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Calculation of Electromagnetic Field Produced by Mixed Overhead Power Lines

机译:混合架空电力线产生的电磁场的计算

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The main goal of this paper is the investigation of the electromagnetic field produced by mixed overhead power lines, containing two three-phase electric systems on different voltage levels; middle-voltage system, for the distribution purpose and the low-voltage level, for the supply of consumers. In this paper electric and magnetic field produced by maximal load of two symmetrical systems were explored. The calculation was performed for the situation when only MV system is in function and the case when both systems are operational. Electric and magnetic field are calculated separately, applying COMSOL Multiphysics computer program package, based on Finite Element Method. As expected, electric field, produced by a MV system is dominant and the contribution of LV system is neglizible. On the other hand, since the phase currents in the both systems can be of the same order, magnetic field of both systems must be taking into account. Moreover, with the different phase arrangement it can be achieved the minimal values of magnetic field in vicinity of the system conductors, which is crucial for the environment protection. The investigated model was the real system, applied in Serbia. The results of the calculations are presented graphically, by the diagrams of electric field strength vector spatial distribution in vicinity of the system, as well as the diagrams of magnetic flux density vector spatial distribution.
机译:本文的主要目的是研究混合架空电力线产生的电磁场,该电力线包含两个电压等级不同的三相电力系统。中压系统,用于配电目的和低压水平,用于消费者的供电。本文研究了两个对称系统的最大载荷所产生的电场和磁场。针对仅在MV系统正常运行时的情况以及两个系统均在运行时的情况进行了计算。使用COMSOL Multiphysics计算机程序包,基于有限元方法,分别计算电场和磁场。不出所料,中压系统产生的电场占主导地位,而低压系统的贡献可忽略不计。另一方面,由于两个系统中的相电流可以相同,因此必须考虑两个系统的磁场。此外,通过不同的相位布置,可以实现系统导体附近磁场的最小值,这对于环境保护至关重要。所研究的模型是在塞尔维亚应用的实际系统。计算结果通过系统附近的电场强度矢量空间分布图以及磁通密度矢量空间分布图以图形方式呈现。

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