Study on Dynamic Line Rating of Overhead Transmission Line Based on Large-Scale New Energy Power Grid Connection

Author:

Peng Zhengwei,Shi Jinzhi,Li Yanyan,Huang Junhan,Zhao Jinquan

Abstract

Abstract With increasing new energy power grid connections and increasingly complex user loads, higher ampacity is required during peak power demand. Construction of new transmission lines can cost a lot and is limited by the environment and the shortage of land resources. Considering the intermittency of new energy power generation, dynamic line rating can increase the power transmission capacity of existing lines by exploiting their potential capacity. In this paper, the ampacity of transmission lines is calculated accurately, and influencing factors of ampacity are studied. Additionally, temperature change patterns and field distribution of the lines are studied. The results show that wind speed, ambient temperature, and sunshine intensity are the three main factors affecting the ampacity. Wind speed is proportional to ampacity, while ambient temperature and sunshine intensity are opposite. Then, it is found that the thermal inertia effect of transmission lines that temperature change lags behind current change can be utilized for ampacity enhancement. Furthermore, the radial temperature difference is found in the lines, and excessive temperature differences may accompany the risk of strand breakage. It is of great significance to study the temperature field of the lines for dynamic line rating based on large-scale new energy power grid connections.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference13 articles.

1. A method of dynamic rating of the ultra high voltage transmission line;Ji;Power System Protection and Control,2015

2. Study on dynamic capacity-increase for overhead lines;Zhang;Guangdong Electric Power,2012

3. Study and application on dynamic line rating of transmission lines;Hou;Automation of Electric Power Systems,2021

4. Key technologies and application prospects for operation and maintenance of power equipment in new type power system;Sheng;High Voltage Engineering,2021

5. Review of ampacity computational model of transmission line’s dynamic capacity-increase;Dai;Guangdong Electric Power,2012

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1. Multiple Benefits Evaluation of Mechanized Construction of 110 kV Transmission Lines;Lecture Notes in Electrical Engineering;2024

2. Static Voltage Stability Analysis of Power Grid with UPFC Considering Wind Power Uncertainty;2023 5th International Conference on Electrical Engineering and Control Technologies (CEECT);2023-12-15

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