In this project, a brief study of all present solution along with their current status and technical comparison considering our use case which is Real-time tracking using LPWAN technologies specifically LoRaWAN will be conducted. Conventional way of re
Real Time Tracking using LPWAN Technology (LoRaWAN)
In this project, a brief study of all present solution along with their current status and technical comparison considering our use case which is Real-time tracking using LPWAN technologies specifically LoRaWAN will be conducted.
Conventional way of real time tracking required expensive global positioning systems (GPS) or un-interrupted cellular coverage which can be quite a challenge. Also, tracking devices required frequent change of batteries and start malfunctioning due to fast consumption.
Analyzing the LPWAN functionality, Real-time tracking become suitable application for it. Most appreciated aspect provided by LPWAN is cost of infrastructure as compared to GPS and Cellular and device long life.
The objective of our project is to make the Real Time Tracking technology more power efficienct, precise and cheaper so that it can easily be used in our daily life in transportation, children tracking etc.
1st step: Detailed study about LPWAN technology its available problems and solution with the comparison of different technologies.
2nd step: Selection of required modules in this we are using raspberry pi and loRa shields from which we will make raspberry pi based gateway using LoRa evaluation board.
3rd step: Research and implementation of LoRaWAN gateway in which we will modify the available open source forum for loRa gateway as per our requirements such as considering frequency change and other parameters and than building time tracking application on evaluation board.
4rth step: Validation through real time tracking and result analysis this includes a walk test in which we will set up the project at different places inside campus that involves gateway and computers and will validate the result though a field test and record the results.
5th step: Analyzing results and concluding the research with future work progress.
The main circuit includes Raspberry Pi which is low cost and has huge processing power . Also using LoRa shield IC880A for building gateway.
Maximum output power: 0.025 Watt
Working frequency approx 923MHz
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Concentrator Module iC880A | Equipment | 1 | 15000 | 15000 |
| Raspberry Pi 3B+ | Equipment | 1 | 9000 | 9000 |
| demo board | Equipment | 2 | 2000 | 4000 |
| module specific adapter board 2x radio module soldered on the | Equipment | 2 | 2000 | 4000 |
| radio module soldered on the adapter board | Equipment | 2 | 1500 | 3000 |
| external antenna | Equipment | 2 | 1000 | 2000 |
| USB cable | Equipment | 2 | 250 | 500 |
| battery | Equipment | 4 | 500 | 2000 |
| Stationary, Printing, Wires, PCBs, other components | Miscellaneous | 1 | 10000 | 10000 |
| Total in (Rs) | 49500 |
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