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An analytical method for the calculation of static characteristics of linear step motors for control rod drives in nuclear reactors

机译:核反应堆控制棒驱动线性步进电动机静态特性计算的一种解析方法

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摘要

An analytical method for calculating static characteristics of linear dc step motors (LSM) is described. These multiphase passive-armature motors are now being developed for control rod drives (CRD) in large nuclear reactors. The static characteristics of such LSM is defined by the variation of electromagnetic force with armature displacement and it determines motor performance in its standing and dynamic modes of operation. The proposed analytical technique for calculating this characteristic is based on the permeance analysis method applied to phase magnetic circuits of LSM. Reluctances of various parts of phase magnetic circuit is calculated analytically by assuming probable flux paths and by taking into account complex nature of magnetic field distribution in it. For given armature positions stator and armature iron saturations are taken into account by an efficient iterative algorithm which gives fast convergence. The method is validated by comparing theoretical results with experimental ones which shows satisfactory agreement for small stator currents and weak iron saturation.
机译:描述了一种用于计算线性直流步进电机(LSM)静态特性的分析方法。这些多相无源电枢电动机目前正在开发用于大型核反应堆的控制棒驱动器(CRD)。这种LSM的静态特性是由电磁力随电枢位移的变化来定义的,它决定了电机在其站立和动态运行模式下的性能。提出的用于计算该特性的分析技术是基于应用于LSM相磁路的磁导分析方法。通过假定可能的磁通路径并考虑其中的磁场分布的复杂性,可以分析地计算出相磁路各部分的磁阻。对于给定的电枢位置,有效的迭代算法将定子和电枢铁的饱和度考虑在内,该算法可实现快速收敛。通过将理论结果与实验结果进行比较,验证了该方法的有效性,该实验结果对于小定子电流和弱铁饱和度具有令人满意的一致性。

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