Nowadays, energy consumption for domestic household and enterprises is of utmost importance. However, today?s need and integration IoT has become of extreme importance in the system. The proposed system of energy management system uses IoT techniques to collect and manage data wirelessly. Previous s
Implementation of a Fog Enabled Controller with Intelligent Sensor Nodes
Nowadays, energy consumption for domestic household and enterprises is of utmost importance. However, today’s need and integration IoT has become of extreme importance in the system. The proposed system of energy management system uses IoT techniques to collect and manage data wirelessly. Previous systems are not as accurate in generating the real time data and lack in real time actionable insights with this system consumer power usage data will be online through internet protocol through that will highlight the energy wastage and give you predictability of demand. Also the implementation of DSI scheme of load shifting will allow the system to be more efficient during peak load.
1. Implement innovative solutions to Energy problems.
2. Reduce energy usage through Wireless Sensors Networks.
3. Reduce energy usage by Load Management.
Following steps are as followed
1. Related literature review about energy consumption techniques and work done in this area of the project before.
2. Review, understanding IoT and implementation of IoT in proposed project.
3. Study and Comparison of different modules and appropriate ones are selected.
4. Development of system architecture
5. Collecting and assembling of essential hardware components
6. Development of programming logics of modules.
7. Testing of all the components and software’s.
1. This project address the problem of developing an energy management system through the implementation of FOG computing.
2. This project can transfer data through wireless techniques without depending upon any wired communication.
3 .This project addresses the problem of high tariff in peak hours through the implentation of demand side integration(DSI) system.
Our deliverables will be the comparison between four graphs:
1.Energy Consumption on WAPDA.
2.Energy Consumption after implementation of intelligent system.
3.Peak load graph.
4.Graph of Energy Consumption after combining peak load technique and intelligent system.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Esp 8266 | Equipment | 10 | 600 | 6000 |
| PIR Sensors | Equipment | 10 | 380 | 3800 |
| DHT 11 Temperatue Sensore | Equipment | 10 | 250 | 2500 |
| Relays 12V | Equipment | 5 | 200 | 1000 |
| 16*2 LCD | Equipment | 10 | 180 | 1800 |
| Watt meter | Equipment | 2 | 2400 | 4800 |
| Printing | Miscellaneous | 12 | 250 | 3000 |
| Bread board | Equipment | 10 | 150 | 1500 |
| I2c converter | Equipment | 10 | 120 | 1200 |
| Wires | Equipment | 4 | 100 | 400 |
| LED bulbs | Equipment | 10 | 250 | 2500 |
| Blynk server | Equipment | 1 | 20000 | 20000 |
| Thingspeak server | Equipment | 1 | 12000 | 12000 |
| Total in (Rs) | 60500 |
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