Suppression Measures of Partial Discharge at Rod–Plate Connection in Composite Tower

Author:

Hao Jinpeng1,Huang Jinzhu2,Fang Ziyi1,He Xiao3,Wu Qiang3,Gu Xiaolong3,Wang Yu3,Wu Hong1

Affiliation:

1. State Grid Ningxia Electric Power Research Institute, Yinchuan 750011, China

2. Power Grid Guyuan Electric Power Supply Company, Guyuan 756000, China

3. School of Electrical Engineering and Automation, Wuhan University, Wuhan 430072, China

Abstract

Rods and plates at the connections in composite insulating material towers are commonly fixed to each other by metal bolts, which may cause electrical field distortion at the connections. So, the rod–plate connections are prone to partial discharge under polluted and wet conditions, and the resulting electric field and temperature changes can affect the mechanical and electrical performance of the whole tower. In this paper, an artificial pollution test synchronous observation platform with an infrared and visible light imager, leakage current, and voltage measurement was built to observe the dry band formation and partial discharge at the simplified rod–plate connections in the composite towers. Then, the electric field simulation of the rod–plate connection specimen showed the current density distribution. When combining the test and the simulation, it was concluded that the cause of the partial discharge was the distortion of the current density and, thus, measures to suppress the partial discharge at the rod–plate connections were proposed. Finally, it was verified that the measures can improve the current density distortion phenomenon, delay dry band formation, and effectively suppress the partial discharge at the rod–plate connections under the same test conditions.

Funder

Technology Project of State Grid Ningxia Electric Power Co., Ltd.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference21 articles.

1. Pultruded Poles Carry Power;Stewart;Reinf. Plast.,2003

2. Composite Materials As an Alternative to Replace Steel Members on Lattice Power Transmission Towers;J. Mater. Civ. Eng.,2016

3. Application Research of FRP in the Transmission Structures;Lin;Electr. Power,2014

4. Electrical Structure Design of Lattice Composite Material Tower of 110 kV Double Circuit Transmission Line;Zhijun;Power Syst. Technol.,2015

5. Structure Analysis of Carbon Fiber Reinforced GFRP Transmission Tower;Lei;Eng. Plast. Appl.,2018

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