On resilient event-driven partial barriers in mobile sensor networks
Hyunbum Kim, Jalel Ben‐Othman · 2016
A barrier-coverage in wireless sensor networks (WSN), which is able to detect a mobile object from one side to another opposite side, is a critical problem for lots of applications. Because it is highly appropriate to consider a barrier-coverage in event-driven environment, Kim et al. recently introduced k-event-driven partial barriers (k-EP barriers) with static sensor nodes, which at least k sensors can detect or monitor every movement of mobile objects on paths among multiple hubs in event-driven environment. But, in case of failures of sensors, k-EP barriers should be recovered from those failures. In this paper, we introduce resilient event-driven partial barriers with mobile sensors, which can maintain k-EP barriers continuously as well as can recover from a failed status when there exist failed sensors on initially constructed k-EP barriers due to energy depletion of those sensors. Also, we formally define a problem whose objective is to minimize total moving distance of mobile sensors such that k-EP are maintained continuously by considering movements of mobile sensors. To solve the problem, we propose a novel approach to minimize total movement distance of mobile sensors to form k-EP barriers continuously. Then, we address future issues and directions for resilient event-driven partial barriers.