An Equivalent Heat Transfer Model Instead of Wind Speed Measuring for Dynamic Thermal Rating of Transmission Lines

Author:

Liu Zhao,Deng HongleiORCID,Peng Ruidong,Peng Xiangyang,Wang Rui,Zheng Wencheng,Wang Pengyu,Guo Deming,Liu GangORCID

Abstract

With the increase in electricity demand, the ampacity calculation based on the dynamic thermal rating (DTR) technology is increasingly significant for assessing and improving the power transfer capacity of the existing overhead conductors. However, the DTR models now available present some inadequacies in measurement techniques related to wind speed. Therefore, it is essential to propose a new model instead of wind speed measuring in DTR technology. In this paper, the influence analysis of various weather parameters on the conductor ampacity is carried out by using the real weather data. Based on the analysis, it is confirmed that the impact of wind speed is significant, especially in the case of the low wind speed. Moreover, an equivalent heat transfer (EHT) model for DTR technology is proposed instead of wind speed measuring. For this EHT model, the calculation of conductor ampacity is realized through investigating the correlation of heat losses between the heating aluminum (Al) ball and conductor. Finally, combined with the finite element method (FEM), the EHT model proposed in this paper is verified by the Institute of Electrical and Electronic Engineers (IEEE) standard. The results indicate that the error of the EHT model is less than 6% when employing the steady thermal behavior of the Al ball to calculate the ampacity. The EHT model is useful in the real-time thermal rating of overhead conductors. It can increase the utilization of overhead conductors while also avoiding the limitation of the existing measurement techniques related to wind speed.

Funder

the National Natural Science Foundation of China

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)

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1. Dynamic rating method of traction network based on wind speed prediction;Archives of Electrical Engineering;2024-01-02

2. Research on Dynamic Capacity-increase Technique Based on Spatial Interpolation Methods of Transmission Line Meteorological Data;2023 3rd International Conference on New Energy and Power Engineering (ICNEPE);2023-11-24

3. Another Way of Skin Effect Calculation for ACSR Conductors;2023 Seminar on Electrical Engineering, Automation & Control Systems, Theory and Practical Applications (EEACS);2023-11-23

4. Research on On-line Prediction of Contact Resistance and Maximum Load Capacity of Switchgear Cabinet in Operation;2022 5th International Conference on Mechatronics, Robotics and Automation (ICMRA);2022-11-25

5. Improvement and sensitivity analysis of equivalent heat transfer model for dynamic thermal rating of overhead lines;Thermal Science;2022

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