Study on Prediction of Lightning Impulses on Transmission Line Tower Due to Harsh Field and Variable Working Condition, Environmental Condition and Tower Footing Resistances

Jump To References Section

Authors

  • Dr. D. Y. Patil Institute of Technology, Pimpri, Pune - 411018, Maharashtra ,IN
  • Dr. D. Y. Patil Institute of Technology, Pimpri, Pune - 411018, Maharashtra ,IN
  • Dr. D. Y. Patil Institute of Technology, Pimpri, Pune - 411018, Maharashtra ,IN
  • Dr. Babasaheb Ambedkar Technological University (BATU), Lonere – 402103, Maharashtra ,IN
  • Dr. Babasaheb Ambedkar Technological University (BATU), Lonere – 402103, Maharashtra ,IN

DOI:

https://doi.org/10.18311/jmmf/2024/45322

Keywords:

Fuzzy Forecasting System, Lightning, Lightning Detection Network (LDN), Over Voltages

Abstract

The current state of transmission system design and development is greatly hampered by over voltages caused by lightning. To mitigate over voltage problems, researchers must be nearly obsessive. Since lightning strikes transmission and distribution network components like lines and substations, personnel are also seriously put in danger. Lightning prediction holds great significance, in addition to Lightning Detection Networks (LDNs) that offer ample information regarding lightning activity. Through the use of a fuzzy forecasting system, we are able to determine the chance of lightning in the low, medium, and high range. The method used to forecast lightning threats is provided by this system.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Downloads

Published

2024-09-17

How to Cite

Patil, G. H., Mishra, E., Maniyar, K., Rawoot, M., & Satarkar, M. F. A. R. (2024). Study on Prediction of Lightning Impulses on Transmission Line Tower Due to Harsh Field and Variable Working Condition, Environmental Condition and Tower Footing Resistances. Journal of Mines, Metals and Fuels, 72(7), 763–769. https://doi.org/10.18311/jmmf/2024/45322

Issue

Section

Articles
Received 2024-08-06
Accepted 2024-08-26
Published 2024-09-17

 

References

Rakov VA, Heidler F. “Advances in lightning protection research. J Light Res. 2012; 4:49. https://doi.org/10.2174/1652803401204010049

IEEE working group on lightning performance of transmission lines. IEE Standard 1243-1997; 1997. https://doi.org/ 10.1109/IEEESTD.1997.846603

IEEE working group on the insulation coordination. IEE guide for the application of insulation coordination. IEEE; 1999. https://doi.org/10.1109/IEEESTD.1999.90576

Anderson JG. Lightning performance of transmission lines. Transmission Lines Reference Book. 1982; 2:545597.

Yadee P, Premrudeepreechacharn S. Analysis of tower footing resistance effected back flashover across insulator in a transmission system. Environ Eng Sci. 2007.

Wang Y. Experimental studies of the production of nitrogen oxides by simulated lightning sparks. 1998.

Vijayaraghavan G, Brown M, Barnes M. Practical grounding, bonding, shielding and surge protection. Elsevier. 2004.

Gulyas A, Nemeth B, Kiss I, Berta I. Comparison of forecasting methods in preventive lightning protection - a case study. Environ Eng Sci. 2010.

Price C, Asfur M. Lightning and climate: The water vapour connection. 2001

Harid N, Griffiths H, Ullah N, Ahmeda M, Haddad A.Experimental investigation of impulse characteristics of transmission line tower footings. J Light Res. 2012; 4:36-44. https://doi.org/10.2174/1652803401204010036

Radhika G, Suryakalavathi M. Back flashover analysis improvement of a 220KV transmission line. Fifth International Conference on Advances in Recent Technologies in Communication and Computing; 2013. p. 533-536. https://doi.org/10.1049/cp.2013.2190

Ahmeda M. Earthing performance of transmission line towers; 2012.

Zhenghua F, Ling L, Junzhong F. Research on reducing grounding resistance of transmission line tower grounding grid. International Conference on Electrical and Control Engineering (ICECE). Institute of Electrical and Electronics Engineers (IEEE); 2011. p. 1216-1219. https://doi.org/10.1109/iceceng.2011.6057902

Whitehead JT. Lightning performance of TVA’s 500-kV and 161-kV transmission lines. IEEE Power Engineering Review. 1983; 3(3):43–44. https://doi.org/10.1109/mper.1983.5519246

Maniyar KG, Ingole DS. Multi response optimization of EDM process parameters for aluminium hybrid composites by GRA. Mater Today: Proc. 2018; 5(9):1983619843. https://doi.org/10.1016/j.matpr.2018.06.347

Maniyar KG, Ingole DS. Investigation of EDM process parameters for hybrid metal matrix composites. IOP Conf Ser: Mater Sci Eng. 2018; 377:012204. https://doi.org/10.1088/1757-899x/377/1/012204

Maniyar KG, Ingole DS. Mathematical modeling and optimization of EDM process parameters for aluminium hybrid composites. Mater Today: Proc. 2018; 5(14):27700-27709. https://doi.org/10.1016/j.matpr.2018.10.004

Maniyar KG, Ingole DS. Influence of EDM control factors for aluminium hybrid composites. Lecture Notes on Multidisciplinary Industrial Engineering; 2018. p.275-284. https://doi.org/10.1007/978-3-319-76276-0_27

Maniyar KG. An experimental analysis of aluminium hybrid metal matrix composites. Mate Today: Proc. 2024. https://doi.org/10.1016/j.matpr.2024.01.021

Maniyar KG, Marode RV, Chikalthankar SB. Optimization of EDM process parameters on MRR and TWR of tungsten carbide by taguchi method. Int J Eng Adv Technol. 2016; 5(3):112-116.

Maniyar KG. Analysis of EDM process parameters on material removal rate of WC. 2nd National Conference Recent Innovations in Science and Engineering. 2017; 5(9):37-39.

Maniyar KG, Swapnil K. Agrawal, Ingole DS. Optimization of multiple performance characteristics in EDM: A critical literature review. Int J Innov Techn Expl Eng. 2016; 5(10):27-33.

Maniyar KG, Deore HV. Design and testing of carbon fiber composite material with comparative analysis. Int J Res Eng Technol. 2020; 7(8):1120-1122.

Maniyar KG, Ingole DS. Current research development in machining of hybrid metal matrix composites: A review. Int J Recent Innov. Trends. 2016; 4(7):150 – 154.

Maniyar K, Jadhav P, Biradar R, Gawande J. An experimental study of process parameters for nano composites. NanoWorld J. 2024; 10(S1):S209-S211.

Maniyar K, Jadhav P, Biradar R, Gawande J. Effect of nano-lubricants on journal bearing for performance enhancement. NanoWorld J. 2024; 10(S1):S206-S208.

Maniyar K, Suhane S. Parametric analysis of electric discharge machining for nano composites. Nano World J. 2024; 10(S1):S63-S65.

Maniyar K et al., The comprehensive study for machining of metal matrix composites. AIP Conf Proc. 2024; 3196:040005. https://doi.org/10.1063/5.0227955

Maniyar K et al., An extensive study of mechanical properties and tribological characteristics for hybrid composites. AIP Conf Proc. 2024; 3149(1):030038. https://doi.org/10.1063/5.0224994

Maniyar K et al., The comprehensive study of synthesis and characterization of hybrid nano fluids. AIP Conf Proc. 2024; 3149(1):030048. https://doi.org/10.1063/5.0224988

Hayashi T, Mizuno Y, Naito K. Study on transmission line arresters for tower with high footing resistance. IEEE Trans Power Del. 2008; 23(4):2456-2460. https://doi.org/10.1109/tpwrd.2008.917892

Adegboyega GA, Odeyemi K. Assessment of soil resistivity on grounding of electrical systems: A case study of north-east zone, Nigeria. J Aca ApplStu. 2011; 1(3):28-38.

Most read articles by the same author(s)