Cost Benefit Analysis for Electrical Loading System for Transformers of a Barangay

Author:

Manabat Carmela Mady B.1,Alejo Marielle C.2,Cruz. Loraine V. Dela3,Apan Joseph M.4,Jr, Renato D. Erasquin4

Affiliation:

1. Municipal Engineering Department, Local Government Unit of General Tinio, General Tinio, Nueva Ecija, Philippines

2. Department of Public Works and Highways, Talavera, Nueva Ecija, Philippines.

3. Municipal Engineering Department, Local Government Unit of Talavera, Talavera, Nueva Ecija, Philippines

4. Agriculture Department, Local Government Unit of Cabanatuan, Cabanatuan, Nueva Ecija, Philippines.

Abstract

The study assessed the cost and benefit of electrical loading management of transformers. There is a serious occurrence of over and under loaded transformer which deeply affects the power quality or system loss and reliability of the distribution lines. Initially, the percent loading of the 27 transformers of Feeder 21 were identified using Microsoft Excel 2016. Then, the identified transformers were classified into three categories; overload (greater than 70%), under loaded (less than 40%) and normal loaded (40-70%). Through this process, three (3) solutions were identified: Solution I - change the transformer rating, Solution II – merge and transfer transformer loadsand Solution III - combine solution I and II. The three-solution used to identify the new percent loading to meet the normal percent loading (40-69%). Subsequently, the reduced Core and Copper Losses, Annual Energy Save, Savings and Benefit/Cost Ratio were computed and analyzed to determine the impact of loadingmanagement. The results show that there was an accumulated savings of Php 332,060.08 for Solution I, Php 92,043.09 for Solution II and Php 252,045.78 for Solution III. In the case of Benefit/Cost ratio it should be greater than 1 (>1) for a project to be economically feasible and justifiable; Solution I was 1.22, Solution II was 687.3 and 1.93 for Solution III. Based on the results of the study, SolutionIII was best among the three, for it has met the criteria of all transformers were all in normal loaded (40-70%) condition, and greater than 1 benefit/cost ratio.

Publisher

Blue Eyes Intelligence Engineering and Sciences Engineering and Sciences Publication - BEIESP

Subject

Computer Science Applications,General Engineering,Environmental Engineering

Reference11 articles.

1. R. Singh and A. Singh, (2010). Causes of Failure of Distribution Transformer in India, 2010 9th International Conference on Environment and Electrical Engineering

2. R H. Gomez Jr, E. Santos, A. Tolentino, E Bulanan, and N. Florencondia, Electrical Loading Assessment of Commonly-Used Transformers for Feeder 21 of Pampanga Distribution Utility, 2019, International Journal in Engineering and Advanced Technology.

3. M. Li, Q. Zhou, SMIEEE, and Z. Yang , (2015), Distribution transformer mid-term heavy load and overload pre-warning based on logistic regression, 2015 IEEE Eindhoven PowerTech

4. N.Pandit1, R.L.Chakrasali, (2017), Distribution Transformer Failure in India Root Causes and Remedies, International Conference on Innovative Mechanisms for Industry Applications (ICIMIA 2017)

5. Electric Cooperative's Distribution Utility Manual (August 2009) RetrievedonSeptember11,2018,fromhttp://www.gmcdmc.ph/pdf_files_dmc /ECDU%20Planning%20Manual%2010Aug2009.pdf.

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