minimizing the stored magnetic energy cost function and therefore suggest magnet coil designs of minimal system energy. Current density maps are provided for a number of different domain arrangements to illustrate the flexibility of the method and the quality of the achievable designs.

摘要

在磁体设计中,最优电流密度图对于在优化过程中为搜索空间提供初始值至关重要,该优化过程用于确定磁体的最终线圈排列。本文概述了一种获取全局最优电流密度图的策略,旨在设计具有同轴圆柱形线圈的磁体,使储能在约束域内最小化。利用该方法获得的电流密度图表明,峰值电流密度出现在磁体域的周边,对于最紧凑的设计,相邻峰值具有交替的电流方向。随着域尺寸的增加,电流密度图产生仅具有正向电流的传统磁体设计。这些独特的电流密度图是通过最小化储能成本函数获得的,因此表明了系统能量最小的磁体线圈设计。提供了多种不同域排列的电流密度图,以说明该方法的灵活性和可实现设计的质量。

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