earticle

논문검색

A Study on Environmental Micro-Dust Level Detection and Remote Monitoring of Outdoor Facilities

초록

영어

The rapid development in modern industrialization pollutant the water and atmospheric air across the globe that have a major impact on the human and livings health. In worldwide, every country government increasing the importance to improve the outdoor air pollution monitoring and control to provide quality of life and prevent the citizens and livings life from hazard disease. We proposed the environmental dust level detection method for outdoor facilities using sensor fusion technology to measure precise micro-dust level and monitor in realtime. In this proposed approach use the camera sensor and commercial dust level sensor data to predict the micro-dust level with data fusion method. The camera sensor based dust level detection uses the optical flow based machine learning method to detect the dust level and then fused with commercial dust level sensor data to predict the precise micro-dust level of the outdoor facilities and send the dust level informations to the outdoor air pollution monitoring system. The proposed method implemented on raspberry pi based open-source hardware with Internet-of-Things (IoT) framework and evaluated the performance of the system in realtime. The experimental results confirm that the proposed micro-dust level detection is precise and reliable in sensing the air dust and pollution, which helps to indicate the change in the air pollution more precisely than the commercial sensor based method in some extent.

목차

Abstract
1. Introduction
2. Air Pollution Monitoring System
3. Micro-Dust Level Detection and Monitoring
4. Experimental Result and Analysis
5. Conclusions
Acknowledgement
References

저자정보

  • Seung Kyun Kim Dept. of Electronics and IT Media Engr., Seoul National Univ. of Sci. & Tech., Korea
  • Vinayagam Mariappan Graduate School of Nano IT Design Fusion, Seoul National Univ. of Sci. & Tech., Korea
  • Jae Sang Cha Professor, Dept. of Electronics and IT Media Engr., Seoul National Univ. of Sci. & Tech., Korea

참고문헌

자료제공 : 네이버학술정보

    함께 이용한 논문

      ※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

      0개의 논문이 장바구니에 담겼습니다.