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Electric Field Reduction in an EHV Substation for Occupational Exposure via Transposition of Conductors

机译:在EHV变电站中通过换位减少职业接触中的电场

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An attempt is made to reduce the maximum value of rms electric field (E-field) via the transposition of conductors in a 765-kV substation with reference to the occupational exposure. The method is applied to a extra-high-voltage substation, which is under construction. The effect of transposing the bay conductors (alone) and the bus conductors (alone) on the E-field distribution (at 2 m above the ground) over the area of the substation is discussed. Also, the topology of substation conductors that results in the minimum value for the maximum of rms E-fields is obtained via simultaneous transpositions of the bus and bay conductors. The area of the substation where the rms E-field exceeds the reference value of 10 kV/m (International Commission on Non-Ionizing Radiation Protection occupational exposure limit) is also reported for the existing topology. For this topology, the computed maximum value of the rms E-field over the area of the substation is 13.06 kV/m. This E-field is reduced to 7.999 kV/m with the best configuration of substation conductors obtained via transposition. The charge-simulation-method-based generalized algorithm for obtaining the best topology (among all permutations) of substation conductors, which results in the minimum value for the maximum of rms E-field magnitudes over the substation area is also reported.
机译:尝试通过参考765-kV变电站中的导体换位来减小rms电场(电场)的最大值。该方法适用于正在建设中的超高压变电站。讨论了在变电站区域内布置间隔导体(单独)和总线导体(单独)对电场分布(离地面2 m)的影响。同样,通过同时换位的母线和间隔导体可以获得变电站导体的拓扑结构,该拓扑结构将导致最大均方根电场的最小值。还报告了现有拓扑的变电站有效值电场超过参考值10kV / m(国际非电离辐射防护委员会职业暴露限值)的区域。对于这种拓扑,变电站区域内的RMS电场的计算最大值为13.06kV / m。通过变位获得的最佳配置的变电站导体,该电场降低到7.999 kV / m。还报告了基于电荷模拟方法的通用算法,该算法可用于获取变电站导体的最佳拓扑(在所有排列中),从而使变电站区域内的均方根电场强度最大值达到最小值。

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