Design and Implementation of Cloud based Digital Energy Meter using ESP8266
P. Ramesh Babu1, A. Pradeep2, P. Rajendra Prasath3, R. Rishikesh kumar4, J. Sharvin5

1P. Ramesh Babu*, Electrical and Electronics Engineering, Saranathan College of Engineering, Trichy, India.
2A. Pradeep, Electrical and Electronics Engineering, Saranathan College of Engineering, Trichy, India.
3P. Rajendra Prasath, Electrical and Electronics Engineering, Saranathan College of Engineering, Trichy, India.
4R. Rishikesh kumar, Electrical and Electronics Engineering, Saranathan College of Engineering, Trichy, India.
5J.Sharvin, Electrical and Electronics Engineering, Saranathan College of Engineering, Trichy, India.
Manuscript received on March 15, 2020. | Revised Manuscript received on March 25, 2020. | Manuscript published on April 10, 2020. | PP: 1228-1231 | Volume-9 Issue-6, April 2020. | Retrieval Number: F3817049620/2020©BEIESP | DOI: 10.35940/ijitee.F3817.049620
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: Increasing cost in energy sector demands for structured use of energy. It is vital to understand the rate of energy consumption during specific period utilizing Energy Meters. Energy consumption can be measured using a traditional energy meter; however, their use is restricted in inaccessible areas or in occasion of poor visibility resulting in limited functionality. Also, the main drawback is that a person has to take readings area by area from every house and institute make it time consuming. We propose a Cloud based Wireless Energy Meter [1] which can send data via wireless communication (cloud computing) to a PC or mobile phones in the form of E-mails or mobile application notification or through web page; where surveillance and analysis of the data will be made. This computational system can be used to measure energy quantities of transformers and high voltage towers at remote locations, industries, domestic area, and institutions. 
Keywords: Arduino, Current Sensor, Energy Meter, IOT, Node MCU, Voltage Sensor.
Scope of the Article: Digital Clone or Simulation