• DocumentCode
    2352311
  • Title

    Quality-Driven Volcanic Earthquake Detection Using Wireless Sensor Networks

  • Author

    Tan, Rui ; Xing, Guoliang ; Chen, Jinzhu ; Song, Wen-Zhan ; Huang, Renjie

  • Author_Institution
    Michigan State Univ., East Lansing, MI, USA
  • fYear
    2010
  • fDate
    Nov. 30 2010-Dec. 3 2010
  • Firstpage
    271
  • Lastpage
    280
  • Abstract
    Volcano monitoring is of great interest to public safety and scientific explorations. However, traditional volcanic instrumentation such as broadband seismometers are expensive, power-hungry, bulky, and difficult to install. Wireless sensor networks (WSNs) offer the potential to monitor volcanoes at unprecedented spatial and temporal scales. However, current volcanic WSN systems often yield poor monitoring quality due to the limited sensing capability of low-cost sensors and unpredictable dynamics of volcanic activities. Moreover, they are designed only for short-term monitoring due to the high energy consumption of centralized data collection. In this paper, we propose a novel quality-driven approach to achieving real-time, in-situ, and long-lived volcanic earthquake detection. By employing novel in-network collaborative signal processing algorithms, our approach can meet stringent requirements on sensing quality (low false alarm/missing rate and precise earthquake onset time) at low power consumption. We have implemented our algorithms in TinyOS and conducted extensive evaluation on a testbed of 24 TelosB motes as well as simulations based on real data traces collected during 5.5 months on an active volcano. We show that our approach yields near-zero false alarm/missing rate and less than one second of detection delay while achieving up to 6-fold energy reduction over the current data collection approach.
  • Keywords
    earthquakes; geophysical signal processing; health and safety; volcanology; wireless sensor networks; WSN; collaborative signal processing; near-zero false alarm; public safety; quality-driven volcanic earthquake detection; scientific explorations; volcanic instrumentation; volcano monitoring; wireless sensor networks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Real-Time Systems Symposium (RTSS), 2010 IEEE 31st
  • Conference_Location
    San Diego, CA
  • ISSN
    1052-8725
  • Print_ISBN
    978-0-7695-4298-0
  • Type

    conf

  • DOI
    10.1109/RTSS.2010.21
  • Filename
    5702237