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Fast Analytical Computation of Power-Line Magnetic Fields by Complex Vector Method

机译:电力线磁场的复矢量法快速解析计算

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摘要

The electromagnetic environment related to electric power installations is typically evaluated by numerical integration methods. Numerical techniques, although powerful, are not well suited for assessing the dependence of the field strength on electric and geometric parameters. In this paper, a fast procedure to analytically evaluate power-line magnetic fields, based on complex vectors, is proposed. The use of complex algebra greatly simplifies analytical calculations compared to other approaches proposed in literature, allowing also complex conductor arrangements to be taken into account. A general formula for the magnetic-field intensity of any multiphase single-circuit line configuration is obtained. An expression for practical three-phase line configurations is simply derived as a particular case of the general formula. The proposed approach is then extended successfully to double-circuit lines, taking the load differences between circuits into account. Approximate formulas are validated by comparing magnetic flux density values with those computed from the general expression.
机译:通常通过数值积分方法评估与电力设施相关的电磁环境。数值技术虽然功能强大,但并不十分适合于评估场强对电参数和几何参数的依赖性。本文提出了一种基于复杂矢量的电力线磁场分析评估的快速程序。与文献中提出的其他方法相比,复数代数的使用大大简化了分析计算,从而也可以考虑复杂的导体布置。获得了任何多相单回路线路配置的磁场强度的通用公式。实用的三相线路配置的表达式可以简单地作为通用公式的特殊情况得出。考虑到电路之间的负载差异,然后将建议的方法成功扩展到双回线。通过将磁通量密度值与根据一般表达式计算出的磁通量密度值进行比较,可以验证近似公式。

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