Meeting Position Aware Routing for Query-Based Mobile Enabled Wireless Sensor Network
Yimin Chen, Long Cheng, Canfeng Chen, Jian Ma · 2009
In this paper, meeting position aware routing (MPAR) is proposed for query-based mobile enabled wireless sensor network (mWSN). We consider mWSNs with dense sensor nodes deployed in the sensing field. A mobile sink (MS) moving through the sensing field with random speed queries a specific area or a point of interest for information from physical world. Queried data over a area is aggregated to a source node and delivered to the mobile sink via multi-hop communication. The feature of MPAR is that the mWSNs can predict the position of the mobile sink at the time it meets the data packet. The queried data packet is delivered towards this predicted position from the source node during the propagation. We compared MPAR with the existing routing protocol for the similar scenarios. Analysis was conducted to discover the conditions under which MPAR demonstrates the optimal performance. Extensive simulations were also conducted to evaluate the performance of the routing mechanism as well as to compare it with existing method. Evaluation results show that MPAR outperforms the existing mechanism in that it provides less end-to-end delivery latency, and consequently reduces the energy consumption. The robustness to variation of MS velocity is also improved.