Simulation Study on Safe Distance between Crane Boom and High-Voltage Line Based on Electric Field Intensity

Author:

Luo Xi,Yin Mengqi,Xu Ce,Tang Guanrong

Abstract

Abstract Aiming at the safety accident caused by the close distance between the crane arm and the high-voltage line when the crane is working near the high-voltage transmission line, this paper proposes a simulation model of the electric field intensity distribution of the high-voltage transmission line. First, through the simplification and equivalent treatment of the high-voltage line, the simulation modeling, and analysis of the electric field around the high-voltage line are carried out. Then, the theory of solving the electric field intensity of any point around the high-voltage line based on the charge simulation method is deduced, and the conclusion that the electric field intensity at the equal distance of the high-voltage line is approximately equal is obtained. Furthermore, the influence of the crane on the electric field strength of a high-voltage line is analyzed, and the linear correction function of electric field strength is obtained. Based on the research in this paper, the field strength sensor can be used to obtain the value of the electric field strength, calculate the distance between the crane and the high-voltage line, and make a safety warning response. The simulation results verify the feasibility and effectiveness of the proposed model and method.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference13 articles.

1. Research and application of UHV power transmission in China;Shu;High voltage,2018

2. Special Vehicles to Prevent Touching High-voltage Lines Monitoring and Warning Device;Zhao;Journal of Physics: Conference Series,2021

3. Early Warning Method and Device Design of Anti-Collision Line for Transmission Line Based on Multi-Source Sensing;Lu;Laser and Optoelectronics Progress,2022

4. Electric shock-proof alarming system of crane based on field measurement;Cai;Journal of Safety Science and Technology,2010

5. Safety Control System of Hoisting Operation Based on UWB and Visual Information;Zhang;Instrument Technique and Sensor,2021

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