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Mobile target localization based on iterative tracing for underwater wireless sensor networks

Author

Listed:
  • Ruolin Guo
  • Danyang Qin
  • Min Zhao
  • Guangchao Xu

Abstract

In underwater wireless sensor networks, sensor position information has important value in network protocols and collaborative detection. However, many challenges were introduced in positioning sensor nodes due to the complexity of the underwater environment. Aiming at the problem of the stratification effect of underwater acoustic waves, the long propagation delay of messages, as well as the mobility of sensor nodes, a mobile target localization scheme for underwater wireless sensor network is proposed based on iterative tracing. Four modules are established in the mobile target localization based on iterative tracing: the data collection and rough position estimation, the estimation and compensation of propagation delay, the node localization, and the iteration. The deviation of distance estimation due to the assumption that acoustic waves propagate along straight lines in an underwater environment is compensated by the mobile target localization based on iterative tracing, and weighted least squares estimation method is used to perform linear regression. Moreover, an interacting multiple model algorithm is put forward to reduce the positioning error caused by the mobility of sensor nodes, and the two services of node time synchronization and localization assist each other during the iteration to improve the accuracy of both parties. The simulation results show that the proposed scheme can achieve higher localization accuracy than the similar schemes, and the positioning errors caused by the above three problems can be reduced effectively.

Suggested Citation

  • Ruolin Guo & Danyang Qin & Min Zhao & Guangchao Xu, 2020. "Mobile target localization based on iterative tracing for underwater wireless sensor networks," International Journal of Distributed Sensor Networks, , vol. 16(7), pages 15501477209, July.
  • Handle: RePEc:sae:intdis:v:16:y:2020:i:7:p:1550147720940634
    DOI: 10.1177/1550147720940634
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