Ship Speed Estimation using Wireless Sensor Networks: Three and Five Sensors Formulation

Intrusion detection on the sea is an important surveillance problem for harbor protection, border security, and commercial facilities such as oil platforms, fisheries facilities and other marine wealth. Widely used methods for ship detection are using radar or satellite which is very expensive. Besides the high cost, the satellite image is easy affected by the cloud. And it is difficult to detect small boats or ships on the sea with marine radar due to the noise or clutters generated by the uneven sea surface. In this paper, we propose ship speed estimation by taking advantage of ship-generated wave’s characteristics with Wireless Sensor Network (WSN). We use a grid fashion for sensor node deployment that can be clustered into three and five sensors. We propose the ship speed formulation for each type of claster. We use three sensors, we may expect to improve energy efficiency by involving small number of sensor for detection. We use five sensors, we may expect to improve accuracy of detection. We also propose an algorithm for detection by incorporating individual sensor detection. The individual sensor detection produces a time stamp that records the ship-generated waves intruding the sensors.

[1]  T. Havelock The propagation of groups of waves in dispersive media, with application to waves on water produced by a travelling disturbance , 1908 .

[2]  Tommaso Isernia,et al.  Isophoric Array Antennas with a Low Number of Control Points: a `Size Tapered' Solution , 2013 .

[3]  Ajib Setyo Arifin,et al.  Ship location detection using wireless sensor networks with cooperative nodes , 2017, 2017 Ninth International Conference on Ubiquitous and Future Networks (ICUFN).

[4]  Kaishun Wu,et al.  Ship Detection with Wireless Sensor Networks , 2012, IEEE Transactions on Parallel and Distributed Systems.

[5]  Zhong Yang,et al.  SID: Ship Intrusion Detection with Wireless Sensor Networks , 2011, 2011 31st International Conference on Distributed Computing Systems.

[6]  T. Isernia,et al.  Mask-constrained power synthesis of maximally sparse linear arrays through a compressive-sensing-driven strategy , 2015 .

[7]  Lv Cuicui,et al.  Relay Node Placement Algorithm Based on Grid in Wireless Sensor Network , 2013, 2013 Third International Conference on Instrumentation, Measurement, Computer, Communication and Control.