Review
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Year 2024, Volume: 9 Issue: 1, 60 - 69, 30.12.2024
https://doi.org/10.55088/ijesg.1596043

Abstract

References

  • H. Guan, X. Sun, Y. Su, T. Hu, H. Wang, H. Wang, C. Peng, Q. Guo, UAV-lidar aids automatic intelligent powerline inspection, Int. J. Electr. Power Energy Syst. 130, 106987, 2021 https://doi.org/10.1016/j.ijepes.2021.106987.
  • S. Rezwan, W. Choi, Artificial Intelligence Approaches for UAV Navigation: Recent Advances and Future Challenges, IEEE Access. 10, 26320–26339, 2022. https://doi.org/10.1109/ACCESS.2022.3157626.
  • C. Shuai, H. Wang, G. Zhang, Z. Kou, W. Zhang, Power lines extraction and distance measurement from binocular aerial images for power lines inspection using UAV, Proc. - 9th Int. Conf. Intell. Human-Machine Syst. Cybern. IHMSC 2017. 2, 69–74., 2017. https://doi.org/10.1109/IHMSC.2017.131.
  • A. Lekidis, A.G. Anastasiadis, G.A. Vokas, Electricity infrastructure inspection using AI and edge platform-based UAVs, Energy Reports. 8, 1394–1411, 2022. https://doi.org/10.1016/j.egyr.2022.07.115.
  • K. Takaya, H. Ohta, V. Kroumov, K. Shibayama, M. Nakamura, Development of UAV system for autonomous power line inspection, 2019 23rd Int. Conf. Syst. Theory, Control Comput. ICSTCC 2019 - Proc. 762–767, 2019. https://doi.org/10.1109/ICSTCC.2019.8885596.
  • Z. Bin Ou, Z.H. Huang, S. Qiu, Application of Computer Remote Control UAV in Transmission Line Inspection, Proc. 2024 IEEE 7th Int. Electr. Energy Conf. CIEEC 2024. 1–6, 2024. https://doi.org/10.1109/CIEEC60922.2024.10583491.
  • K. Li, X. Yan, Y. Han, Multi-mechanism swarm optimization for multi-UAV task assignment and path planning in transmission line inspection under multi-wind field, Appl. Soft Comput. 150, 111033, 2024. https://doi.org/10.1016/j.asoc.2023.111033.
  • X.L. Chen, Y.H. Jia, X.C. Liao, W.N. Chen, A fuzzy grouping-based memetic algorithm for multi-depot multi-UAV power pole inspection, Appl. Soft Comput. 168, 112472, 2025. https://doi.org/10.1016/j.asoc.2024.112472.
  • F. Azevedo, A. Dias, J. Almeida, A. Oliveira, A. Ferreira, T. Santos, A. Martins, E. Silva, LiDAR-based real-time detection and modeling of power lines for unmanned aerial vehicles, Sensors (Switzerland). 19, 1–28, 2019. http://doi.org/10.3390/s19081812.
  • S. Fang, C. Haiyang, L. Sheng, W. Xiaoyu, A Framework of Power Pylon Detection for UAV-based Power Line Inspection, Proc. 2020 IEEE 5th Inf. Technol. Mechatronics Eng. Conf. ITOEC 2020. 350–357, 2020. https://doi.org/10.1109/ITOEC49072.2020.9141693.
  • C. Yu, B. Qu, Y. Zhu, Y. Ji, H. Zhao, Z. Xing, Design of the Transmission Line Inspection System Based on UAV, 2020 10th Int. Conf. Power Energy Syst. ICPES 2020, 543–548, 2020. https://doi.org/10.1109/ICPES51309.2020.9349675.
  • D.-Q. Chen, X.-H. Guo, P. Huang, F.-H. Li, Safety Distance Analysis of 500kV Transmission Line Tower UAV Patrol Inspection, IEEE Lett. Electromagn. Compat. Pract. Appl. 2, 124–128, 2022. https://doi.org/10.1109/lemcpa.2020.3040878.
  • Q. Du, W. Dong, W. Su, Q. Wang, UAV Inspection Technology and Application of Transmission Line, 2022 IEEE 5th Int. Conf. Inf. Syst. Comput. Aided Educ. ICISCAE 2022. 594–597, 2022. https://doi.org/10.1109/ICISCAE55891.2022.9927674.
  • Z. Hao, H. Yu, W. Yu, L. Binbin, C. Yi, W. Cong, Z. Ning, Design and implementation of UAV inspection and control platform for transmission lines, Proc. - 2023 8th Int. Conf. Inf. Syst. Eng. ICISE 2023. 620–624, 2023. https://doi.org/10.1109/ICISE60366.2023.00136.
  • Y. Zhang, L. Dong, J. Luo, L. Lu, T. Jiang, X. Yuan, T. Kang, L. Jiang, Intelligent Inspection Method of Transmission Line Multi Rotor UAV Based on Lidar Technology, Proc. - 2022 8th Annu. Int. Conf. Netw. Inf. Syst. Comput. ICNISC 2022. 232–236, 2022. https://doi.org/10.1109/ICNISC57059.2022.00055.
  • K. He, Q. Zhou, Y. Shen, J. Gao, Z. Shuai, Spatiotemporal Precise Routing Strategy for Multi-UAV-Based Power Line Inspection Using Hybrid Network of FANET and Satellite Internet, 2023 IEEE IAS Ind. Commer. Power Syst. Asia, I CPS Asia 2023, 1013–1018, 2023. https://doi.org/10.1109/ICPSAsia58343.2023.10294832.
  • T. He, Y. Zeng, Z. Hu, Research of multi-rotor uavs detailed autonomous inspection technology of transmission lines based on route planning, IEEE Access. 7, 114955–114965, 2019. https://doi.org/10.1109/ACCESS.2019.2935551.
  • É. Gendron, M.A. Leclerc, S. Hovington, É. Perron, D. Rancourt, A. Lussier-Desbiens, P. Hamelin, A. Girard, Assessing wind impact on semi-autonomous drone landings for in-contact power-line inspection, Drone Syst. Appl. 12 1–16., 2024. https://doi.org/10.1139/dsa-2023-0036.
  • R. Dianovský, P. Pecho, P. VeIký, M. Hrúz, Electromagnetic Radiation from High-Voltage Transmission Lines: Impact on UAV Flight Safety and Performance, Transp. Res. Procedia. 75, 209–218, 2023. https://doi.org/10.1016/j.trpro.2023.12.024.
  • X. Zhang, M. Yang, D. Wang, B. Chen, K. Song, Journal of Radiation Research and Applied Sciences A transmission line tower tilt detection method based on BeiDou positioning signals and UAV inspection images, J. Radiat. Res. Appl. Sci. 17, 101192, 2024. https://doi.org/10.1016/j.jrras.2024.101192.
  • X. Zheng, Z. Ding, X. Zhang, C. Mu, Path planning of power line inspection based on DDPG for obstacle avoidance with UAV, 2023 IEEE 6th Int. Electr. Energy Conf. CIEEC 2023, 2919–2923, 2023. https://doi.org/10.1109/CIEEC58067.2023.10165749.
  • Y. Xi, J. Chen, X. Tao, Obstacle Detection and Avoidance Algorithm in UAV Patrol Inspection of Transmission Lines Based on Multi-Source Data Fusion and Computer Vision, Proc. - 2024 Int. Conf. Telecommun. Power Electron. TELEPE 2024, 614–619, 2024. https://doi.org/10.1109/TELEPE64216.2024.00116.

TRANSMISSION LINE INSPECTION WITH UAVS: A REVIEW OF TECHNOLOGIES, APPLICATIONS, AND CHALLENGES

Year 2024, Volume: 9 Issue: 1, 60 - 69, 30.12.2024
https://doi.org/10.55088/ijesg.1596043

Abstract

Regular inspection of energy transmission lines plays a critical role to ensure the safety of energy infrastructures and minimise failure risks. While traditional inspection methods have limitations such as high cost, long duration and hazardous working conditions, unmanned aerial vehicles (UAVs) are emerging as an innovative alternative in this field. This paper provides a comprehensive review of the use of UAVs in the inspection of power transmission lines, focusing on the sensor technologies, artificial intelligence algorithms and field applications. The integration of LiDAR, thermal camera and multispectral sensors into UAVs offers many advantages such as three-dimensional modelling of power lines, detection of thermal anomalies and assessment of environmental risks. In addition, deep learning and reinforcement learning algorithms have been observed to improve the performance of UAVs by accelerating data processing and improving autonomous navigation. In this study, different approaches and case studies in the literature are analysed in detail, and the strengths and limitations of UAV-based inspection systems are comparatively evaluated. Accordingly, environmental challenges, sensor integration and legal regulations stand out as the main obstacles faced by these technologies in field applications. However, it is emphasised that significant improvements in data processing processes can be achieved with the integration of 5G technology and edge computing systems. This study not only evaluates the current status of UAVs in the inspection of energy infrastructures, but also provides recommendations for future research. More widespread adoption of UAV-based inspection systems will contribute to a more reliable, efficient and sustainable management of the energy sector.

References

  • H. Guan, X. Sun, Y. Su, T. Hu, H. Wang, H. Wang, C. Peng, Q. Guo, UAV-lidar aids automatic intelligent powerline inspection, Int. J. Electr. Power Energy Syst. 130, 106987, 2021 https://doi.org/10.1016/j.ijepes.2021.106987.
  • S. Rezwan, W. Choi, Artificial Intelligence Approaches for UAV Navigation: Recent Advances and Future Challenges, IEEE Access. 10, 26320–26339, 2022. https://doi.org/10.1109/ACCESS.2022.3157626.
  • C. Shuai, H. Wang, G. Zhang, Z. Kou, W. Zhang, Power lines extraction and distance measurement from binocular aerial images for power lines inspection using UAV, Proc. - 9th Int. Conf. Intell. Human-Machine Syst. Cybern. IHMSC 2017. 2, 69–74., 2017. https://doi.org/10.1109/IHMSC.2017.131.
  • A. Lekidis, A.G. Anastasiadis, G.A. Vokas, Electricity infrastructure inspection using AI and edge platform-based UAVs, Energy Reports. 8, 1394–1411, 2022. https://doi.org/10.1016/j.egyr.2022.07.115.
  • K. Takaya, H. Ohta, V. Kroumov, K. Shibayama, M. Nakamura, Development of UAV system for autonomous power line inspection, 2019 23rd Int. Conf. Syst. Theory, Control Comput. ICSTCC 2019 - Proc. 762–767, 2019. https://doi.org/10.1109/ICSTCC.2019.8885596.
  • Z. Bin Ou, Z.H. Huang, S. Qiu, Application of Computer Remote Control UAV in Transmission Line Inspection, Proc. 2024 IEEE 7th Int. Electr. Energy Conf. CIEEC 2024. 1–6, 2024. https://doi.org/10.1109/CIEEC60922.2024.10583491.
  • K. Li, X. Yan, Y. Han, Multi-mechanism swarm optimization for multi-UAV task assignment and path planning in transmission line inspection under multi-wind field, Appl. Soft Comput. 150, 111033, 2024. https://doi.org/10.1016/j.asoc.2023.111033.
  • X.L. Chen, Y.H. Jia, X.C. Liao, W.N. Chen, A fuzzy grouping-based memetic algorithm for multi-depot multi-UAV power pole inspection, Appl. Soft Comput. 168, 112472, 2025. https://doi.org/10.1016/j.asoc.2024.112472.
  • F. Azevedo, A. Dias, J. Almeida, A. Oliveira, A. Ferreira, T. Santos, A. Martins, E. Silva, LiDAR-based real-time detection and modeling of power lines for unmanned aerial vehicles, Sensors (Switzerland). 19, 1–28, 2019. http://doi.org/10.3390/s19081812.
  • S. Fang, C. Haiyang, L. Sheng, W. Xiaoyu, A Framework of Power Pylon Detection for UAV-based Power Line Inspection, Proc. 2020 IEEE 5th Inf. Technol. Mechatronics Eng. Conf. ITOEC 2020. 350–357, 2020. https://doi.org/10.1109/ITOEC49072.2020.9141693.
  • C. Yu, B. Qu, Y. Zhu, Y. Ji, H. Zhao, Z. Xing, Design of the Transmission Line Inspection System Based on UAV, 2020 10th Int. Conf. Power Energy Syst. ICPES 2020, 543–548, 2020. https://doi.org/10.1109/ICPES51309.2020.9349675.
  • D.-Q. Chen, X.-H. Guo, P. Huang, F.-H. Li, Safety Distance Analysis of 500kV Transmission Line Tower UAV Patrol Inspection, IEEE Lett. Electromagn. Compat. Pract. Appl. 2, 124–128, 2022. https://doi.org/10.1109/lemcpa.2020.3040878.
  • Q. Du, W. Dong, W. Su, Q. Wang, UAV Inspection Technology and Application of Transmission Line, 2022 IEEE 5th Int. Conf. Inf. Syst. Comput. Aided Educ. ICISCAE 2022. 594–597, 2022. https://doi.org/10.1109/ICISCAE55891.2022.9927674.
  • Z. Hao, H. Yu, W. Yu, L. Binbin, C. Yi, W. Cong, Z. Ning, Design and implementation of UAV inspection and control platform for transmission lines, Proc. - 2023 8th Int. Conf. Inf. Syst. Eng. ICISE 2023. 620–624, 2023. https://doi.org/10.1109/ICISE60366.2023.00136.
  • Y. Zhang, L. Dong, J. Luo, L. Lu, T. Jiang, X. Yuan, T. Kang, L. Jiang, Intelligent Inspection Method of Transmission Line Multi Rotor UAV Based on Lidar Technology, Proc. - 2022 8th Annu. Int. Conf. Netw. Inf. Syst. Comput. ICNISC 2022. 232–236, 2022. https://doi.org/10.1109/ICNISC57059.2022.00055.
  • K. He, Q. Zhou, Y. Shen, J. Gao, Z. Shuai, Spatiotemporal Precise Routing Strategy for Multi-UAV-Based Power Line Inspection Using Hybrid Network of FANET and Satellite Internet, 2023 IEEE IAS Ind. Commer. Power Syst. Asia, I CPS Asia 2023, 1013–1018, 2023. https://doi.org/10.1109/ICPSAsia58343.2023.10294832.
  • T. He, Y. Zeng, Z. Hu, Research of multi-rotor uavs detailed autonomous inspection technology of transmission lines based on route planning, IEEE Access. 7, 114955–114965, 2019. https://doi.org/10.1109/ACCESS.2019.2935551.
  • É. Gendron, M.A. Leclerc, S. Hovington, É. Perron, D. Rancourt, A. Lussier-Desbiens, P. Hamelin, A. Girard, Assessing wind impact on semi-autonomous drone landings for in-contact power-line inspection, Drone Syst. Appl. 12 1–16., 2024. https://doi.org/10.1139/dsa-2023-0036.
  • R. Dianovský, P. Pecho, P. VeIký, M. Hrúz, Electromagnetic Radiation from High-Voltage Transmission Lines: Impact on UAV Flight Safety and Performance, Transp. Res. Procedia. 75, 209–218, 2023. https://doi.org/10.1016/j.trpro.2023.12.024.
  • X. Zhang, M. Yang, D. Wang, B. Chen, K. Song, Journal of Radiation Research and Applied Sciences A transmission line tower tilt detection method based on BeiDou positioning signals and UAV inspection images, J. Radiat. Res. Appl. Sci. 17, 101192, 2024. https://doi.org/10.1016/j.jrras.2024.101192.
  • X. Zheng, Z. Ding, X. Zhang, C. Mu, Path planning of power line inspection based on DDPG for obstacle avoidance with UAV, 2023 IEEE 6th Int. Electr. Energy Conf. CIEEC 2023, 2919–2923, 2023. https://doi.org/10.1109/CIEEC58067.2023.10165749.
  • Y. Xi, J. Chen, X. Tao, Obstacle Detection and Avoidance Algorithm in UAV Patrol Inspection of Transmission Lines Based on Multi-Source Data Fusion and Computer Vision, Proc. - 2024 Int. Conf. Telecommun. Power Electron. TELEPE 2024, 614–619, 2024. https://doi.org/10.1109/TELEPE64216.2024.00116.
There are 22 citations in total.

Details

Primary Language English
Subjects Electrical Engineering (Other)
Journal Section Review
Authors

Esra İnce 0000-0001-9258-4178

Publication Date December 30, 2024
Submission Date December 4, 2024
Acceptance Date December 25, 2024
Published in Issue Year 2024 Volume: 9 Issue: 1

Cite

IEEE E. İnce, “TRANSMISSION LINE INSPECTION WITH UAVS: A REVIEW OF TECHNOLOGIES, APPLICATIONS, AND CHALLENGES”, IJESG, vol. 9, no. 1, pp. 60–69, 2024, doi: 10.55088/ijesg.1596043.

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