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首页> 外文期刊>Journal of magnetism and magnetic materials >Approximate expressions for the magnetic field created by circular coils inside a closed cylindrical shield of finite thickness and permeability
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Approximate expressions for the magnetic field created by circular coils inside a closed cylindrical shield of finite thickness and permeability

机译:由有限厚度和渗透率的封闭圆柱屏蔽内由圆形线圈产生的磁场的近似表达式

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摘要

The common approach to create a uniform magnetic field in the μT range is placing a coil set inside a magnetic shield. One of the main obstacles to achieving the requested uniformity can be a field distortion caused by the shield. We derive an approximate expression for the magnetic field generated by circular coils enclosed in ferromagnetic cylinders, the most used shield geometry. The main advantage of the expression over the known approximation is considering the finite permeability and the finite thickness of the cylindrical shield. To model the cylinder end caps, we propose the finite thickness mirror method, which extends the method of mirror image to the case of finite thickness. The cylinder barrel is modeled as an infinite tube and its effect on the field is analytically solved. The error of the expression and its dependency on the observation point and the shield geometry are discussed. Compared with finite-element simulations our analytic method is consistent within a relative error of less than 0.3% for practical shielding setups. The expression enables the rapid optimization of shield-coupled coil sets with a custom-designed objective function. To show the applicability of our method, we present simulations for the direct selection of the optimum spacing of a coil pair to match the given dimensions of a cylindrical shield.
机译:在μT范围内产生均匀磁场的常用方法将线圈放置在磁屏蔽内。实现所要求的均匀性的主要障碍之一可以是由屏蔽引起的场失真。我们推导了由封装在铁磁汽缸中的圆形线圈产生的磁场的近似表达,最使用过的盾构几何形状。在已知近似的表达的主要优点是考虑有限渗透性和圆柱形护罩的有限厚度。为了模拟气缸端盖,我们提出了有限厚度镜面方法,该方法将镜像方法延伸到有限厚度的情况。气缸筒被建模为无限管,并对该领域的影响进行了分析解决。讨论了表达的误差及其对观察点和屏蔽几何体的依赖性。与有限元模拟相比,我们的分析方法在实际屏蔽设置的相对误差范围内呈不到0.3%的一致性。该表达使得具有定制设计的目标函数的屏蔽耦合线圈组的快速优化。为了展示我们的方法的适用性,我们呈现用于直接选择线圈对的最佳间隔的模拟,以匹配圆柱形屏蔽的给定尺寸。

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