Project Summary: The air quality of Lahore, Pakistan becomes really low due to smog in winters. One of the main reasons contributing to this smog is steel mills in Lahore. No board is available in the market which measures Methane, Butane, LPG, smoke, Alcohol, Ethanol, CNG Gas,
MULTI-FUNCTIONAL SB-DATALOGGER USING MODULAR APPROACH WITH PREDICTION ABILITY
Project Summary:
The air quality of Lahore, Pakistan becomes really low due to smog in winters. One of the main reasons contributing to this smog is steel mills in Lahore. No board is available in the market which measures Methane, Butane, LPG, smoke, Alcohol, Ethanol, CNG Gas, Carbon Monoxide, Hydrogen Gas, flammable gasses, NH3, NOx, Alcohol, and Benzene at once. The data loggers available on the market are distinct for each gas, and may occasionally detect two or three gases. With the government of Pakistan initiating several efforts to address the smog problem, many people have begun to study in order to contribute to society by proposing numerous ideas. Sensor-derived data is used by researchers to acquire information about a wide range of human behaviour and environmental factors. While commercially available data-logging sensors may be used for a variety of measures, there have been few resources dedicated to integrated hardware, software, and analytic systems aimed at field researcher use cases. The idea is to build a board that can help collect all data with real-time GPS coordinates so to help collect necessary data for research purposes. The board will also predict future trends based on historical data. Our board can easily be mounted on the buses and Orange Train. The board will record the data for at least 7 days and then provide future trends based on it. This board will collect the necessary data to support future research and train algorithms.
Research Objectives:
Academic Objectives:
Commercial Objectives:
The prototype will consist of a lot of sensors and can be used on any payload i.e., drone so it will be lightweight.
Some drones have a USB power supply. Other small electronic boards, usually have a way of taking a lithium polymer battery. 2S is most common.
Each sensor draws almost 100mA to 150 mA. We can get the ratings of each sensor from the datasheet and then add them. We will get the total load current/amp draw. We can put a 5volt regulator for safety so that the client can provide the input between 12volt to 5 volts. For live connection purposes, a GSM module will be integrated with the prototype.
Following is the general block diagram of our proposed system:


Benefits:
The key benefactors of our research are the future researchers, the public, smog control authorities, oil and gas industries, and steel mills.
The research’s outputs will be provided on the website so that anyone can have access to it and use it for research and awareness purposes.
The final deliverables are as follows:
1. The board:
2. The excel file generated by the board will sensor values

3. The prediction graph

4. Google Earth plotted values

| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| ESP32 | Equipment | 1 | 1100 | 1100 |
| MQ138 | Equipment | 1 | 280 | 280 |
| MQ135 | Equipment | 1 | 280 | 280 |
| SD Card module | Equipment | 1 | 100 | 100 |
| LEXAR PLAY MICRO CARD 150mb/s | Equipment | 1 | 2549 | 2549 |
| High precision and High sensitivity gas sensor | Equipment | 1 | 5978 | 5978 |
| LEDs | Equipment | 6 | 10 | 60 |
| buzzer | Equipment | 3 | 100 | 300 |
| DS3231 | Equipment | 1 | 500 | 500 |
| Veroboard | Equipment | 2 | 120 | 240 |
| U-BLOX Neo 7M GPS module | Equipment | 1 | 1000 | 1000 |
| zener | Equipment | 10 | 20 | 200 |
| PCB 2 layer board printing | Miscellaneous | 1 | 6000 | 6000 |
| Battery module (self made) | Equipment | 1 | 600 | 600 |
| lithium battery cell | Equipment | 3 | 500 | 1500 |
| DHT11 (original) | Equipment | 1 | 800 | 800 |
| Total in (Rs) | 21487 |
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