MODELING OF THE EXTERNAL MAGNETIC FIELD OF ELECTRIC MACHINES

L. Levchenko, Nataliia Ausheva, Nataliia Karaieva, V. Glyva, Nataliia Burdeina
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Abstract

Powerful electric machines – such as electric generators, electric motors generate a magnetic field of great tension. These fields negatively effect on personnel and can to violate the stability of electronic equipment. To determine safe areas for workers, laying communication cables and placing sensitive electronic equipment, it is advisable to model the propagation of magnetic fields of electrical machines. This will make it possible to rationalize the placing of electrical equipment at design stages. The most common high-power electrical machines are four-pole electrical machines with a dipole-quadrupole structure of the external magnetic field. The purpose of the research is a development of models of the propagation of the external magnetic field generated by alternating current electric machines. Results of the research: it is substantiated that to simulate the propagation of the magnetic field of electric machines, it is advisable to use the Gauss equation for the magnetic scalar potential. This will make it possible to take into account the required number of spatial harmonics of the magnetic field to ensure an acceptable calculation error. An electric machine is considered in a spherical approximation. Calculations were carried out in spherical coordinates. The distances were determined in relative radii of the electric machine - the ratio of the radius of the machine to the definition of field strength. The calculations were made for two planes of spherical coordinates and a three-dimensional image was obtained. As a result of the simulation, it is possible to determine the magnetic field strength of a four-pole electric machine at selected distances and directions around the electric machine with the required accuracy. It has been established that there are points of zero external magnetic field strength around electrical machines. Verification of the simulation results was carried out using the method of full-scale measurements of the magnetic field strength around a real four-pole machine. The measurement results showed acceptable agreement with the calculated data. Conclusions: the chosen approach and the results of modeling the propagation of the external magnetic field of electrical machines can be used to design the placement of electrical equipment, taking into account the requirements for electromagnetic safety and electromagnetic compatibility of technical equipment.
电机外磁场建模
发电机、电动机等大功率电机会产生张力很大的磁场。这些磁场会对工作人员产生负面影响,并可能破坏电子设备的稳定性。为了确定工人的安全区域、铺设通信电缆和放置敏感的电子设备,最好建立电机磁场传播模型。这样就可以在设计阶段合理布置电气设备。最常见的大功率电机是外磁场为偶极四极结构的四极电机。研究的目的是开发交流电机产生的外磁场传播模型。研究成果:研究证实,要模拟电机磁场的传播,最好使用磁标量势的高斯方程。这样可以考虑磁场所需的空间谐波数,确保计算误差在可接受范围内。在球面近似条件下考虑电机。计算以球面坐标进行。距离以电机的相对半径确定,即电机半径与磁场强度定义的比值。计算以球面坐标的两个平面进行,并获得了三维图像。仿真结果表明,可以按要求的精度确定四极电机周围选定距离和方向上的磁场强度。已经确定,在电机周围存在外部磁场强度为零的点。对模拟结果的验证采用了全面测量实际四极电机周围磁场强度的方法。测量结果显示与计算数据的一致性可以接受。结论:考虑到技术设备的电磁安全和电磁兼容性要求,所选方法和电机外部磁场传播建模结果可用于设计电气设备的布置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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