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Simple Algorithms for the Calculation of the Intensity of the Magnetic Field of Current Loops and Thin-Wall Air Coils of a General Shape Using Magnetic Dipoles

机译:利用磁偶极子计算一般形状的电流回路和薄壁空气线圈的磁场强度的简单算法

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print and checkThis paper describes the method by which it is possible to construct simple algorithms for the calculation of the axial and transverse components of the intensity of the magnetic field of current loops and thin-wall air coils (solenoids). These are planar loops and tightly wound coils with a cross section of an arbitrary shape and parallel walls in an axial direction. Computational algorithms show the same formal structure for every shape of coil; the shape of the coils is defined by the special shape function. The method is based on the superposition of the magnetic field of the equivalent magnetic dipoles. Utilization of this method can be observed, for example, in the calculation of the magnetic field of a cylindrical current loop and a thin cylindrical coil, for which the resulting relations are compared with a familiar method of calculation, on which solving equations for the vector potential is based. The method of calculation described can also be equally effectively used for coils of a noncircular shape. In this study, for the purpose of illustration, simple algorithms are created for the calculation of the magnetic field of a rectangular coil and the calculated values of the magnetic field are compared with the actual measurements.
机译:本文描述了一种方法,通过该方法可以构造简单的算法来计算电流回路和薄壁空气线圈(电磁阀)的磁场强度的轴向和横向分量。它们是具有任意形状的横截面和轴向平行壁的平面环和紧密缠绕的线圈。计算算法针对每种形状的线圈显示相同的形式结构。线圈的形状由特殊形状函数定义。该方法基于等效磁偶极子的磁场叠加。例如,在计算圆柱电流回路和薄圆柱线圈的磁场时,可以观察到该方法的使用,将其结果关系与熟悉的计算方法进行比较,在该计算方法中,矢量的求解方程式潜力是基础。所描述的计算方法也可以同样有效地用于非圆形的线圈。在本研究中,出于说明的目的,创建了用于计算矩形线圈磁场的简单算法,并将计算出的磁场值与实际测量值进行了比较。

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