Reradiation Interference Suppression of Power Transmission Lines Based on Characteristic Mode Theory

Author:

Tang Bo1,Wang Feng1,Zhang Jiangong2,Liu Ren1,Zhao Zhibin3

Affiliation:

1. College of Electrical Engineering and New Energy China Three Gorges University Yichang 443002 Hubei China

2. State Key Laboratory of Power Grid Environmental Protection China Electric Power Research Institute Wuhan 430073 Hubei China

3. College of Electrical and Electronic Engineering North China Electric Power University Beijing 100096 China

Abstract

In order to decrease the reradiation interference (RRI) of power transmission lines, aiming at the defects that the existing RRI suppression methods cannot be applied to the constructed power transmission lines, and cannot suppress all the RRI extreme values in the frequency band, this paper innovatively proposes a RRI suppression method based on characteristic mode (CM) theory. Firstly, we briefly introduce the CM theory and decompose the total scattering field into the superposition of the characteristic electric fields; secondly, the influence of inductance and capacitance characteristics of the reactive loads on radiation behavior of the CMs is analyzed, and the ideal position for reactive loading is also discussed to reduce the contribution of CM to the total RRI; finally, a simulation experiment is carried out in AM broadcasting band, and the modal weighting coefficients of main CMs affecting the RRI is greatly reduced in the frequency band by reactive loading. Simulation results show that compared with the existing method, the proposed method can reduce the peak value of RRI by 43.9% and the overall RRI by 29.7%. © 2023 Institute of Electrical Engineer of Japan and Wiley Periodicals LLC.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrical and Electronic Engineering

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