Protecting Distance between Radar Stations and UHV Power Transmission Lines

Jiangong Zhang, Jiawei Yang, B. Tang, Bin Hao, Gan Zheyuan
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引用次数: 2

Abstract

With the construction of UHV (Ultra-High Voltage) transmission lines and radar stations, the interference of UHV transmission lines to air intelligence radar stations has become increasingly prominent. Aiming at the problem that it is difficult to solve the loss of radar detection range caused by UHV transmission lines, the idea of using RCS (Radar Cross Section) of UHV transmission towers as an intermediate parameter to solve the radar detection range loss is proposed. In order to solve the problem of accuracy when using Physical Optics (PO) to solve such electromagnetic scattering problems of complex structures, the traditional PO method needs to be improved when used in the calculation of the large-size’s scattering field like the UHV tower. It is proposed to use Incremental Length Diffraction Coefficient (ILDC) to revise the diffraction of the edge of the tower, and to study the coupling conditions with the PO method, so as to solve the scattering field of the complex structure of the tower. Based on this, 5 UHV transmission towers’ model is established to simulate the UHV transmission lines, and the regular variation of radar detection loss with the distance between the two systems is studied. These results show that when the distance between the UHV transmission lines and the radar station is more than 2200 m, the loss can reach within 0.9 dB of the standard, which is in line with the standard for the construction around the air intelligence radar station.
保护雷达站与特高压输电线路之间的距离
随着特高压输电线路和雷达站的建设,特高压输电线路对空中情报雷达站的干扰日益突出。针对特高压输电线路造成的雷达探测距离损失难以解决的问题,提出了利用特高压输电塔雷达截面(RCS)作为中间参数来解决雷达探测距离损失的思路。为了解决物理光学(Physical Optics, PO)在求解复杂结构的电磁散射问题时的精度问题,在计算特高压塔等大型散射场时,需要对传统的PO方法进行改进。提出利用增量长度衍射系数(ILDC)修正塔边缘的衍射,并研究与PO法的耦合条件,从而求解塔复杂结构的散射场。在此基础上,建立了5个特高压输电塔的模型,模拟了特高压输电线路,研究了雷达探测损耗随两系统距离的变化规律。结果表明,当特高压输电线路与雷达站之间的距离大于2200 m时,损耗可达到0.9 dB以内的标准,符合空中情报雷达站周边建设的标准。
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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