Why there is a need of LoRaWAN based flood monitoring system?
LoRaWAN based flood monitoring system has become a rising phenomenon for several reasons. It's crucial to understand how moisture and condensation can infiltrate your interior and exterior premises before it becomes a complex issue. The majority of water damage originates from internal sources, such as malfunctioning plumbing, leaky pipes, and household appliances. Additionally, exterior factors like severe weather, groundwater flooding, and cracks in the foundation or walls can contribute to water damage.
Un-noticed leaks and water intrusion have the potential to create long-lasting harm to your exterior and interior premises. This can manifest as structural problems. If not detected promptly, water damage can also foster the growth of toxic black mold, which poses a serious health hazard.
This is where the flood monitoring system using IoT comes into the picture. When selecting a flood sensor, it's wise to consider monitoring moisture, water levels, and temperature. When combined with smart technology, temperature sensors can provide alerts for abrupt and extreme temperature changes that may result in flooding caused by weather-related factors. This extra layer of protection is especially crucial for individuals who own secondary or seasonal homes and may not be present on-site when water levels start to rise.
What Are the Advantages of LoRaWAN based flood monitoring system?
- Seamless Integration: Smart Flood monitoring system consists of sensors that are seamlessly integrated with your security panel, ensuring that you receive alerts in the same way you would if your security alarm system were triggered.
- Protection against Water Damage: The flood monitoring system using IoT has smart sensors that play a crucial role in safeguarding your home against potential water damage by promptly notifying you when water is detected within your premises.
- Long Battery Life: Smart flood monitoring system sensors boast an impressive battery life of approximately four years. Your security panel will alert you when the battery is running low, just as it would for your security system.
- Tamper-Proof Design: Each sensor of the flood monitoring system using IoT is equipped with a tamper-proof casing. If a pet or child attempts to tamper with the sensors and damages them, you'll receive a notification, similar to when water is detected.
How can you integrate a smart flood monitoring system?
Integrating a smart flood monitoring system using IoT involves several key steps and components:
Select LoRaWAN-Compatible Flood Sensors: Start by choosing Macnman Smart flood monitoring system using IoT. These sensors are equipped with LoRaWAN communication modules that allow them to transmit data wirelessly over long distances with low power consumption.
LoRaWAN Gateway Installation: Set up LoRaWAN gateways strategically in the area you want to monitor for floods. These gateways act as base stations that receive data from the sensors and forward it to the LoRaWAN network server.
LoRaWAN Network Server: Deploy a LoRaWAN network server, either on-premises or using a cloud-based service. This server manages the communication between the gateways and the application server, ensuring secure and reliable data give and take.
Sensor Deployment: Install the smart flood monitoring system sensors at the desired locations. Ensure they are properly configured to collect data related to water levels, temperature, and any other relevant parameters.
Data give & take: The flood sensors periodically measure and collect data. The data is then forwarded to the LoRaWAN Gateway and further to the LoRaWAN network server.
Data Processing and Storage: The LoRaWAN network server processes the incoming data, decrypts it if necessary, and forwards it to your application server or cloud platform for further processing and storage.
Alerts and Monitoring: Implement an application layer that analyzes the sensor data and triggers alerts when it detects abnormal water levels or other predefined conditions that may indicate a flood. These alerts can be sent via email, SMS, or other communication channels to relevant stakeholders.
Visualization and Reporting: Smart flood monitoring system involves prominent visualization. Develop a user interface or dashboard that allows users to visualize real-time and historical flood data. This can help in decision-making and monitoring.
Remote Configuration: : LoRaWAN technology allows for remote configuration of sensors, making it possible to adjust sensor parameters or update firmware without physically accessing each sensor.
Power Management: LoRaWAN devices are known for their low power consumption, but it's essential to implement efficient power management to maximize the sensors' battery life. This may include adjusting data flow frequency based on the criticality of the monitoring area.
Compliance and Regulations: Ensure that your LoRaWAN-based flood monitoring system complies with local regulations and standards, especially when deploying in sensitive environmental areas.
Maintenance and Testing: Maintenance and testing is a crucial part to ensure best results from LoRaWAN based flood monitoring system. Regularly maintain and test both the sensors and the LoRaWAN network to ensure proper functionality. This includes checking for sensor accuracy and battery life.
By following these steps, you can effectively integrate a flood monitoring system using LoRaWAN technology, providing real-time data on water levels and improving your ability to respond to flood events and mitigate potential damage.
How to get a result with LoRaWAN based flood monitoring system?
The smart flood monitoring system is employed to oversee increases in water levels. This system includes sensors strategically positioned in urban areas or other relevant locations. These sensors can be powered by either the main electrical grid or solar energy. They are installed on structures like bridges, wells, lakes, and beaches, with the purpose of real-time measurement of water levels. The collected data is then transmitted continuously to a centralized data management system through various networks as GSM, mobile cellular networks, or Wi-Fi.
The sensor will measure water level height and water flow speed, transmitting this data via the LoRa device to the gateway. Subsequently, the gateway in the flood monitoring system using IoT will relay this information to an open-source IoT platform for analysis and visualization. Testing the accuracy of ultrasonic sensor readings yields a precision rate of 97.06%.
Conclusion
LoRaWAN based flood monitoring system has brought a global phenomenon a lot of under control. Flooding represents a significant global disaster, wreaking havoc in various regions worldwide. It has the potential to devastate property, uproot trees, and tragically claim lives. To address this pressing issue, a real-time smart flood monitoring system, designed to track water levels and precipitation, has been developed and put into operation.
To bridge this gap and bring real-time data and management capabilities to the forefront, use the Macnman’s smart LoRaWAN flood monitoring system. Leveraging LoRaWAN (Long Range Wide Area Network) sensors, you can implement a more efficient smart flood monitoring system. This flood monitoring system using IoT is an innovative system and it's helping to develop improved flood management practices.