E-bike Tracking System with GSM, GPS, Tilt Sensor, and Online Portal Integration
Budget: €30 – €250 EUR
We are looking to develop a comprehensive e-bike tracking system that combines GPS location tracking, GSM communication, tilt sensor, PIR sensor, and an online portal for real-time monitoring and management. The system will provide enhanced security features to prevent theft and enable remote tracking of the e-bike's location.
Key Features:
1. GPS Location Tracking: The system will utilize a GPS module to accurately track the e-bike's location in real-time.
2. GSM Communication: Integrated GSM module will allow the system to transmit location data and status updates to a remote server via cellular network.
3. Tilt Sensor: A tilt sensor will be incorporated to detect changes in orientation or tilting of the e-bike, triggering an alarm in case of tampering.
4. PIR Sensor: A PIR (Passive Infrared) sensor will detect motion and trigger an alarm if unauthorized movement is detected.
5. Online Portal Integration: An online portal will be developed to receive and display live location data from the tracking system. The portal will visualize the e-bike's location on a map, display sensor status, and provide remote management capabilities.
6. Alarm System: The system will include an alarm system that activates in response to tilt sensor or PIR sensor triggers, alerting the user and transmitting alarm signals to the online portal.
7. User Authentication: The online portal will feature user authentication to ensure secure access to tracking data and management features.
Deliverables:
1. Arduino code for GPS tracking, GSM communication, tilt sensor, and PIR sensor integration.
2. Online portal development with live location tracking, sensor status display, and user authentication.
3. Testing and debugging documentation.
4. User manual for system operation and maintenance.
5. Technical support for system deployment and integration.
Additional Information:
- The system should be compatible with commonly available e-bike models and easily installable.
- Consideration should be given to power consumption optimization for prolonged battery life.
- All communication protocols should be secure to prevent unauthorized access to tracking data.
- The system should be scalable to accommodate future updates and enhancements.
Key Features:
1. GPS Location Tracking: The system will utilize a GPS module to accurately track the e-bike's location in real-time.
2. GSM Communication: Integrated GSM module will allow the system to transmit location data and status updates to a remote server via cellular network.
3. Tilt Sensor: A tilt sensor will be incorporated to detect changes in orientation or tilting of the e-bike, triggering an alarm in case of tampering.
4. PIR Sensor: A PIR (Passive Infrared) sensor will detect motion and trigger an alarm if unauthorized movement is detected.
5. Online Portal Integration: An online portal will be developed to receive and display live location data from the tracking system. The portal will visualize the e-bike's location on a map, display sensor status, and provide remote management capabilities.
6. Alarm System: The system will include an alarm system that activates in response to tilt sensor or PIR sensor triggers, alerting the user and transmitting alarm signals to the online portal.
7. User Authentication: The online portal will feature user authentication to ensure secure access to tracking data and management features.
Deliverables:
1. Arduino code for GPS tracking, GSM communication, tilt sensor, and PIR sensor integration.
2. Online portal development with live location tracking, sensor status display, and user authentication.
3. Testing and debugging documentation.
4. User manual for system operation and maintenance.
5. Technical support for system deployment and integration.
Additional Information:
- The system should be compatible with commonly available e-bike models and easily installable.
- Consideration should be given to power consumption optimization for prolonged battery life.
- All communication protocols should be secure to prevent unauthorized access to tracking data.
- The system should be scalable to accommodate future updates and enhancements.