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Energy Usage and Stability Analysis of Industrial Feeder with ETAP

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Part of the book series: Lecture Notes on Data Engineering and Communications Technologies ((LNDECT,volume 35))

Abstract

As a growing technology the energy demand is also increasing day by day. To meet the total demand of consumers and to equalize demand with generation several methods carried out under energy conservation and one of the most popular and effective method is Energy auditing. With this scenario, the audit team conducted a preliminary audit on the industrial loads with 27 industries in a single feeder. A preliminary audit conducted and collected data through all the possible ways. Then detailed analysis completed through ETAP software of all the collected data and suggested recommendations based on the observed data to the consumers. These recommendations implemented and tested the stability analysis of the system with ETAP software and concluded with the reduction of energy consumption from various industries.

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Acknowledgements

The authors expressed their valuable gratitude to Er. A.C.S. Arun Kumar, President of Dr. M.G.R. Educational and Research Institute, Who provide constant Institutional support to the MGR Vision 10 MW initiative. We convey our special thanks to Principal, HOD and Faculty Mentors of RMK Engineering College who supported for the project. We also thank to the mentors, who provided technical support for the project from the Energy Efficiency Research Group (GREEN9).

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Correspondence to S. Kumaravelu .

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The authors declare that ethical approval for data is not needed for this project. The data’s were collected from the s6 private industry with their approval.

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Kumaravelu, S., Rubesh, J.R., Kumar, K.S., Abhishek, A., Ramesh, L. (2020). Energy Usage and Stability Analysis of Industrial Feeder with ETAP. In: Hemanth, D.J., Kumar, V.D.A., Malathi, S., Castillo, O., Patrut, B. (eds) Emerging Trends in Computing and Expert Technology. COMET 2019. Lecture Notes on Data Engineering and Communications Technologies, vol 35. Springer, Cham. https://doi.org/10.1007/978-3-030-32150-5_25

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