Regression Project
## 🗺️ Predicting CO₂ Emissions:
Accurately tracking carbon emissions is a vital foundation for addressing climate change.
This project aims to build machine learning models that use open-source CO₂ emission data collected by the Sentinel-5P satellite to forecast future carbon output.
## 📚 used Python libraries:
- pandas
- matplotlib
- scikit-learn
- scipy
- streamlit
- plotly
- PyTorch
- Keras
- TensorFlow
- keras_tuner
- optuna
## ✨ features of original dataset:
-**basic information:**
- ID_LAT_LON_YEAR_WEEK
- latitude
- longitude
- year
- week_no
-**SulphurDioxide:**
- SulphurDioxide_SO2_column_number_density
- SulphurDioxide_SO2_column_number_density_amf
- SulphurDioxide_SO2_slant_column_number_density
- SulphurDioxide_cloud_fraction
- SulphurDioxide_sensor_azimuth_angle
- SulphurDioxide_sensor_zenith_angle
- SulphurDioxide_solar_azimuth_angle
- SulphurDioxide_solar_zenith_angle
- SulphurDioxide_SO2_column_number_density_15km
-**CarbonMonoxide:**
- CarbonMonoxide_CO_column_number_density
- CarbonMonoxide_H2O_column_number_density
- CarbonMonoxide_cloud_height
- CarbonMonoxide_sensor_altitude
- CarbonMonoxide_sensor_azimuth_angle
- CarbonMonoxide_sensor_zenith_angle
- CarbonMonoxide_solar_azimuth_angle
- CarbonMonoxide_solar_zenith_angle
-**NitrogenDioxide:**
- NitrogenDioxide_NO2_column_number_density
- NitrogenDioxide_tropospheric_NO2_column_number_density
- NitrogenDioxide_stratospheric_NO2_column_number_density
- NitrogenDioxide_NO2_slant_column_number_density
- NitrogenDioxide_tropopause_pressure
- NitrogenDioxide_absorbing_aerosol_index
- NitrogenDioxide_cloud_fraction
- NitrogenDioxide_sensor_altitude
- NitrogenDioxide_sensor_azimuth_angle
- NitrogenDioxide_sensor_zenith_angle
- NitrogenDioxide_solar_azimuth_angle
- NitrogenDioxide_solar_zenith_angle
-**Formaldehyde:**
- Formaldehyde_tropospheric_HCHO_column_number_density
- Formaldehyde_tropospheric_HCHO_column_number_density_amf
- Formaldehyde_HCHO_slant_column_number_density
- Formaldehyde_cl …