Microcurve automation system is an additional layer over Wi-Fi based automation with addition of antenna-based mechanism attached to the router that will increase the operational range of appliances up to 1km (LOS). It consists of:
Microcurve Automation System
Microcurve automation system is an additional layer over Wi-Fi based automation with addition of antenna-based mechanism attached to the router that will increase the operational range of appliances up to 1km (LOS). It consists of:
The user will face the same experience as that of Wi-Fi based automation.
The objective of Microcurve automation system is to provide cost-effective yet comprehensive solution by designing a proprietary software and hardware that will benefit:
In this project, we will build an antenna-based automation system. MAS is an additional layer over Wi-Fi based automation with addition of antenna-based mechanism attached to the router that will increase the operational range of appliances up to 1km (LOS). If button is clicked to switch on an appliance from Microcurve app, data sent by the device reaches the Wi-Fi router. Data includes the destination address with the IP address of Ethernet shield attached to the router. Router then routes the data towards micro-controller via port forwarding. Then data is accessed by the controller and sent towards the specific appliance via antenna transceiver. The transceiver attached to the appliance then converts incoming analog data to digital form and then that data is executed, and appliance is turned on via relay. Same process happens for turning off the appliance.
The project will benefit:
by providing 1km (LOS) operational range. The appliance will be operated through an android application.
The final deliverable will have:
Technical Working of the Final Deliverable:
If button is clicked to switch on an appliance from Microcurve app, data sent by the device reaches the Wi-Fi router. Data includes the destination address with the IP address of Ethernet shield attached to the router. Router then routes the data towards micro-controller via port forwarding. Then data is accessed by the controller and sent towards the specific appliance via antenna transceiver. The transceiver attached to the appliance then converts incoming analog data to digital form and then that data is executed, and appliance is turned on via relay. Same process happens for turning off the appliance.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Arduino Mega 2560 | Equipment | 2 | 3500 | 7000 |
| Raspberry PI zero | Equipment | 2 | 12500 | 25000 |
| NRF24L01 Transceiver | Equipment | 2 | 250 | 500 |
| Relays | Equipment | 3 | 150 | 450 |
| Router (port forwarding enabled) | Equipment | 1 | 4500 | 4500 |
| Jumper Wires | Equipment | 50 | 4 | 200 |
| Ethernet Shield | Equipment | 1 | 2500 | 2500 |
| Marketing | Miscellaneous | 1 | 7000 | 7000 |
| Total in (Rs) | 47150 |
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