磁控铁磁变计控制电路数学模型的建立

V. V. Zaitsev, K. S. Fadeev, K. V. Avdeeva
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引用次数: 0

摘要

本文的目的是建立一个数学模型,用于线性近似地研究磁控铁变差计的磁场。在平面平行模型的基础上解决了这一问题。该方案是基于二次源的方法。在所建立的数学模型的基础上,用高级语言编写了一个程序,该程序提供了初始数据的输入和打印、二次源坐标的计算和相关电流的初始近似值的计算,以及给定精度的方程组的迭代计算。所描述的方法和程序使得在磁控铁变差计的设计中,如果设计可以用平面平行模型来表示,就可以得到控制场在周围空间中的近似分布情况。在现场计算的基础上,可以对控制电路设计进行参数综合,并评估其对周围电路的干扰效果。
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Development of a mathematical model of magnetically controlled ferrovariometer control circuit
The objective of this work is to develop a mathematical model for studying the magnetic control field of a magnetically controlled ferrovariometer in a linear approximation. This problem is solved on the basis of a plane-parallel model. The solution is based on the method of secondary sources. On the basis of the developed mathematical model, a program is compiled in a highlevel language that provides input of initial data and their printing, calculation of the coordinates of secondary sources and calculation of the initial approximate value of the associated currents, as well as iterative calculation of the system of equations with a given accuracy. The described method and program make it possible to obtain an approximate picture of the distribution of the control field in the design of a magnetically controlled ferrovariometer and in the surrounding space, if the design can be represented by a plane-parallel model. Based on the field calculation, it is possible to perform a parametric synthesis of the control circuit design and evaluate its interfering effect on the surrounding electrical circuits.
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