Performance, Monitoring and Controlling of Smart Energy Meter with IoT and Arduino UNO
Prakash Kumar Dewangan1, Prakash Kumar Sen2, Atul Kumar Dewangan3
1Prakash Kumar Dewangan*, M.tech student in Embedded System, Department of Electrical Engineering, Kirodimal Institute of Technology Raigarh Chhattisgarh.
2Prakash Kumar Sen., Supervisor, Department of Mechanical Engineering, Kirodimal Institute of Technology Raigarh, Chhattisgarh.
3Atul Kumar Dewangan, Additional Examiner, Department of Electrical Engineering, Kirodimal Institute of Technology Raigarh, Chhattisgarh.
Manuscript received on September 14, 2019. | Revised Manuscript received on 24 September, 2019. | Manuscript published on October 10, 2019. | PP: 3005-3015 | Volume-8 Issue-12, October 2019. | Retrieval Number: K23320981119/2019©BEIESP | DOI: 10.35940/ijitee.K2332.1081219
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Abstract: The main purpose of the plan is to build up an IOT base electrical energy meter interpretation show for units devoted and charge there upon over the internet. A smart energy meter whose blinking LED signal is interfaced to microcontroller during LDR the blinking LED flash 3200 times for 1 part the LDR sensor provide an interrupt every instance the meter LED flash to the programmed microcontroller, micro controller take this considerate and display the it on an LCD accordingly interfaced to the microcontroller. the learn of the energy meter is also sent to Ethernet guard module individual fed from the micro controller using level shifter IC and RS 232 link which pass on data in a straight line to a devoted web page for show anywhere in the planet. The power provide consists of a step down transformer 230/12V which decreases the voltage to 12V AC. This is changed to DC using a bridge rectifier and it is then regulated to 5V by means of a voltage regulator which is requisite for the action of the microcontroller and additional mechanism.
Keywords: Automatic Meter Reading (AMR), Global System for Mobile (GSM), Short Messaging System (SMS), Smart Energy Meter (SEM)
Scope of the Article: IoT