Trail-Based Search for Efficient Event Report to Mobile Actors in Wireless Sensor and Actor Networks.

Sensors (Basel)

College of Mathematics, Physics and Information Engineering, Zhejiang Normal University, Jinhua 321004, China.

Published: October 2017

AI Article Synopsis

  • In wireless sensor and actor networks, sensor nodes must report detected events to moving actors whose locations are often unknown, leading to energy inefficiencies and delays in communication.
  • The proposed trail-based search (TS) strategy utilizes the actor’s mobility by leaving a continuous trail of footprints, enabling search packets to efficiently locate the actor or its recent path.
  • The study also introduces a redundancy reduction scheme (TS-R) to minimize unnecessary transmissions, demonstrating through theoretical and numerical analysis that TS outperforms traditional methods like expanding ring search (ERS) in terms of energy consumption and search delay.

Article Abstract

In wireless sensor and actor networks, when an event is detected, the sensor node needs to transmit an event report to inform the actor. Since the actor moves in the network to execute missions, its location is always unavailable to the sensor nodes. A popular solution is the search strategy that can forward the data to a node without its location information. However, most existing works have not considered the mobility of the node, and thus generate significant energy consumption or transmission delay. In this paper, we propose the trail-based search (TS) strategy that takes advantage of actor's mobility to improve the search efficiency. The main idea of TS is that, when the actor moves in the network, it can leave its composed of continuous footprints. The search packet with the event report is transmitted in the network to search the actor or its footprints. Once an is discovered, the packet will be forwarded along the trail until it is received by the actor. Moreover, we derive the condition to guarantee the trail connectivity, and propose the redundancy reduction scheme based on TS (TS-R) to reduce nontrivial transmission redundancy that is generated by the trail. The theoretical and numerical analysis is provided to prove the efficiency of TS. Compared with the well-known expanding ring search (ERS), TS significantly reduces the energy consumption and search delay.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5712906PMC
http://dx.doi.org/10.3390/s17112468DOI Listing

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