Seismic activities present significant concerns regarding public safety and property protection. Continuous monitoring of these activities is crucial for mitigating the impact of natural disasters, including earthquakes and landslides. However, conventional seismic monitoring methods are often costly and require extensive infrastructure. This paper introduces a cost- effective solution for seismic activity monitoring utilizing the MPU6050 3-axis gyro accelerometer sensor. The proposed system continuously gathers data from the MPU6050 sensor and interfaces it with the Arduino Uno microcontroller. It provides essential functionality for earthquake detection and alerting. The sensor employed in the system offers affordability and ease of installation. The collected data is processed and visualized in ThingSpeak, facilitating efficient data interpretation and analysis. The presented solution offers an effective approach to monitoring seismic activities and reducing the repercussions of natural disasters. By delivering real-time updates, the system enables authorities to implement necessary measures to safeguard the population and their assets. Its low-cost nature enhances accessibility and contributes to the overall safety and security of the community.

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Seismic Activity Monitoring Using IoT

  • Mutyala Sumanth,
  • S. N. V. S. K. Chaithanya,
  • Nagababu Nouluri,
  • Jayanth Kokkiligadda,
  • Purna Nanda Puthi

摘要

Seismic activities present significant concerns regarding public safety and property protection. Continuous monitoring of these activities is crucial for mitigating the impact of natural disasters, including earthquakes and landslides. However, conventional seismic monitoring methods are often costly and require extensive infrastructure. This paper introduces a cost- effective solution for seismic activity monitoring utilizing the MPU6050 3-axis gyro accelerometer sensor. The proposed system continuously gathers data from the MPU6050 sensor and interfaces it with the Arduino Uno microcontroller. It provides essential functionality for earthquake detection and alerting. The sensor employed in the system offers affordability and ease of installation. The collected data is processed and visualized in ThingSpeak, facilitating efficient data interpretation and analysis. The presented solution offers an effective approach to monitoring seismic activities and reducing the repercussions of natural disasters. By delivering real-time updates, the system enables authorities to implement necessary measures to safeguard the population and their assets. Its low-cost nature enhances accessibility and contributes to the overall safety and security of the community.