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http://ir.futminna.edu.ng:8080/jspui/handle/123456789/16053
Title: | Development of an Artificial Neural Network Model for Daily Electrical Energy Management |
Authors: | Abdullahi, I. M Salawu, B. T Maliki, Danlami Nuhu, B. K Aliyu, I |
Keywords: | Artificial Neural Network Electrical energy Energy Management Systems Pattern Recognition |
Issue Date: | 2017 |
Publisher: | Proceedings of the 2nd International Engineering Conference, (IEC 2017), Federal University of Technology Minna, Nigeria |
Citation: | Abdullahi I. M., Salawu B T., Maliki D., Nuhu B K., & Aliyu I. (2017). Development of an Artificial Neural Network Model for Daily Electrical Energy Management. Proceedings of the 2nd International Engineering Conference, (IEC 2017), Federal University of Technology Minna, Nigeria, pp 120-125 |
Abstract: | Efficient monitoring and control of electrical energy do not only prevent fire out-breaks caused by electrical appliances, but can also reduce excessive billings and prevent electrical installations. Most Energy Management Systems (EMS) for remote controlling of electrical appliances rely mostly on sensors, data and GSM networks which are un-reliable or even un-available in most part of developing world, this makes them less reliable. Therefore, there is need for an intelligent system that can manage electrical consumption intelligently using user-appliance interactive pattern over a period of time for intelligent control of users’ appliances in his/her absence. The model parameters (number of neurons and training algorithms) that affects its performance were first investigated and adopted. The performance of the developed model was evaluated using Regression analysis (R) and Mean Square Error (MSE) using ANN and Simulink tool boxes in Matlab R2015b. A good model can be used for real time control when deployed. Also, Scale Conjugate Gradient (SCG) training algorithm should also be used because of its high performance for pattern recognition problems. This work will go a long way in efficiently controlling household electrical appliances in the absence of the users thereby preventing fire disasters caused by electrical appliances, reducing the tariffs of consumers while increasing lifespan of electrical installations. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/16053 |
Appears in Collections: | Computer Engineering |
Files in This Item:
File | Description | Size | Format | |
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IEC FIRST PAPER 2017.pdf | 4.49 MB | Adobe PDF | View/Open |
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